<?xml version="1.0" encoding="UTF-8"?><rss xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns:atom="http://www.w3.org/2005/Atom" version="2.0" xmlns:itunes="http://www.itunes.com/dtds/podcast-1.0.dtd" xmlns:googleplay="http://www.google.com/schemas/play-podcasts/1.0"><channel><title><![CDATA[Neurotech Pulse: The Industry Pulse ]]></title><description><![CDATA[A curated monthly sweep of the neurotech landscape — regulatory clearances, funding activity, research milestones, and case studies shaping the industry.]]></description><link>https://neurotechpulse.substack.com/s/the-industry-pulse</link><image><url>https://substackcdn.com/image/fetch/$s_!GG38!,w_256,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb4ecfd81-27d3-405a-836e-5f0364ec9a68_1280x1280.png</url><title>Neurotech Pulse: The Industry Pulse </title><link>https://neurotechpulse.substack.com/s/the-industry-pulse</link></image><generator>Substack</generator><lastBuildDate>Tue, 25 Aug 2026 09:22:38 GMT</lastBuildDate><atom:link href="https://neurotechpulse.substack.com/feed" rel="self" type="application/rss+xml"/><copyright><![CDATA[Anthriq]]></copyright><language><![CDATA[en]]></language><webMaster><![CDATA[neurotech.pulse@substack.com]]></webMaster><itunes:owner><itunes:email><![CDATA[neurotech.pulse@substack.com]]></itunes:email><itunes:name><![CDATA[Pulse Writer]]></itunes:name></itunes:owner><itunes:author><![CDATA[Pulse Writer]]></itunes:author><googleplay:owner><![CDATA[neurotech.pulse@substack.com]]></googleplay:owner><googleplay:email><![CDATA[neurotech.pulse@substack.com]]></googleplay:email><googleplay:author><![CDATA[Pulse Writer]]></googleplay:author><itunes:block><![CDATA[Yes]]></itunes:block><item><title><![CDATA[#40 - Neurotech's Quiet Wins: Clearances, Partnerships, & the Paperwork That Builds]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #40! Not every month gets a headline implant or a nine-figure raise, sometimes the field just does its paperwork, and that&#8217;s the story this issue tells.]]></description><link>https://neurotechpulse.substack.com/p/neurotechs-silent-wins-reimbursement</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/neurotechs-silent-wins-reimbursement</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Fri, 31 Jul 2026 06:01:14 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!AFaB!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #40!</strong> Not every month gets a headline implant or a nine-figure raise, sometimes the field just does its paperwork, and that&#8217;s the story this issue tells.</p><p><strong>VoxNeuro&#8217;s</strong> FDA clearance for its cfNI software, <strong>Amprion and Modality.AI&#8217;s</strong> diagnostic partnership, and <strong>Viz.ai&#8217;s</strong> move into neurodegenerative disease are the kind of unglamorous wins that quietly widen a device&#8217;s real-world reach. Meanwhile, a run of new research &#8212; on BCI recalibration, voice-synthesis decoding, and bioresorbable stimulation &#8212; is filling in the durability questions the big headlines skip.</p><p>This issue&#8217;s case Study features <strong>Cognito Therapeutics</strong>, the Cambridge, neurotech company using light-and-sound gamma stimulation to treat Alzheimer&#8217;s &#8212; fresh off new biomarker data presented at AAIC 2026.</p><div><hr></div><h3><span>&#9889;&#65039;</span><strong> Neurotech Newsflash</strong></h3><ul><li><p><strong>VoxNeuro receives FDA 510(k) clearance for cfNI software: </strong>The prescription-use software provides objective EEG/ERP-based cognitive assessment, comparing a patient's brain responses against a reference database of neurologically healthy adults. <span>Designed to plug into existing and emerging EEG systems, it's aimed at giving neurology practices, TMS clinics, and primary care an objective, biomarker-based layer on top of standard cognitive assessments. (</span><a href="https://www.businesswire.com/news/home/20260729837089/en/VoxNeuro-Receives-FDA-510k-Clearance-for-Cognitive-Function-Neuroimaging-cfNI-Software---An-Objective-EEGERP-Brain-Health-Assessment">Read more</a><span>)</span></p></li><li><p><strong>Cochlear introduces Osia 3 Sound Processor with FDA clearance (bone conduction hearing): </strong>The new processor is designed for people with conductive, mixed, or single-sided hearing loss who use Cochlear&#8217;s bone conduction implant system. It&#8217;s a smaller, more power-efficient successor built on the company&#8217;s existing Osia platform. (<a href="http://prnewswire.com/news-releases/cochlear-introduces-the-new-osia-3-sound-processor-302823458.html"><span>Read more</span></a>)</p></li><li><p><strong>Amprion and Modality.AI partner on multimodal neurodegenerative disease assessment (digital biomarkers): </strong>The collaboration pairs Amprion&#8217;s synuclein seed amplification assay with Modality.AI&#8217;s conversational AI assessment platform. The goal is a combined biological-plus-behavioral read on disease progression rather than either signal alone. (<a href="https://www.businesswire.com/news/home/20260709371091/en/Amprion-and-Modality.AI-Break-New-Ground-in-Multimodal-Assessment-for-Neurodegenerative-Disease"><span>Read more</span></a>)</p></li><li><p><strong>Viz.ai expands into neurodegenerative disease via Cortechs.ai collaboration (AI imaging): </strong>Viz.ai, best known for its stroke-detection AI, is extending its care-coordination platform into neurodegenerative disease workflows using Cortechs.ai&#8217;s quantitative brain MRI analysis. The partnership targets faster referral and diagnostic pathways for dementia care teams. (<a href="https://www.businesswire.com/news/home/20260709990638/en/Viz.ai-Expands-into-Neurodegenerative-Disease-with-Cortechs.ai-Collaboration"><span>Read more</span></a>)</p></li><li><p><strong>Theranica&#8217;s Nerivio crosses coverage milestone, now reaching half of insured Americans (migraine wearable): </strong>The prescription migraine device has now secured payer coverage exceeding 50% of the US insured population. It&#8217;s a reimbursement threshold that matters more for adoption than any single clinical headline. (<a href="https://www.prnewswire.com/news-releases/theranica-announces-landmark-coverage-milestone-as-nerivio-exceeds-half-of-the-us-insured-population-302821109.html"><span>Read more</span></a>)</p><div><hr></div></li></ul><h3><span>&#128176;</span><strong> Notable Funding</strong></h3><ul><li><p><strong>Hemispheric raises $52M to build an EEG-based brain assessment platform (neurotech diagnostics): </strong>Founded by the inventor of Apple&#8217;s FaceID, Hemispheric emerged from stealth with the round to develop a lightweight EEG headset platform. The company&#8217;s first product, targeting PTSD assessment, is slated for FDA submission next year, and the team is also building proprietary brain scanners to generate richer data than traditional EEG. <a href="https://www.businesswire.com/news/home/20260715241532/en/Hemispheric-Emerges-from-Stealth-with-%2452M-in-Funding-to-Launch-Descartes-the-First-Frontier-NeuroAI-Model-for-Decoding-the-Human-Brain?utm_campaign=shareaholic&amp;utm_medium=copy_link&amp;utm_source=bookmark">(<span>Read more</span>)</a></p></li><li><p><strong>Cork&#8217;s NeuroBell secures $5.5M to fund its US launch (psychiatric care technology): </strong>The Irish company will use the round to bring its psychiatric care platform into the US market, following its recent product launch. (<a href="https://www.irishexaminer.com/business/companies/arid-41870727.html"><span>Read more</span></a>)</p></li><li><p><strong>Neuronostics raises $4.04M to advance its digital biomarker platform (epilepsy diagnostics): </strong>The UK-based company will use the funding to further develop its digital biomarker technology aimed at more objective, quantifiable epilepsy diagnosis and monitoring. (<a href="https://www.startupmag.co.uk/funding/neuronostics-2026-seed-funding/"><span>Read more</span></a>)</p></li><li><p><strong>Fluent raises $2M for its Telepathic device to remove communication barriers for people with impaired speech (assistive BCI): </strong>Developed with University of Melbourne research, the device is described by its founders as building an AI-enabled third hemisphere to help restore functional communication for people who cannot speak. (<a href="https://www.unimelb.edu.au/newsroom/news/2026/june/telepathic-device-set-to-remove-communication-barrier-for-people-with-impaired-speech"><span>Read more</span></a>)</p><div><hr></div></li></ul><h3>&#129504; Neurotech Trends</h3><ul><li><p><strong>Focused ultrasound investment posts a record first half of 2026: </strong>Industry trackers report the strongest six-month stretch for focused ultrasound investment on record, spanning both oncology and neuromodulation applications. The surge suggests investors increasingly view non-invasive ultrasound platforms as a maturing category rather than an experimental one, with implications for how neuromodulation capital gets allocated for the rest of the year. (<a href="https://www.linkedin.com/posts/cclarkinnovation_the-first-half-of-2026-has-been-a-record-setting-activity-7480622034436345856-NpIt"><span>Read more</span></a>)</p></li><li><p><strong>Reimbursement pathways catch up to neuromodulation hardware: </strong>The American Medical Association approved two new CPT Category III codes for transcutaneous spinal stimulation, while a proposed 2027 CMS rule would give Neuspera&#8217;s integrated sacral neuromodulation system the same Medicare payment status as legacy implantable devices. Together they mark a broader shift: newer, less invasive neuromodulation formats are finally getting billing infrastructure built around them, which is often the real gate to adoption. (<a href="https://www.linkedin.com/posts/aneuvo_spinalcordinjury-sci-neurorehabilitation-activity-7480292149654351872-NX4e"><span>Read more</span></a><span>)</span> </p></li><li><p><strong>The next wave of BCI companies is building on, not around, the pioneers: </strong>A field survey argues that newer BCI entrants are increasingly designing around the surgical, regulatory, and manufacturing lessons of Neuralink, Synchron, and Blackrock rather than starting from scratch. That&#8217;s shortening development timelines but also concentrating risk around a handful of shared technical approaches. (<a href="https://www.bioworld.com/articles/print/732156-next-wave-of-bci-firms-builds-on-pioneers-to-tackle-challenges"><span>Read more</span></a>)</p><div><hr></div><h3><span>&#128216;</span><strong> Neurotech Article</strong></h3></li></ul><ol><li><p><strong>Recalibration of implantable BCIs for long-term independent use &#8212; a systematic review (chronic BCI performance): </strong>The review surveys how implanted BCIs drift over months and years of independent, unsupervised use, and catalogs the recalibration strategies developed to keep decoding accuracy stable. It&#8217;s a rare synthesis of the unglamorous engineering problem that determines whether a BCI is a lab demo or a daily-use device. (<a href="https://iopscience.iop.org/article/10.1088/1741-2552/ae7694"><span>Read more</span></a>)</p></li><li><p><strong>Brain2voice 2.0 pushes voice-synthesis BCI performance further (speech decoding): </strong>The preprint reports a new high-performance architecture for decoding intended speech directly into synthesized voice output. Gains come largely from architecture changes rather than new neural data, suggesting there&#8217;s still headroom in existing recording hardware. (<a href="https://www.biorxiv.org/content/10.64898/2026.06.30.735633v1"><span>Read more</span></a>)</p></li><li><p><strong>Bioadhesive patch enables ultrasound deep brain stimulation and real-time monitoring for sleep (bioresorbable interfaces): </strong>Researchers describe a skin-attached, bioresorbable patch that delivers ultrasound-based deep brain stimulation while simultaneously recording electrophysiological signals, tested for enhancing REM sleep. The self-powered, non-implanted design points toward a middle ground between wearables and surgical devices. (<a href="https://www.nature.com/articles/s41467-026-73787-6"><span>Read more</span></a>)</p></li><li><p><strong>Multifocal noninvasive deep brain stimulation improves cognition in mild cognitive impairment (neuromodulation for MCI): </strong>A randomized study found that multifocal, noninvasive DBS improved cognitive performance in patients with mild cognitive impairment, without the surgical risk of implanted electrodes. It adds to a growing body of evidence that noninvasive stimulation can meaningfully affect early-stage cognitive decline. (<a href="https://jamanetwork.com/journals/jamanetworkopen/fullarticle/2851135"><span>Read more</span></a>)</p></li><li><p><strong>Passive digital health technologies show promise for Alzheimer&#8217;s screening (early detection): </strong>A systematic review evaluates passive sensing tools &#8212; from smartphone use patterns to ambient monitoring &#8212; for detecting early Alzheimer&#8217;s signals without active patient testing. The approach could widen screening access well beyond clinic-based cognitive assessments. (<a href="https://pubmed.ncbi.nlm.nih.gov/42034769/"><span>Read more</span></a>)</p><div><hr></div></li></ol><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>2026 NYC Neuromodulation Conference</strong><br>&#128197; Date: July 30 &#8211; August 3, 2026 | &#128205; City College of New York, NYC</p><p><strong>Why Attend the Event?</strong> The largest global meeting this year dedicated to brain interface science, pulling together researchers, clinicians, and technologists building the next generation of neuromodulation tools. Useful if you're tracking where closed-loop BCI and electrode technology are headed, or looking to network with the people building them.<br><strong>Link to register:</strong> <a href="https://neuromodec.org/2026-nyc-neuromodulation-conference/">Register here</a></p></li><li><p><strong>Anthriq Fellowship 2026 </strong></p><p>&#128197; EOI Deadline: July 31, 2026 | &#128205;Bengaluru, India </p><p><strong>Why apply? </strong>A research fellowship providing selected applicants direct access to research-grade neurotech hardware, aimed at researchers whose work has been constrained by equipment access and the right guidance. <br><strong>Link to Apply:</strong> <a href="https://docs.google.com/forms/d/e/1FAIpQLScNA305eZ551QkVj7lu_pbHmbzNYYXdjTwXczVkUfzTb6oMtg/viewform?usp=header">Apply here</a></p></li><li><p><strong>NYC Clinical and Research TMS Course                                                                   </strong></p><p>&#128197; Date: August 3&#8211;4, 2026 | &#128205; New York, NY<br><strong>Why Attend the Event?</strong> A hands-on certification course covering TMS administration protocols for both clinical practice and research settings &#8212; useful for clinicians and teams building out neuromodulation programs.                            </p><p><strong>Link to register:</strong> <a href="https://neuromodec.org/tms-certification-course-2026/">Register here</a></p></li><li><p><strong>Neural Circuits in Health and Disease Conference 2026</strong></p><p><span>&#128197; </span>August 17&#8211;19, 2026 | <span>&#128205; </span>UC Irvine School of Medicine, Irvine, CA</p><p><strong>Why Attend the Event? </strong>An academic research conference on the circuit-level mechanisms underlying neurological and psychiatric disease &#8212; relevant grounding for anyone tracking the basic science behind next-generation neuromodulation targets. </p><p><strong>Link to register: </strong><a href="https://cncm.medschool.uci.edu/2026-cncm-conference/"><span>Register here</span></a></p></li><li><p><strong>University of Iowa Brain Workshop</strong><br>&#128197; Date: August 18&#8211;21, 2026 | &#128205; Iowa City, IA</p><p><strong>Why Attend the Event?</strong> A student-focused, application-based workshop (resume, coursework list, statement of purpose required) &#8212; worth tracking as an early-career pipeline signal for who&#8217;s entering the neurotech research pool next.<br><strong>Link to register:</strong> <a href="https://brainworkshop.sites.uiowa.edu/apply">Apply here</a></p></li><li><p><strong>Summer Workshop on the Dynamic Brain 2026</strong></p><p><span>&#128197; </span>August 23 &#8211; September 6, 2026 | <span>&#128205; </span>Friday Harbor, WA (Allen Institute)</p><p><strong>Why Attend the Event? </strong>An intensive, hands-on workshop pairing computational modeling with experimental neuroscience training, aimed at graduate students and early-career researchers working on brain dynamics. </p><p><strong>Learn more about the event: </strong><a href="https://alleninstitute.org/events/"><span>Learn more</span></a></p><div><hr></div></li></ol><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Cognito Therapeutics- How a Gamma-Wave Headset Is Turning Brain Rhythm Into an Alzheimer's Therapy</strong></p><p>While most Alzheimer&#8217;s headlines this year have gone to anti-amyloid drugs, Cognito Therapeutics has spent the past decade pursuing a different theory of the disease &#8212; one centered on restoring the brain&#8217;s own gamma rhythm rather than clearing plaques. This month&#8217;s exploratory biomarker data at AAIC 2026 is the latest piece of evidence for that bet.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!AFaB!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!AFaB!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 424w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 848w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 1272w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!AFaB!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic" width="1456" height="859" 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srcset="https://substackcdn.com/image/fetch/$s_!AFaB!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 424w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 848w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 1272w, https://substackcdn.com/image/fetch/$s_!AFaB!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe835c2c-1907-46ba-82f9-9ccacbf5b063_2880x1700.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview: </strong></p><p>Cognito Therapeutics is a Cambridge, Massachusetts-based neurotechnology company developing non-invasive, disease-modifying therapies for Alzheimer&#8217;s disease and other neurodegenerative conditions. Its lead platform, Spectris, delivers combined 40Hz auditory and visual sensory stimulation designed to evoke gamma-frequency brain activity &#8212; a rhythm that is disrupted in Alzheimer&#8217;s patients and linked to synaptic and myelin health.</p><p><strong>Use Case Highlights: </strong></p><ul><li><p><strong>Cognitive Preservation: </strong>Evoking gamma-frequency brain activity through non-invasive light and sound stimulation to slow cognitive and functional decline in patients with mild-to-moderate Alzheimer&#8217;s disease.</p></li><li><p><strong>Disease-Modifying Mechanism: </strong>Preserving myelin content and reducing white matter atrophy, targeting a structural driver of Alzheimer&#8217;s progression rather than only its downstream symptoms.</p></li><li><p><strong>Non-Pharmacological Alternative: </strong>Offering patients and clinicians a non-invasive, device-based option alongside anti-amyloid infusion therapies, backed by FDA Breakthrough Device Designation.</p></li><li><p><strong>Future Horizons: </strong>Building mechanistic evidence through the ongoing HOPE pivotal study, with an eye toward expanding beyond mild-to-moderate Alzheimer&#8217;s into broader neurodegenerative indications.</p></li></ul><p><strong>Target Audience: </strong></p><ul><li><p>Neurologists and dementia care specialists managing mild-to-moderate Alzheimer&#8217;s patients</p></li><li><p>Clinical researchers studying white matter and myelin as disease-modifying targets</p></li><li><p>Payers and health systems evaluating non-pharmacological alternatives to anti-amyloid infusion therapies </p></li></ul><p><strong>Key Partnerships: </strong></p><p>Cognito&#8217;s science originated at MIT, where scientific co-founders Li-Huei Tsai and Ed Boyden discovered that sensory-evoked gamma stimulation could slow Alzheimer&#8217;s-related neurodegeneration in preclinical models. The company closed an oversubscribed $105M Series C in March 2026, led by Morningside Ventures, IAG Capital Partners, and Starbloom Capital, to fund its push toward FDA submission and commercial launch. It has extended that momentum into a growing network of clinical collaborations &#8212; including brain health partnerships with the WVU Rockefeller Neuroscience Institute and Ochsner Health &#8212; alongside its ongoing HOPE pivotal study.</p><p><strong>Leadership Team: </strong></p><p>Cognito is led by CEO Christian Howell, with Ralph Kern, MD, serving as Chief Medical Officer overseeing clinical strategy, and Thomas Fagan as Executive Vice President of the Alzheimer&#8217;s Portfolio, responsible for commercialization readiness. Scientific founders Li-Huei Tsai and Ed Boyden remain closely tied to the company&#8217;s ongoing research direction. </p><p><strong>For more information, visit <a href="https://www.cognitotx.com">cognitotx.com.</a>  </strong> </p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><div><hr></div><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><div><hr></div>]]></content:encoded></item><item><title><![CDATA[Signals, Steps & the timing of the brain: Precision Neuromodulation Comes of Age– Issue #39]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #39! This edition captures the most consequential clinical move of 2026: Paradromics&#8217; first-in-human Connexus implant, alongside a capital market that has crossed into a new chapter of conviction.]]></description><link>https://neurotechpulse.substack.com/p/signals-steps-and-the-timing-of-the</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/signals-steps-and-the-timing-of-the</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Tue, 30 Jun 2026 10:19:09 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!-u5m!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #39!</strong> This edition captures the most consequential clinical move of 2026: Paradromics&#8217; first-in-human Connexus implant, alongside a capital market that has crossed into a new chapter of conviction.</p><p><strong>Paradromics&#8217;</strong> Connexus BCI implant, <strong>Wave Neuroscience&#8217;s</strong> FDA clearance for PTSD, <strong>Synchron&#8217;s</strong> advancing INTENT pivotal trial, and <strong>Flourish&#8217;s</strong> $500M raise at a $2.5B valuation headline a month where BCI platform companies are absorbing outsized investor attention. <strong>China&#8217;s Neuracle Technology</strong> also became the first company globally to win commercial approval for an invasive BCI.</p><p>This issue&#8217;s case Study features <strong>Paradromics</strong> &#8212; the Austin startup that just completed the first fully implantable, wireless BCI implant for speech restoration in a human patient.</p><div><hr></div><h3><span>&#9889;&#65039;</span><strong> Neurotech Newsflash</strong></h3><ul><li><p><strong>Paradromics completes first-in-human Connexus BCI implant (speech restoration):</strong> Neurosurgeons at University of Michigan Health implanted the Connexus wireless BCI &#8212; a 421-microelectrode cortical array connected to a subcutaneous chest transceiver &#8212; into a woman with motor neuron disease as part of the FDA-approved Connect-One Early Feasibility Study. The trial will evaluate long-term safety ahead of speech-decoding work. (<a href="https://www.michiganmedicine.org/news-release/university-michigan-implants-first-human-paradromics-wireless-brain-computer-interface-designed"><span>Read more</span></a><span>)</span></p></li><li><p><strong>Wave Neuroscience receives FDA clearance for MeRT PTSD protocol (precision neuromodulation):</strong> Wave&#8217;s MeRT system &#8212; the first personalized, biomarker-guided neuromodulation platform to clear this indication &#8212; uses each patient&#8217;s own EEG data to individualize TMS parameters. The clearance opens reimbursement discussions and VA system partnerships. (<a href="https://www.prnewswire.com/news-releases/wave-neuroscience-announces-fda-clearance-of-mert-for-ptsd-302797513.html"><span>Read more</span></a><span>)</span></p></li><li><p><strong>Synchron advances INTENT pivotal trial as BCI PMA race intensifies (endovascular BCI):</strong> Synchron&#8217;s third clinical program is moving toward enrollment, building on COMMAND&#8217;s clean 12-month safety record across six patients. A successful INTENT trial would position Synchron ahead of Neuralink and Precision Neuroscience for the first BCI PMA. (<a href="https://www.techtimes.com/articles/317929/20260606/synchron-brain-implant-targets-2026-pivotal-trial-first-fda-approved-bci.htm"><span>Read more</span></a><span>)</span></p></li><li><p><strong>China&#8217;s Neuracle Technology receives commercial approval for NEO BCI (global BCI regulation):</strong> NEO, developed with Tsinghua University, became the first invasive BCI product globally approved for use outside clinical trials, available to spinal cord injury patients with paralysis. The approval predates any US company reaching PMA. (<a href="https://www.technologyreview.com/2026/06/01/1138133/china-world-first-brain-chip/"><span>Read more</span></a><span>)</span></p></li><li><p><strong>BrainGate consortium publishes intracortical typing neuroprosthesis reaching 22 WPM (speech decoding):</strong> Researchers from Brown University and Mass General Brigham published results of a high-performance typing BCI achieving 22 words per minute at 1.6% word error rate for patients with paralysis. (<a href="https://www.neuroba.com/post/the-most-groundbreaking-bci-research-published-in-2026"><span>Read more</span></a><span>)</span></p></li></ul><div><hr></div><h3><span>&#128176;</span><strong> Notable Funding</strong></h3><ul><li><p><strong>Flourish raises $500M at $2.5B valuation to build neuroAI chips and algorithms:</strong> Led by Jeff Bezos and founded by CTRL-Labs co-founder Thomas Reardon, the round places Flourish alongside Science Corp ($1.5B), Synchron (~$1B), and Merge Labs ($850M) in the neurotech valuation stack &#8212; all below Neuralink&#8217;s $9B. (<a href="https://www.wired.com/story/jeff-bezos-is-funding-a-wild-hunt-for-the-brains-core-algorithm/"><span>Read more</span></a><span>)</span></p></li><li><p><strong>GT Medical Technologies closes oversubscribed $100M Series E for brain tumor treatment:</strong> Proceeds advance commercial rollout of GammaTile, an implantable radiation therapy delivered directly to the surgical cavity following brain tumor removal. (<a href="https://www.prnewswire.com/news-releases/gt-medical-technologies-completes-oversubscribed-100-million-series-e-equity-financing-to-advance-commercial-treatment-for-patients-with-operable-brain-tumors-302794352.html"><span>Read more</span></a><span>)</span></p></li><li><p><strong>Nyxoah prices $95M IPO to scale Genio hypoglossal nerve stimulation platform:</strong> The Belgian company will use proceeds to fund US commercial expansion of its leadless, bilateral nerve stimulator for obstructive sleep apnea. (<a href="https://www.massdevice.com/nyxoah-prices-95m-public-offering/"><span>Read more</span></a><span>)</span></p></li><li><p><strong>CereVasc closes oversubscribed $85M Series C for eShunt hydrocephalus system:</strong> The round backs CereVasc&#8217;s minimally invasive eShunt platform targeting Normal Pressure Hydrocephalus, a chronically underdiagnosed condition affecting an estimated 700,000 Americans. (<a href="https://www.prnewswire.com/news-releases/cerevasc-inc-announces-over-subscribed-85-million-series-c-financing-to-advance-its-novel-eshunt-system-for-the-treatment-of-normal-pressure-hydrocephalus-302791507.html"><span>Read more</span></a><span>)</span></p></li><li><p><strong>ARPA-H launches REST program to fund restorative sleep neurotechnology:</strong> The new program solicits proposals for technologies that detect, modify, and improve sleep architecture; a parallel BRAINS Exploratory Topic seeks solutions for regrowing damaged brain regions, with a July 9 deadline. (<a href="https://arpa-h.gov/news-and-events/arpa-h-launches-program-redefine-sleep-measurable-controllable-driver-health-0"><span>Read more</span></a><span>)</span></p></li><li><p><strong>Allen Institute launches $200M Brain Health Accelerator:</strong> The Seattle-based institute is expanding its open-science brain-atlasing work into a translational accelerator focused on converting brain maps into therapeutic targets. (<a href="https://endpoints.news/allen-institute-launches-200m-effort-to-turn-brain-atlas-lessons-into-medicines/"><span>Read more</span></a><span>)</span></p></li></ul><div><hr></div><h3>&#129504; Neurotech Trends</h3><ul><li><p><strong>BCI valuations have crossed a new structural threshold as platform capital concentrates:</strong> With Flourish entering at $2.5B and cumulative disclosed BCI funding topping $2.2B across 12 months, BCIs now represent 76% of all neurotech capital despite comprising only 36% of deals. Founders raising sub-$50M rounds face a sharper differentiation bar than ever. (<a href="https://newmarketpitch.com/blogs/news/neurotech-funding-analysis"><span>Read more</span></a><span>)</span></p></li><li><p><strong>China&#8217;s NEO approval marks the first commercial BCI in history, reframing the global regulatory narrative:</strong> China&#8217;s NMPA approval of NEO for spinal cord injury &#8212; months ahead of any US PMA &#8212; is a policy signal as much as a clinical one, and is likely to surface in US FDA modernization debates and EU MDR discussions. (<a href="https://www.technologyreview.com/2026/06/01/1138133/china-world-first-brain-chip/"><span>Read more</span></a><span>)</span></p></li><li><p><strong>The neurotech market&#8217;s real center of gravity is still reimbursement, not hardware:</strong> The Inspire Medical 2026 guidance cut, driven by reimbursement friction rather than clinical failure, underscores that companies generating real revenue win through coding strategy and payer engagement, not device performance alone. (<a href="https://newmarketpitch.com/blogs/news/neurotech-is-growing"><span>Read more</span></a><span>)</span></p></li></ul><div><hr></div><h3><span>&#128216;</span><strong> Neurotech Article</strong></h3><ol><li><p><strong>Adaptive deep brain stimulation for dynamic gait control in Parkinson&#8217;s disease: a randomized feasibility trial:</strong> UCSF researchers synchronized DBS stimulation amplitude to the gait cycle itself rather than slower global motor-state signals, using patient-specific neural biomarkers embedded in a bidirectional neurostimulator. In a double-blind, at-home crossover trial, gait-phase-synchronized aDBS significantly reduced falls and improved step symmetry compared with continuous stimulation. Published in Nature Medicine on June 15, 2026. (<a href="https://www.nature.com/articles/s41591-026-04434-2"><span>Read More</span></a>)</p></li><li><p><strong>Pre-stimulus brain states predict and control variability in stimulation responses:</strong> Analyzing more than 10,000 single-pulse stimulations across 36 epilepsy patients, researchers found that whole-brain pre-stimulus activity &#8212; particularly network synchronization and functional connectivity &#8212; reliably predicts how strongly the brain will respond to stimulation. Closed-loop systems that time stimulation to favorable brain states reduced response variability, pointing toward more reproducible neuromodulation protocols. Published in Brain Stimulation. (<a href="https://www.sciencedirect.com/science/article/pii/S1935861X26000951"><span>Read More</span>)</a></p></li><li><p><strong>Deep brain stimulation induces white matter remodeling and functional changes to brain-wide networks:</strong> In a nonhuman primate model, Mount Sinai researchers led by Helen Mayberg found that subcallosal cingulate DBS &#8212; the standard target for treatment-resistant depression &#8212; physically remodeled white matter integrity in the cingulum bundle and reorganized functional connectivity across brain-wide networks, weeks after stimulation began. It is the first direct evidence that DBS rewires brain structure rather than only modulating activity in the moment. (<a href="https://www.nature.com/articles/s41593-026-02301-4"><span>Read More</span></a>)</p></li><li><p><strong>Distributed control circuits across a brain-and-cord connectome:</strong> An international consortium published the first densely-reconstructed adult fly connectome that unites the brain and ventral nerve cord, mapping 10^8 synaptic connections. The analysis reveals that motor and visceral control is organized into local sensory-feedback loops linked by long-range ascending and descending neurons &#8212; an architecture the authors describe as distributed and parallelized, much like engineered control systems. (<a href="https://www.nature.com/articles/s41586-026-10735-w"><span>Read More</span></a>)</p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>FENS Forum 2026<br></strong><span>&#128197; </span>Date: July 6&#8211;10, 2026 | <span>&#128205; </span>Barcelona, Spain</p><p><strong>Why Attend the Event?</strong> Europe&#8217;s largest international neuroscience congress, organized by FENS in partnership with the Spanish Society of Neuroscience (SENC). Covers all domains of neuroscience from basic to translational research, with plenary lectures, scientific symposia, technical workshops, and extensive networking opportunities for the global neuroscience community.</p><p><strong>Link to register:</strong> <a href="https://fensforum.org/"><span>Register here</span></a></p></li><li><p><strong>IEEE EMBC 2026</strong></p><p><span>&#128197; </span>Date: July 26&#8211;30, 2026 | <span>&#128205; </span>Toronto, Canada</p><p><strong>Why Attend the Event?</strong> The IEEE Engineering in Medicine &amp; Biology Conference is one of the largest biomedical engineering conferences in the world, covering neural engineering, BCI, neuromodulation, and biomedical signal processing, with strong representation from both academic researchers and industry.</p><p><strong>Link to register:</strong> <a href="https://embc.embs.org/2026/"><span>Register here</span></a></p></li><li><p><strong>2026 NYC Neuromodulation Conference</strong></p><p><span>&#128197; </span>Date: July 30 &#8211; August 3, 2026 | <span>&#128205; </span>New York, NY</p><p><strong>Why Attend the Event?</strong> A leading neuromodulation-focused meeting bringing together clinicians, engineers, and industry leaders to discuss the latest advances in DBS, spinal cord stimulation, peripheral nerve stimulation, and emerging neurotechnology platforms.</p><p><strong>Link to register:</strong> <a href="https://neuromodec.org/2026-nyc-neuromodulation-conference/index.html"><span>Register here</span></a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Paradromics &#8211; Building the High-Bandwidth BCI for the Real World</strong></p><p>While Neuralink dominates headlines and Synchron leads the minimally invasive narrative, Paradromics has quietly built one of the most technically rigorous implantable BCIs for communication in the field. The Connexus implant is the result of a decade of engineering discipline around a single principle: high-bandwidth neural recording, done wirelessly, done right.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!-u5m!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!-u5m!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 424w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 848w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 1272w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!-u5m!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic" width="994" height="662" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/d9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:662,&quot;width&quot;:994,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:49096,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/heic&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://neurotechpulse.substack.com/i/204240032?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!-u5m!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 424w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 848w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 1272w, https://substackcdn.com/image/fetch/$s_!-u5m!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fd9391664-247a-45e9-bdec-7776f9a1a467_994x662.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p>Paradromics&#8217; Connexus deploys a 421-microelectrode cortical array directly on the motor cortex &#8212; far denser than most clinical BCIs &#8212; with signals transmitted to a subcutaneous chest transceiver, then broadcast through the skin to an external receiver. There are no percutaneous cables and no external hardware tethered to the head, addressing one of the most underappreciated failure modes in clinical BCI deployment: infection risk from external components. The system was designed for speech restoration from the ground up, targeting patients with severe motor neuron disease, ALS, and related conditions who have lost the ability to speak.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Speech Restoration: </strong>Decoding attempted speech signals from motor cortex activity for patients with ALS and motor neuron disease.</p></li><li><p><strong>Communication Access: </strong>Restoring functional communication for fully or near-fully locked-in patients.</p></li><li><p><strong>Long-Term Safety: </strong>Establishing a percutaneous-free, infection-resistant architecture as the clinical standard for chronic implantation.</p></li><li><p><strong>Future Horizons: </strong>Expansion to additional enrollment sites and broader motor-impairment indications.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Neurosurgeons and clinical researchers managing ALS, motor neuron disease, and paralysis-related communication loss</p></li><li><p>Neurotech investors and analysts tracking the BCI race toward FDA PMA</p></li><li><p>Regulatory teams evaluating FDA IDE-to-PMA pathways for fully implantable devices</p></li><li><p>Hospital systems and academic medical centers considering BCI trial site partnerships</p></li></ul><p><strong>Key Partnerships:</strong></p><p>Paradromics is headquartered in Austin, Texas, founded in 2015 by CEO Matt Angle, Ph.D., with total funding of roughly $108M. The company&#8217;s anchor clinical site is University of Michigan Health, where the surgical team &#8212; led by Dr. Matthew Willsey and Dr. Aditya Pandey &#8212; first demonstrated safe temporary implantation in June 2025 as part of epilepsy research, de-risking the surgical approach ahead of the permanent implant.</p><p>The first-in-human permanent implant of Connexus was completed June 17, 2026, as part of the Connect-One Early Feasibility Study &#8212; the first FDA-approved early feasibility study for speech restoration with a fully implantable BCI. Initial trial focus is long-term safety, with speech-decoding work to follow. Additional enrollment sites are expected later this year. </p><p><strong>Leadership Team:</strong></p><p>Paradromics is led by Matt Angle, Ph.D. (Founder &amp; CEO), who has built the company&#8217;s regulatory strategy around a focused patient population &#8212; ALS and motor neuron disease &#8212; rather than the broadest possible device label. The clinical team is anchored by Dr. Matthew Willsey, a neurosurgeon and biomedical engineer, and Dr. Aditya Pandey, Chair of Neurosurgery at University of Michigan Health.</p><p><strong>For more information, visit <a href="https://www.paradromics.com"><span>paradromics.com</span></a>.</strong></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><div><hr></div><p><em><span>&#10084;&#65039; Join us on </span><a href="https://discord.com/invite/VAvUjKd7nS">Discord</a><span>.</span></em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><div><hr></div><p></p>]]></content:encoded></item><item><title><![CDATA[Signals, Strokes & Sovereign Capital: The New Neurotech Capital Cycle- Issue #38]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #38! This edition captures a turning point for therapeutic neurotech, with capital flooding into mental health and implantable neuromodulation at a pace the field hasn&#8217;t seen.]]></description><link>https://neurotechpulse.substack.com/p/signals-strokes-and-sovereign-capital</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/signals-strokes-and-sovereign-capital</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sun, 31 May 2026 06:02:17 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!mIX_!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #38!</strong> This edition captures a turning point for therapeutic neurotech, with capital flooding into mental health and implantable neuromodulation at a pace the field hasn&#8217;t seen. <br><strong>Mobia Medical&#8217;s</strong> $150M Nasdaq IPO, <strong>Neuralink&#8217;s</strong> sovereign backing from Oman&#8217;s OIA, <strong>BlueWind Medical&#8217;s</strong> $47.8M financing, and <strong>SonoMind&#8217;s</strong> &#8364;20M Series A headline a month where mental health indications are absorbing outsized attention from investors. <strong>MintNeuro and Motif Neurotech</strong> announced a landmark chip-supply partnership for miniaturized therapeutic BCIs. <br>This issue&#8217;s Case Study features <strong>Subsense</strong> &#8212; the Palo Alto startup developing an inhalable, nanoparticle-based BCI that requires no surgery whatsoever.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Mobia Medical lists on Nasdaq in $150M IPO (stroke recovery neuromodulation): </strong>The company's Vivistim Paired Vagus Nerve Stimulation System &#8212; the first FDA-approved VNS device for chronic ischemic stroke &#8212; priced at $15/share on May 7 and began trading May 8 under MOBI. Roughly $93.5M of proceeds will expand the direct sales force targeting 1M+ eligible US stroke survivors. (<a href="https://ir.mobia.com/news-releases/news-release-details/mobia-medical-announces-pricing-initial-public-offering">Read more</a>)</p></li><li><p><strong>MintNeuro and Motif Neurotech partner to miniaturize therapeutic BCI implants (mental health neuromodulation): </strong>The May 1 partnership combines MintNeuro&#8217;s low-power neural semiconductors with Motif&#8217;s clinical-stage implant platform under a multi-year chip supply deal, targeting smaller, lower-power BCIs for psychiatric conditions. (<a href="https://www.newelectronics.co.uk/content/news/mintneuro-and-motif-neurotech-to-develop-miniaturised-brain-computer-interface-therapies">Read more</a>)</p></li><li><p><strong>Cortec demonstrates first-in-human fully implantable BCI for stroke hand function (motor restoration): </strong>At INS 2026, Cortec presented data from the first human use of its fully implantable subdural cortical stimulation system, showing meaningful hand-function improvements in chronic stroke patients using simultaneous recording and stimulation. (<a href="https://cslide.ctimeetingtech.com/ins26/attendee/person/3785">Read More)</a></p></li><li><p><strong>Neuralink receives sovereign investment from Oman Investment Authority (BCI expansion): </strong>Oman&#8217;s OIA disclosed a strategic stake in Neuralink as part of its deep-tech diversification strategy. As of January 2026, Neuralink had implanted devices in 21 patients, with Musk targeting 1,000 procedures by year-end. (<a href="https://www.zawya.com/en/economy/gcc/oman-investment-authority-invests-in-musks-neuralink-to-back-brain-interface-technology-tpe6oysk">Read more</a>)</p></li><li><p><strong>Neurosoft Bioelectronics closes oversubscribed $7.5M seed for soft BCI platform (clinical-stage implants): </strong>Led by Skybound Venture Capital, the May 20 round brings total funding to $20M+. Neurosoft&#8217;s stretchable electrode arrays minimize tissue response by flexing with the brain&#8217;s surface, with active trials in the US and Europe. (<a href="https://finance.yahoo.com/sectors/healthcare/articles/neurosoft-bioelectronics-closes-7-5m-120000993.html">Read more</a>)</p></li><li><p><strong>Epineuron Receives FDA 510(k) Clearance for Evala&#174; Nerve Stimulator: </strong>Epineuron has received FDA 510(k) clearance for its Evala&#174; Nerve Stimulator &#8212; a handheld bioelectronic device designed to help surgeons rapidly identify and evaluate nerves during surgery. The approval marks another step forward for peripheral nerve care and highlights the growing role of bioelectronic medicine in improving surgical precision and nerve regeneration outcomes.  (<a href="https://finance.yahoo.com/news/epineuron-receives-fda-510-k-123000130.html">Read More)</a></p><div><hr></div></li></ul><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>BlueWind Medical raises $47.8M to commercialize its Revi bladder neuromodulation system: </strong>Revi is an implantable tibial nerve stimulator for overactive bladder requiring no external components. Proceeds fund US commercial expansion in a high-prevalence condition with limited existing options. (<a href="https://www.businesswire.com/news/home/20260514347753/en/BlueWind-Medical-Secures-%2447.8-Million-Financing-to-Accelerate-Commercialization-of-Revi-System">Read more</a>)</p></li><li><p><strong>SonoMind raises &#8364;20M Series A for non-invasive focused ultrasound targeting treatment-resistant depression: </strong>The round funds clinical development of SonoMind&#8217;s transcranial focused ultrasound platform, which reaches deep brain circuits without surgery &#8212; targeting the ~30% of depression patients who don&#8217;t respond to first-line treatments. (<a href="https://www.sonomind.com/communique-de-presse-20m/">Read more</a>)</p></li><li><p><strong>Ampa raises ~$17M oversubscribed round to expand portable TMS platform for depression: </strong>Backed by Tim Ferriss (whose public endorsement amplified the raise), proceeds fund at-home and point-of-care rollout of Ampa&#8217;s fast-acting TMS device &#8212; a direct challenge to the clinic-only TMS model. (<a href="https://www.prnewswire.com/news-releases/ampa-accelerates-rollout-of-portable-neuromodulation-platform-for-depression-with-oversubscribed-financing-302771815.html?tc=eml_cleartime">Read more</a>)</p></li><li><p><strong>EBT Medical and NinaMED secure $13.75M to advance NiNA System for overactive bladder: </strong>The joint financing supports commercialization of the licensed NiNA tibial nerve modulation platform, signaling that bladder indications are now attracting multiple investors simultaneously alongside neurological targets. (<a href="https://www.prnewswire.com/news-releases/ebt-medical-and-ninamed-announce-us13-75m-financing-to-advance-licensed-nina-system-for-overactive-bladder-302771919.html">Read more</a>)</p></li><li><p><strong>Nexstim secures &#8364;5M from Eiffel and Brainlab to advance TMS navigation platform: </strong>Brainlab&#8217;s participation &#8212; from a company dominant in surgical navigation &#8212; suggests downstream interest in integrating TMS neuromodulation into surgical planning workflows. <a href="https://www.nexstim.com/investors/releases?publicationId=ba31cfc4-bd80-4e73-b946-a684aa716d06">(Read More)</a></p></li><li><p><strong>Neurosoft Bioelectronics awarded Swiss federal grant alongside its seed round: </strong>The government grant supports Neurosoft&#8217;s ongoing clinical trials and R&amp;D in Switzerland, a growing European neurotech funding hub, complementing its private capital raise. (<a href="https://finance.yahoo.com/sectors/healthcare/articles/neurosoft-bioelectronics-closes-7-5m-120000993.html">Read more</a>)</p><div><hr></div><h3>&#129504; Neurotech Trends</h3></li><li><p><strong>BCI funding reaches a new structural scale as sovereign and institutional capital enters the field: </strong>BCI companies raised ~$1.73B across 8 deals in the past 12 months &#8212; 76% of all neurotech capital by dollar value &#8212; with average deal size at $216M. OIA&#8217;s Neuralink investment joins prior sovereign backers from Qatar and UAE, signaling BCIs are becoming a geopolitical infrastructure bet, not just a venture category. (<a href="https://newmarketpitch.com/blogs/news/neurotech-funding-analysis">Read more</a>)</p></li><li><p><strong>Mental health neuromodulation absorbs a disproportionate share of May 2026 capital, signaling a category shift: </strong>Over $100M in disclosed financing (SonoMind, Ampa, EBT/NinaMED, Nexstim) &#8212; excluding Mobia&#8217;s IPO &#8212; flowed into mental health or bladder neuromodulation in early May alone. Investors are backing depression, OAB, and anxiety targets with conviction previously reserved for paralysis and motor restoration. (<a href="https://iamhrf.org/funding-landscape/">Read more</a>)</p></li><li><p><strong>Neuromodulation leads by deal count; BCIs dominate by capital &#8212; a bifurcated market structure is forming: </strong>Neuromodulation devices account for 45.5% of disclosed deals but a small fraction of dollars; BCIs took 76% of capital from just 8 deals. Founders building differentiated neuromodulation without a path to platform-scale BCI face a narrowing fundraising window. (<a href="https://newmarketpitch.com/blogs/news/neurotech-funding-analysis">Read more</a>)</p><div><hr></div></li></ul><h2><strong>&#128216;  Neurotech Article</strong></h2><ol><li><p><strong>Foundation model decodes brain activity across individuals:</strong> Researchers introduced a large-scale neural foundation model trained on multimodal brain datasets to generalize across subjects and tasks, improving brain signal interpretation without heavy subject-specific calibration. The work could accelerate scalable BCIs and more adaptable neurotechnology systems. (<a href="https://osf.io/preprints/metaarxiv/wvx48_v2?trk=feed_main-feed-card_feed-article-content">Read More)</a></p></li><li><p><strong>Blood biomarkers show promise for early Parkinson&#8217;s detection:</strong> A new study identified plasma biomarkers linked to early Parkinson&#8217;s progression and cognitive decline, strengthening the case for minimally invasive diagnostics before severe symptoms emerge. The findings could support earlier intervention and personalized treatment pathways. (<a href="https://jnnp.bmj.com/content/early/2026/04/07/jnnp-2025-337800">Read More)</a></p></li><li><p><strong>EEG signatures linked to depression severity and treatment response:</strong> Researchers found distinct electrophysiological patterns associated with depressive symptom severity and antidepressant response, reinforcing EEG&#8217;s potential as an objective biomarker in psychiatry. The study advances efforts toward precision mental health diagnostics. (<a href="https://www.sciencedirect.com/science/article/pii/S0165178126002520?dgcid=coauthor">Read More</a>)</p></li><li><p><strong>High-resolution brain mapping reveals new principles of neural organization:</strong> Scientists used large-scale neural recording and computational analysis to uncover previously hidden organizational patterns in the human brain, offering deeper insight into how cognition and behavior emerge from distributed neural networks. The findings may inform next-generation neurotechnologies and brain-inspired AI. (<a href="https://www.nature.com/articles/s41586-026-10524-5?">Read More</a>)</p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>Active Implantable Medical Devices (AIMD) Workshop 2026<br></strong>&#128197; Date: June 4&#8211;5, 2026 | &#128205; Delft, Netherlands<br><strong>Why Attend the Event? </strong>Focuses on next-generation implantable medical devices, bioelectronics, neural interfaces, and regulatory pathways shaping future neurotechnology innovation.<br><strong>Link to register:</strong> <a href="https://aimd.bio/">Register Here</a></p></li><li><p><strong>Clinical TMS Society Annual Meeting 2026<br></strong>&#128197; Date: June 4&#8211;6, 2026 | &#128205; Boston, Massachusetts<br><strong>Why Attend the Event?</strong> Brings together clinicians, researchers, and industry leaders exploring transcranial magnetic stimulation (TMS), neuromodulation therapies, and advancements in psychiatric and neurological care.<br><strong>Link to register:</strong> <a href="https://clinicaltmssociety.org/annual-meeting/">Register Here</a></p></li><li><p><strong>Precision Neuroscience Conference 2026<br></strong>&#128197; Date: June 10&#8211;12, 2026 | &#128205; Aarhus, Denmark<br><strong>Why Attend the Event?</strong> Highlights emerging research in precision neuroscience, neuroimaging, computational neuroscience, biomarkers, and data-driven approaches for personalized brain health.<br><strong>Link to register:</strong> <a href="https://fbri.vtc.vt.edu/events/conferences/precision-neuroscience-2026.html">Register here</a></p><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Subsense &#8211; Delivering Brain-Computer Interfaces Without a Single Incision. </strong><br>What if the next brain-computer interface wasn&#8217;t implanted &#8212; it was inhaled? That is Subsense&#8217;s founding premise. While every other BCI company today either opens the skull or threads a catheter through a blood vessel, the Palo Alto startup is pursuing a radically different path: engineered nanoparticles, delivered via nasal spray, that cross the blood&#8211;brain barrier to both sense and stimulate neural activity. No incision. No implant.</p></li></ol><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!mIX_!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!mIX_!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 424w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 848w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 1272w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!mIX_!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic" width="1000" height="591" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/faaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:591,&quot;width&quot;:1000,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:28197,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/heic&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://neurotechpulse.substack.com/i/199610219?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!mIX_!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 424w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 848w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 1272w, https://substackcdn.com/image/fetch/$s_!mIX_!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Ffaaec309-79fe-4066-afdf-3dacb381370d_1000x591.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p>Subsense is developing the first nanoparticle-based, non-surgical bidirectional BCI. The system pairs two categories of engineered nanoparticles &#8212; plasmonic nanoparticles for signal sensing and magnetoelectric nanoparticles for stimulation &#8212; with specialized hardware and neural decoding software. Delivery is non-invasive: particles are administered via nasal spray and engineered to cross the blood&#8211;brain barrier, reaching target neural circuits without surgery. The company was co-founded by CEO Tetiana Aleksandrova and investor Artem Sokolov, and operates a dedicated neuroengineering laboratory in Palo Alto with academic partnerships at UC Santa Cruz and ETH Zurich.</p><p> <strong>Use Case Highlights:</strong></p><ul><li><p><strong>Neurodegeneration: </strong>Targeted stimulation and signal monitoring for Parkinson&#8217;s disease, Alzheimer&#8217;s, and epilepsy.</p></li><li><p><strong>Recovery &amp; Rehabilitation:</strong> Stroke recovery, motor rehabilitation, and chronic pain management via non-invasive neural modulation.</p></li><li><p><strong>Mental Health: </strong>Depression treatment through circuit-level stimulation without surgical intervention.</p></li><li><p><strong>Future Horizons: </strong>Sensory restoration, inner-speech decoding, and direct AI-to-brain interfaces &#8212; the company&#8217;s longer-range &#8220;moonshot&#8221; targets.</p></li></ul><p>  <strong>Target Audience:</strong></p><ul><li><p>Neurologists, movement disorder specialists, and rehabilitation clinicians managing Parkinson&#8217;s, epilepsy, stroke recovery, and chronic pain</p></li><li><p>Neuroscience and biomedical researchers exploring non-invasive neural interface technologies and nanoparticle delivery mechanisms</p></li><li><p>Medical device investors and venture capital firms tracking pre-clinical BCI platforms with large therapeutic TAMs</p></li><li><p>Regulatory and clinical development teams evaluating novel non-surgical pathways to FDA and EMA approval</p></li><li><p>Pharmaceutical and biotech companies exploring combination approaches that pair drug delivery with neural modulation. </p></li></ul><p><strong>Key Partnerships:</strong></p><p>Subsense emerged from stealth in February 2025 with a $17M seed round led by   Golden Falcon Capital, followed by a $10M extension in December 2025, bringing total funding to $27M. Golden Falcon has led every round to date &#8212; an unusually high-conviction signal at this pre-clinical stage. Academic validation partnerships with UC Santa Cruz and ETH Zurich are supporting early proof-of-concept work in nanoparticle delivery mechanisms and therapeutic applications.</p><p>Animal studies began in late 2025, with a proof-of-concept milestone targeted for late 2026: demonstrating reading, stimulation, and symptom treatment in mouse models of Parkinson&#8217;s or epilepsy. Pilot human clinical trials are projected for 2027. Biocompatibility and safety assessments are expected to complete by 2028, with regulatory submission to follow and approval targeted around 2031.</p><p><strong>Leadership Team: </strong></p><p>Subsense is led by Tetiana Aleksandrova (Co-Founder &amp; CEO), a neurotech entrepreneur who has positioned the company at the intersection of materials science, neuroscience, and clinical translation. Co-founder Artem Sokolov, founder of Golden Falcon Capital, brings venture and strategic capital experience alongside deep conviction in the nanoparticle BCI thesis &#8212; having backed the company at every funding stage. The R&amp;D team spans nanoparticle engineering, neural signal acquisition, machine learning, and regulatory strategy, with a dedicated Director of R&amp;D Systems appointed in December 2025.</p><p><strong>For more information, visit <a href="https://subsense-bci.com/">subsense-bci.com</a>.</strong></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><div><hr></div><p><em>&#10084;&#65039; Join us on <a href="https://discord.com/invite/VAvUjKd7nS">Discord</a>.</em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><div><hr></div><div><hr></div><p></p>]]></content:encoded></item><item><title><![CDATA[Clinical Proof, Capital Signals, and the Data Advantage: Neurotech Doubles Down — Issue #37]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #37! This edition captures a month defined by regulatory wins across the spectrum, alongside a wave of capital flowing into both clinical and consumer neurotech.]]></description><link>https://neurotechpulse.substack.com/p/clinical-proof-capital-signals-and</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/clinical-proof-capital-signals-and</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Thu, 30 Apr 2026 06:00:55 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!Fm-y!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #37!</strong> This edition captures a month defined by regulatory wins across the spectrum, alongside a wave of capital flowing into both clinical and consumer neurotech. Zeto secured its third FDA clearance for a simplified outpatient EEG system, Cala Health received FDA clearance for its next-generation TAPS wearable for essential tremor and Parkinson&#8217;s disease, and Neuropacs became the first AI-based MRI software to receive FDA De Novo classification as a Parkinsonian syndrome diagnostic aid.</p><p>On the BCI front, CorTec received FDA Breakthrough Device Designation for its Brain Interchange system in stroke motor rehabilitation &#8212; the first BCI worldwide designated for this indication. Meanwhile, funding continued across scale and stage: Newfund closed a dedicated &#8364;60M European braintech fund, Mave Health raised $2.1M to launch a tDCS consumer wearable, and BrainsWay completed a $6M milestone-based investment in Neurolief following FDA approval of the Proliv&#8482;Rx home neuromodulation system.</p><p>This issue&#8217;s Case Study Spotlight features Axoft, a Cambridge-based company building the next generation of ultra-soft, high-density implantable BCIs using bio-inspired materials &#8212; a quiet but potentially foundational bet on solving the interface longevity problem.</p><div><hr></div><h3><strong>&#9889;&#65039; Neurotech Newsflash</strong></h3><ul><li><p><strong>Zeto receives FDA 510(k) clearance for New Wave&#8482; outpatient EEG system (neural diagnostics):</strong> Zeto has secured its third FDA clearance for the New Wave&#8482;, a simplified EEG system designed for outpatient clinics and home settings. The system features 21 soft-tip, gel-free electrodes following the 10&#8211;20 standard, supports recordings up to 2.5 hours, and integrates synchronized video, ECG, EMG, and photic stimulation &#8212; all running on Zeto&#8217;s cloud platform for remote access. The clearance targets a persistent access gap: US patients routinely wait weeks for EEG appointments amid a shortage of trained neurophysiology technologists. (<a href="https://www.prnewswire.com/news-releases/zeto-announces-fda-510k-clearance-of-zeto-new-wave-advancing-efficiency-in-outpatient-eeg-302732590.html">Read more</a>)</p></li><li><p><strong>Cala Health receives FDA clearance for kIQ&#174; Plus next-generation TAPS wearable:</strong> Cala Health has received FDA clearance for the Cala kIQ&#174; Plus, the next generation of its wrist-worn TAPS (Transcutaneous Afferent Patterned Stimulation) system for action hand tremor in essential tremor and Parkinson's disease. kIQ Plus introduces new therapy modes and adaptive calibration that personalize stimulation based on each patient's tremor signature, building on the existing kIQ platform. Clinical data were presented at AAN 2026 in Chicago. (<a href="https://www.massdevice.com/cala-fda-nod-next-gen-wearable-neurostim/">Read more</a>)</p></li><li><p><strong>Neuropacs&#8482; receives FDA De Novo classification as first-in-class AI MRI diagnostic aid for Parkinsonian syndromes (neural diagnostics):</strong> Neuropacs Corp. has received FDA De Novo classification under a newly created device category &#8212; "Parkinsonian syndrome diagnostic aid" &#8212; making it the first such classification in the US. The tool works with standard 3T MRI systems from Siemens, GE Healthcare, and Philips, and requires no radiotracer. Its performance was validated in a multicenter study published in JAMA Neurology. (<a href="https://firstwordhealthtech.com/story/7173507">Read more</a>)</p></li><li><p><strong>CorTec receives FDA Breakthrough Device Designation for Brain Interchange&#8482; in stroke motor rehabilitation &#8212; first BCI worldwide for this indication:</strong> CorTec GmbH has been granted Breakthrough Device Designation for its Brain Interchange&#8482; fully implantable, bidirectional BCI system for chronic stroke motor rehabilitation. The designation, supporting an ongoing IDE study at the University of Washington, covers closed-loop cortical stimulation to support upper-limb motor recovery in stroke patients whose improvement has plateaued with conventional therapy. The first two patients, implanted at Harborview Medical Center in Seattle in July 2025 and February 2026, showed meaningful neurological improvement. (<a href="https://brain-interchange.com/wp-content/uploads/2026-04-08_PressRelease_CorTec.pdf">Read more</a>)</p></li><li><p><strong>Leclercq American Capital invests in Indivi.io, Swiss digital biomarker specialist for neurology:</strong> US-based Leclercq American Capital LLC has made a strategic investment in Indivi.io, a Basel-headquartered TechBio company building functional digital biomarkers for neuroscience drug development. Indivi&#8217;s platform combines electrophysiological and sensor-derived behavioral measures to generate earlier proof-of-concept signals in trials targeting Alzheimer&#8217;s disease, Parkinson&#8217;s disease, multiple sclerosis, and neuromuscular disorders. The company holds ISO 13485 and ISO 27001 certification and is deploying its tools in a 2026 proof-of-concept trial for Alzheimer&#8217;s biomarker discovery. (<a href="https://eurozone.einnews.com/pr_news/895073580/leclercq-american-capital-llc-invests-in-indivi-io-a-swiss-specialist-in-digital-biomarkers-for-neurology">Read more</a>)</p><div><hr></div></li></ul><h3><strong>&#128176; Notable Funding</strong></h3><ul><li><p><strong>Newfund closes &#8364;60M Heka fund dedicated exclusively to European braintech:</strong> Paris-based early-stage VC Newfund has closed Heka, a &#8364;60M fund investing exclusively in brain technologies &#8212; one of the only such dedicated vehicles in Europe. The fund will back up to 25 European founders across neurology and psychiatry, writing seed cheques of $1M&#8211;3M. Nine companies have already been backed, including Finnish digital therapeutics startup Soihtu Dtx and French AI diagnostics company Diagnoly. A US commercialization pathway is a condition of investment. (<a href="https://sifted.eu/articles/newfund-60m-brain-technologies">Read more</a>)</p></li><li><p><strong>BrainsWay completes $6M milestone-based investment in Neurolief following FDA PMA approval of Proliv&#8482;Rx for MDD:</strong> BrainsWay has disbursed a second $6M convertible loan tranche to Neurolief, triggered by FDA Premarket approval of Neurolief&#8217;s Proliv&#8482;Rx brain neuromodulation system &#8212; making it the first and only FDA-approved at-home neuromodulation device for treatment-resistant major depressive disorder. Proliv&#8482;Rx is prescribed by a physician and self-administered by the patient at home, positioning it as a scalable complement to BrainsWay&#8217;s clinic-based Deep TMS platform.(<a href="https://www.globenewswire.com/news-release/2026/03/26/3262880/17676/en/BrainsWay-Completes-Additional-6-Million-Milestone-Based-Investment-in-Neurolief-Ltd-Following-FDA-Approval-of-Proliv-Rx-System-for-MDD.html">Read more</a>)</p></li><li><p><strong>Mave Health raises $2.1M seed to launch tDCS consumer wearable for focus and stress regulation:</strong> Mave Health has raised $2.1M led by Blume Ventures, with participation from Stanford Angels and Tesla Autopilot AI lead Dhaval Shroff, to launch its tDCS headset targeting prefrontal cortex stimulation for focus, mood, and stress regulation. A beta program with 500+ users showed self-reported improvements in productivity and stress within two months. (<a href="https://www.businesswire.com/news/home/20260318987784/en/Mave-Health-Raises-%242.1M-to-Launch-Focus-and-Stress-Regulation-Wearable">Read more</a>)</p></li><li><p><strong>Audicin raises $1.9M to embed real-time autonomic nervous system regulation in wearables:</strong> Audicin has raised $1.9M to develop its nervous system regulation technology as an embedded SDK layer for consumer wearables and partner apps, enabling real-time biofeedback-driven autonomic nervous system modulation without requiring standalone hardware. The round positions Audicin as an infrastructure play &#8212; a nervous system API for the wearable ecosystem. (<a href="https://news.cision.com/san-francisco-oy/r/audicin-lands--1-9m-to-make-real-time-nervous-system-regulation-a-built-in-layer-for-wearables-and-p,c4329976">Read more</a>)</p></li><li><p><strong>CrossSense wins &#163;1M Longitude Prize on Dementia for AI smart glasses companion:</strong> CrossSense, a London-based social enterprise, has been awarded the &#163;1 million Longitude Prize on Dementia  funded by Alzheimer&#8217;s Society and Innovate UK  for its AI-powered assistant for smart glasses designed to support people living with early-stage dementia in daily activities.In testing, participants correctly identified 82% of household items while wearing the glasses, up from 46% without. Prize funds will support a four-week pilot program in participants&#8217; homes in late 2026. (<a href="https://www.theguardian.com/society/2026/mar/18/ai-smart-glasses-1m-prize-technology-dementia">Read more</a>)</p><div><hr></div></li></ul><h3><strong>&#129504; Neurotech Trends</strong></h3><ul><li><p><strong>Women's brain health emerges as a $1 trillion investment gap in neurotech:</strong> New analysis highlighted in TIME and Nature Mental Health makes the economic case for redirecting neurotech investment toward women&#8217;s neurological conditions &#8212; particularly Alzheimer&#8217;s, depression, anxiety, and the cognitive effects of menopause. Nearly two-thirds of Americans with Alzheimer&#8217;s are women, and closing the women&#8217;s brain health gap could add $1 trillion annually to global GDP. With only 6% of private healthcare investment currently focused on women &#8212; most of it in reproductive health &#8212; the neurological conditions disproportionately affecting women remain chronically underfunded. This framing is beginning to shape capital allocation conversations across neurotech and pharma. (<a href="https://time.com/article/2026/04/09/womens-brains-are-a-1-trillion-opportunity/">Read more</a>)</p></li><li><p><strong>Neural data privacy enters the regulatory mainstream:</strong> Consumer neurotechnology is triggering the first wave of dedicated neural data legislation. Colorado and California enacted the first US state laws governing neural data in 2024, and at least six additional states are now moving in the same direction.A landmark Chilean Supreme Court ruling in 2023, involving a consumer EEG headset and data retained without meaningful consent, has become the template case cited across regulatory discussions globally. Neurotech companies scaling consumer devices will increasingly need to treat neural data governance as a product requirement. (<a href="https://theconversation.com/your-brain-for-sale-the-new-frontier-of-neural-data-279771">Read more</a>)</p></li><li><p><strong>DARPA bets on living neural tissue as the next computing architecture:</strong> The Pentagon&#8217;s Defense Advanced Research Projects Agency has opened its O-Circuit program inviting teams to develop biological processing units (BPUs) built from living neural tissue for autonomous systems applications including drone navigation. The program cites the energy efficiency of biological neural computation (DARPA uses the fruit fly brain as a benchmark: 140,000 neurons, 6 mWh/day) versus silicon alternatives. Phase one work is expected to begin November 2026, with proposals from academic, nontraditional, and defense contractors invited. (<a href="https://defence-blog.com/pentagon-launches-living-neural-computer-for-drone-navigation/">Read more</a>)</p><div><hr></div></li></ul><h3><strong>&#128216; Neurotech Research Articles</strong></h3><ul><li><p><strong>International mega-analysis identifies shared brain signature across five psychedelics:</strong> A Nature Medicine study from an international consortium led by McGill University pooled 11 independent fMRI datasets covering 267 participants and over 500 brain-scanning sessions. The analysis identified a consistent pattern: increased functional connectivity between higher-order cognitive networks (default, frontoparietal, limbic) and sensory systems (visual, somatomotor), along with altered subcortical coupling. The findings provide the most comprehensive map of psychedelic brain effects to date eastablishing a shared neural signature that could anchor biomarker development for psychedelic-assisted therapies. (<a href="https://www.nature.com/articles/s41591-026-04287-9">Read more</a>)</p></li><li><p><strong>Single-neuron targeting approach shows promise for stroke and paralysis recovery:</strong> New NPR-covered research highlights emerging neuron-level intervention strategies that move beyond region-level stimulation, targeting specific neurons involved in motor planning and recovery. The work contributes to a growing body of evidence that precision neuromodulation at the cellular level may unlock recovery pathways unavailable to current broad-field stimulation approaches, with implications for both stroke and paralysis rehabilitation. (<a href="https://www.npr.org/2026/04/15/nx-s1-5744990/brain-motion-stroke-paralysis">Read more</a>)</p><p><strong>New study maps the neural basis of mental imagery formation:</strong> Research covered by NPR identifies the specific brain mechanisms through which visual mental images are constructed internally, revealing that the brain uses a hierarchical process similar to visual perception, but driven top-down from higher-order areas rather than bottom-up from sensory input. The findings have implications for understanding both healthy imagination and conditions where mental imagery is disrupted, including PTSD and psychosis. (<a href="https://www.npr.org/2026/04/09/nx-s1-5776510/a-new-study-helps-explain-how-the-brain-creates-mental-images">Read more</a>)</p><div><hr></div></li></ul><h3>&#127760; Neurotech Education and Events</h3><ol><li><p><strong>Human+Tech Week 2026</strong> <br>&#128197; Date: May 11&#8211;15, 2026 | &#128205; San Francisco, CA, USA <br><strong>Why attend the event?</strong> Human+Tech Week brings together 5,000+ founders, researchers, investors, and policymakers around a single thesis: AI and technology should serve human flourishing. Anchored at The Hibernia in SF with 100+ partner-hosted events citywide, it spans health, work, and cities as interdependent systems. For neurotech founders building at the intersection of brain health and consumer AI, or seeking Series A+ capital and enterprise pilot partnerships, this is one of the most concentrated cross-sector gatherings of the spring. </p><p><strong>Link to register:</strong> <a href="https://www.humantechweek.com/">Register here</a></p></li><li><p><strong> 4th International Conference on Neurology and Mental Disorders</strong></p><p> &#128197; Date: May 14&#8211;15, 2026 | &#128205; Kuala Lumpur, Malaysia</p><p><strong>Why attend the event?</strong>Organized by Scientex Conferences, this two-day event convenes clinicians, researchers, and industry professionals working across neurology, psychiatry, and mental health. For neurotech companies building in Southeast Asia or seeking international clinical validation partnerships, it offers a focused forum for presenting research and building academic bridges in an underpenetrated but fast-growing regional market. </p><p><strong>Link to register</strong>: <a href="https://www.neurology.scientexconference.com/">Register here</a></p><div><hr></div></li></ol><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Axoft &#8212; Ultra-Soft Implantable BCIs Built to Match the Brain</strong></p><p>In this edition&#8217;s case study spotlight, we feature Axoft, a Cambridge, Massachusetts-based neurotechnology company developing a new class of implantable brain-computer interfaces (iBCIs) built from bio-inspired materials that mechanically mimic brain tissue. Founded in 2021 and spun out of research at Harvard University, Axoft is working on what it considers the fundamental unsolved problem in iBCIs: not decoding, but the interface itself.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!Fm-y!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!Fm-y!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 424w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 848w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 1272w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!Fm-y!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic" width="1456" height="479" 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srcset="https://substackcdn.com/image/fetch/$s_!Fm-y!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 424w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 848w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 1272w, https://substackcdn.com/image/fetch/$s_!Fm-y!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fce909f92-c385-41d6-8b21-1f53513d07fd_3452x1136.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p>Axoft is tackling a core limitation in implantable BCIs: material mismatch with brain tissue that leads to scarring and signal degradation. Its ultra-soft polymer, Fleuron&#8482;, is orders of magnitude softer than conventional materials, allowing implants to move with the brain and maintain stable, high-quality recordings over time. Early human studies have shown promising results, including high-density single-neuron recordings, broad tissue coverage, and minimal signal drift, positioning the platform as a strong step toward more durable and scalable neural interfaces.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Motor Restoration in Paralysis:</strong> Axoft&#8217;s high-density, stable interface enables precise tracking of individual motor neurons over time, which is necessary for reliable long-term prosthetic control in patients with ALS or spinal cord injury.</p></li><li><p><strong>Neuromodulation for Movement Disorders:</strong> Bidirectional closed-loop stimulation based on Fleuron-enabled, high-fidelity neural recordings could enable more responsive, adaptive DBS-type therapies for Parkinson&#8217;s disease and dystonia.</p></li><li><p><strong>Neuropsychiatry Applications:</strong> The company is actively exploring applications beyond motor function, including closed-loop therapies for treatment-resistant depression &#8212; using high-resolution neural recording to guide stimulation rather than relying on fixed parameters.</p></li><li><p><strong>Neurosurgical Intraoperative Mapping:</strong> Fleuron probes can be deployed and explanted within a standard neurosurgical workflow, opening near-term use in functional brain mapping during tumor resection procedures.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Neurosurgeons and functional neurosurgery programs</p></li><li><p>Academic medical centers running iBCI clinical research programs</p></li><li><p>Neuromodulation researchers requiring high-density, long-term stable neural interfaces</p></li><li><p>Pharma and biotech companies developing closed-loop CNS therapies requiring precise biomarker-grade neural recording</p></li></ul><p><strong>Key Partnerships:</strong></p><p>Axoft&#8217;s FINESSE clinical study has been conducted at The Panama Clinic (first-in-human), the Montreal Neurological Institute at McGill University, and Mass General Brigham. Academic collaborators include Charles P. Couturier, MD, PhD, neurosurgeon and assistant professor at McGill, who has described Fleuron as the first implant material that visibly matches the brain&#8217;s softness and movement in electrophysiological recordings.Additionally,  Research publications have appeared in Nature Nanotechnology and Nature Neuroscience.</p><p><strong>Leadership Team:</strong></p><p>Paul Le Floch (CEO and Co-founder) completed his PhD in Mechanical Engineering and Material Sciences at Harvard, where he was the first graduate student of Professor Jia Liu, whose work on ultra-flexible nanoelectronics laid the foundation for Fleuron. Le Floch received the Forbes 30 Under 30 distinction for Science in 2021. Co-founder Tianyang Ye, also a Harvard doctorate, specializes in bioelectronics and leads sensor design. The company was backed at seed by The Engine, the venture firm spun out of MIT, alongside Boost VC and Alumni Ventures, and has raised over $18M to date including an oversubscribed $10.1M pre-Series A round.</p><p>For more information, visit <a href="https://axoft.us/">axoft.us</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><p>&#10084;&#65039; Join us on <a href="https://discord.com/invite/VAvUjKd7nS">Discord</a>.</p><p>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</p><div><hr></div><div><hr></div>]]></content:encoded></item><item><title><![CDATA[Clinical Progress, Capital Flow, and Clarity: Neurotech Enters the Commercial Era – Issue #36]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #36! This edition reflects neurotechnology&#8217;s continued shift into real-world deployment across clinical and commercial settings.]]></description><link>https://neurotechpulse.substack.com/p/clinical-progress-capital-flow-and</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/clinical-progress-capital-flow-and</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Tue, 31 Mar 2026 06:02:11 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!7jvh!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #36!</strong> This edition reflects neurotechnology&#8217;s continued shift into real-world deployment across clinical and commercial settings. China&#8217;s NMPA has granted what is being recognized as the world&#8217;s first commercial approval for an invasive BCI, issued to Neuracle Technology for a motor-cortex implant restoring hand grasp in spinal cord injury patients.</p><p>On the clinical front, Soterix Medical received FDA 510(k) clearance for its SPRY TMS system for major depressive disorder, while ReVision Implant secured Breakthrough Device Designation for a visual cortex prosthesis aimed at restoring vision in patients beyond the reach of retinal implants.</p><p>Funding activity remains strong across modalities. Science Corp raised $230M to advance its PRIMA retinal implant, Cognito Therapeutics secured $105M for Alzheimer&#8217;s neuromodulation, and Gestala closed China&#8217;s largest early-stage BCI round to develop focused ultrasound interfaces. At the same time, new work in Nature Communications shows how the motor cortex encodes handwriting across multiple dimensions, improving brain-to-text decoding performance.</p><p>This issue&#8217;s Case Study Spotlight features Ceribell, a company building point-of-care EEG systems for rapid seizure detection, now deployed across hundreds of hospitals. </p><div><hr></div><h3>&#9889;&#65039; Neurotech Newsflash</h3><ul><li><p><strong>Neuracle Technology receives China&#8217;s NMPA commercial approval for invasive BCI targeting SCI hand function (world first):</strong> China&#8217;s National Medical Products Administration has granted Neuracle Technology (Shanghai) the first commercial approval for an invasive brain-computer interface anywhere in the world. The approved system targets adults aged 18&#8211;60 with spinal cord injury of at least one year&#8217;s duration, using implanted cortical sensors and a robotic glove controlled by decoded brain signals to restore hand grasp. Clinical data supporting the approval show measurable improvements in grip performance. (<a href="https://www.medicaldevice-network.com/news/neuracle-nmpa-clearance-bci-device/">Read more</a>)</p></li><li><p><strong>Soterix Medical receives FDA 510(k) clearance for SPRY TMS therapy (major depression):</strong> Soterix Medical has secured FDA clearance for its SPRY Transcranial Magnetic Stimulation system for major depressive disorder in adults unresponsive to antidepressant medication. SPRY integrates rapid liquid cooling and a touchscreen programmer in a portable form factor, deployed through a psychiatrist partnership program. (<a href="https://www.prnewswire.com/news-releases/soterix-medical-announces-clearance-of-spry-transcranial-magnetic-stimulation-tms-therapy-for-the-treatment-of-major-depression-302704534.html">Read more</a>)</p></li><li><p><strong>ReVision Implant receives FDA Breakthrough Device Designation for visual cortex prosthesis (vision restoration):</strong> ReVision Implant has been granted Breakthrough Device Designation for its cortical visual prosthesis, which stimulates the visual cortex directly in patients with blindness from peripheral visual pathway damage, a population outside the reach of retinal prostheses. The designation opens accelerated FDA review as ReVision progresses toward a first-in-human study. (<a href="https://med-techinsights.com/2026/03/09/fda-grants-breakthrough-device-designation-to-revision-implant-visual-cortex-prosthesis/">Read more</a>)</p></li><li><p><strong>Firefly Neuroscience's Evoke platform identifies EEG biomarkers for ADHD subtype differentiation (neural diagnostics):</strong> Firefly Neuroscience announced that its FDA-cleared Evoke EEG/ERP system identified brain wave biomarkers capable of differentiating the three main ADHD subtypes, using NVIDIA GPU-accelerated AI trained on 191,000+ brain scans. These biomarkers may help clinicians select treatment, calibrate dosage, and track neurological response objectively. (<a href="https://www.globenewswire.com/news-release/2026/03/13/3255413/0/en/Firefly-Announces-Discovery-of-New-Brain-Wave-Biomarkers-For-Differential-Diagnosis-of-ADHD.html">Read more</a>)</p></li><li><p><strong>Natus launches autoSCORE AI EEG analysis tool globally (neural diagnostics):</strong> Natus has launched autoSCORE, an AI-powered EEG platform that classifies EEG patterns and flags abnormalities without requiring a specialist for each trace, targeting neurology departments and ICUs managing reporting backlogs or limited neurophysiology staffing. (<a href="https://www.prnewswire.com/news-releases/natus-expands-availability-to-expert-level-review-of-eeg-with-global-launch-of-autoscore-ai-analysis-tool-302705422.html">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128176; Notable Funding</strong></h3><ul><li><p><strong>Science Corp raises $230M Series C to commercialize PRIMA retinal implant:</strong> At a $1.5B post-money valuation, the round follows Science Corp&#8217;s EU CE mark application for PRIMA, a photovoltaic sub-retinal implant paired with camera glasses that improved visual acuity in 80% of 47 trial participants. Funds target CE mark clearance, Germany market entry, and FDA regulatory work. (<a href="https://techcrunch.com/2026/03/05/science-corp-closes-230m-round-as-it-pushes-to-get-its-brain-implant-to-patients/">Read more</a>)</p></li><li><p><strong>Cognito Therapeutics raises $105M Series C to advance Spectris toward Alzheimer&#8217;s FDA submission:</strong> Led by Morningside Ventures, IAG Capital Partners, and Starbloom Capital, proceeds support topline data readout from the fully enrolled HOPE pivotal study, FDA submission, and commercial infrastructure for a 2027 US launch. (<a href="https://www.businesswire.com/news/home/20260305121811/en/Cognito-Therapeutics-Announces-Oversubscribed-$105-Million-Series-C-Financing-to-Advance-Spectris-in-Alzheimers-Disease">Read more</a>)</p></li><li><p><strong>Gestala raises $21.6M in China&#8217;s largest BCI early-stage round to develop focused ultrasound neural interfaces:</strong> Co-led by Guosheng Capital and Dalton Venture with participation from Gobi Ventures, the oversubscribed round funds team growth from 15 to 35, a manufacturing facility, and a first-generation focused ultrasound BCI prototype. (<a href="https://techcrunch.com/2026/03/11/bci-startup-gestala-raises-21-million-for-non-invasive-ultrasound-brain-tech/">Read more</a>)</p></li><li><p><strong>ANEUVO raises $22M Series C to advance ExaStim neuromodulation toward US regulatory filing:</strong> Led by Catcher Technology, the round funds manufacturing scale-up and US IDE activities for ExaStim, a portable non-invasive 16-channel multi-electrode array for spinal cord stimulation in SCI rehabilitation, CE marked and commercially active in Europe. (<a href="https://www.finsmes.com/2026/03/aneuvo-raises-22m-in-series-c-funding.html">Read more</a>)</p></li><li><p><strong>Egra raises $5.5M to build EEG foundation models for neural biomarker discovery:</strong> Egra is training large-scale machine learning architectures on population-level EEG data to create general-purpose brain signal representations, reducing dependence on disease-specific hand-labeled datasets that currently limit diagnostic AI in neurology. (<a href="https://neurotechnology.substack.com/p/notables-50">Read more</a>)</p><div><hr></div></li></ul><h3><strong>&#129504; Neurotech Trends</strong></h3><ul><li><p><strong>BCI funding crosses $400M in a two-week window:<br></strong>Neurotech saw over $400M in funding across retinal implants, Alzheimer&#8217;s therapy, ultrasound BCIs, and neural diagnostics within a short period. This concentration signals a shift toward institutional-scale investment and clearer commercialization pathways. (<a href="https://www.statnews.com/2026/03/05/science-corp-raises-230-million-retinal-implant-fda-decision/">Read more</a>)</p></li><li><p><strong>China&#8217;s BCI ecosystem accelerates with regulatory and capital milestones:<br></strong> The combination of record funding and the first commercial BCI approval positions China as a parallel regulatory and innovation hub, rather than a follower to Western markets. (<a href="https://techcrunch.com/2026/02/22/chinas-brain-computer-interface-industry-is-racing-ahead/">Read more</a>)</p></li><li><p><strong>EEG foundation models emerge as a new category:<br></strong> Companies like Egra and Firefly Neuroscience are building general-purpose models trained on large EEG datasets. This approach may reduce dependence on labeled datasets and enable scalable biomarker discovery. (<a href="https://www.globenewswire.com/news-release/2026/03/04/3249268/0/en/Firefly-Progresses-Toward-Development-and-Commercial-Launch-of-its-Foundation-Model-of-the-Human-Brain-Powered-by-NVIDIA-GPU-Acceleration.html">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128216; Neurotech Articles</strong></h3><ul><li><p><strong>Motor cortex encodes handwriting across multiple dimensions:<br></strong> A Nature Communications study shows that handwriting is represented in the brain through multiple parallel features, including shape, timing, and velocity. Decoders that capture all dimensions outperform simpler models, improving brain-to-text accuracy.(<a href="https://www.nature.com/articles/s41467-026-70536-7">Read more</a>)</p></li><li><p><strong>BCIs remain functional during sleep in ALS patients:<br></strong> Research shows that intracortical BCIs maintain signal quality across sleep stages, including REM, enabling the possibility of continuous communication systems for late-stage ALS patients.(<a href="https://www.nature.com/articles/s41598-026-44228-7">Read more</a>)</p></li><li><p><strong>Electrode-tissue interface identified as key bottleneck in long-term BCI performance:<br></strong> A review highlights biological interface stability, rather than decoding algorithms, as the primary limitation in chronic BCI systems. Proposed solutions include flexible materials and adaptive signal processing approaches. (<a href="https://www.sciencedirect.com/science/article/pii/S1571064525001265%202.%20https://pubmed.ncbi.nlm.nih.gov/41760219/">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>Bioelectronic Medicine Forum 2026</strong> </p><p>&#128197; Date: April 14, 2026 | &#128205; New York City, NY, USA<br><strong>Why Attend the Event?</strong> This forum covers vagus nerve stimulation, spinal cord and peripheral nerve interfaces, and closed-loop neural recording for drug-free therapy, drawing bioelectronic medicine researchers, neuromodulation developers, and clinical investigators. For BCI companies mapping the bench-to-prescription pathway, it is one of the most concentrated annual gatherings.<br><strong>Link to register:</strong><a href="https://www.cirtecmed.com/events/2026-bioelectronic-medicine-forum"> Register here</a></p></li></ol><ol start="2"><li><p><strong>Neuroethics 2026: Building Bridges and Cultivating Community</strong> </p><p>&#128197; Date: April 15&#8211;17, 2026 | &#128205; Stanford, CA, USA<br><strong>Why Attend the Event?</strong> Hosted by the International Neuroethics Society, sessions cover cognitive liberty, neural data privacy, and the ethics of implantable BCIs, topics now commercially and regulatory material as devices near market. Neurotech founders, trialists, and policy-facing researchers will find the sessions directly applicable to consent frameworks, device design, and regulatory strategy.<br><strong>Link to register:</strong><a href="https://neuroethicssociety.org/meeting/neuroethics-2026/"> Register here</a></p></li></ol><ol start="3"><li><p><strong>Annual NeuroTech Convention of SBMT 2026</strong> </p><p>&#128197; Date: April 16&#8211;19, 2026 | &#128205; Los Angeles, CA, USA<br><strong>Why Attend the Event?</strong> The SBMT&#8217;s annual convention spans cortical interface design, spinal and deep brain stimulation, and BCI clinical trial methodology, drawing neuroscientists, neurosurgeons, engineers, and industry figures. Structured mentorship sessions and a career fair make it productive for early-career researchers and those entering the commercial neurotech sector.<br><strong>Link to register:</strong><a href="https://www.worldbrainmapping.org/sbmt-2026/"> Register here</a></p><div><hr></div></li></ol><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Ceribell &#8211; AI-Powered Point-of-Care EEG for Seizure Detection</strong></p><p>In this edition&#8217;s case study spotlight, we feature Ceribell, a medical technology company building rapid-deployment EEG systems for seizure detection in acute care settings. Founded in 2014, Ceribell&#8217;s system combines a portable EEG headband with an AI algorithm that continuously analyzes brain activity at the bedside.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!7jvh!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!7jvh!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 424w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 848w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 1272w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!7jvh!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png" width="1000" height="504" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/be72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:504,&quot;width&quot;:1000,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:null,&quot;alt&quot;:&quot;Inspira Health Introduces New Ceribell Rapid Response EEG Device | Inspira  Health&quot;,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="Inspira Health Introduces New Ceribell Rapid Response EEG Device | Inspira  Health" title="Inspira Health Introduces New Ceribell Rapid Response EEG Device | Inspira  Health" srcset="https://substackcdn.com/image/fetch/$s_!7jvh!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 424w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 848w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 1272w, https://substackcdn.com/image/fetch/$s_!7jvh!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fbe72df1e-9f71-4b43-b330-2b858cfa2b14_1000x504.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p>Ceribell replaces traditional EEG workflows that require specialists and long setup times with a system that can be applied by nurses in minutes. Its CLARITY algorithm analyzes EEG data continuously, estimating seizure burden and displaying results in real time. The system is trained on over 800,000 hours of EEG data and has received FDA clearance across adult, pediatric, and neonatal populations.</p><p>Clinical studies show reduced ICU stay and faster diagnosis compared to conventional EEG workflows. The system is currently deployed in over 600 hospitals.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Non-Convulsive Seizure Detection in the ICU:</strong> CLARITY identifies electrographic seizures invisible to clinical observation, enabling treatment of silent seizure activity in critically ill patients without delay.</p></li><li><p><strong>Emergency Department Triage:</strong> Bedside EEG deployment identifies seizure etiology within the first hour of presentation, supporting faster disposition decisions without transferring the patient.</p></li><li><p><strong>Neonatal and Pediatric ICU Monitoring:</strong> Following FDA clearance in late 2025, CLARITY monitors premature infants from 25 weeks gestational age, a population where seizures are common and clinical signs are absent.</p></li><li><p><strong>Continuous 24/7 Monitoring:</strong> The wearable form factor enables uninterrupted EEG monitoring during ICU stays, removing dependence on episodic lab-based studies.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Neurocritical care teams and ICU physicians</p></li><li><p>Emergency department clinicians</p></li><li><p>Neonatologists and pediatric intensivists</p></li><li><p>Hospital systems managing limited neurology resources</p></li></ul><p><strong>Key Partnerships:</strong></p><p>Ceribell&#8217;s clinical validation has been conducted across major US academic medical centers, with outcomes reported in the SAFER-EEG and DECIDE trial datasets. The company&#8217;s FedRAMP High certification pathway targets approximately 160 VA hospitals as its next institutional expansion segment.</p><p><strong>Leadership Team:</strong></p><p>Jane Chao (Chief Executive Officer and Co-founder) founded Ceribell in 2014 after spending years in medtech and seeing firsthand how the standard EEG workflow failed critically ill patients. She has led the company from inception through three FDA clearances, a commercial rollout across 600+ hospitals, and a 2024 IPO that raised $207M. The board includes directors from Johnson &amp; Johnson Innovation and Questa Capital, with clinical advisors drawn from neurocritical care programs at Stanford and UCSF.</p><p>For more information about Ceribell and the CLARITY EEG system, visit<a href="https://ceribell.com/"> ceribell.com</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com </p></blockquote><div><hr></div><p>&#10084;&#65039; Join us on <a href="https://discord.com/invite/VAvUjKd7nS">Discord</a>.</p><p>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</p><div><hr></div><div><hr></div>]]></content:encoded></item><item><title><![CDATA[From Lab to Life: Clinical Milestones, Consumer Integration, and the Expanding Neurotech Stack – Issue #35 ]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #35! This edition reflects a broadening of neurotech across clinical, consumer, and research frontiers.]]></description><link>https://neurotechpulse.substack.com/p/from-lab-to-life-clinical-milestones</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/from-lab-to-life-clinical-milestones</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sat, 28 Feb 2026 06:00:39 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!n8V5!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #35!</strong> This edition reflects a broadening of neurotech across clinical, consumer, and research frontiers. A second successful human BCI implantation and FDA clearance for a wrist-worn tremor therapy mark continued translation from lab to bedside, while Cigna&#8217;s removal of prior authorization for TMS signals growing payer confidence in neuromodulation as mainstream mental healthcare.</p><p>On the consumer side, at-home deep sleep stimulation, AI-driven stress detection, and Apple&#8217;s entry into silent speech technology are pushing brain-adjacent sensing into everyday devices. Investment spans biological computing, brain-inspired AI, and wearable neuromodulation, and new research in focused ultrasound, nanolaser hardware, and network-level brain mapping continues to reshape how neural systems are measured and modulated.</p><p>This issue&#8217;s Case Study Spotlight features <strong>NextSense,</strong> a California-based company translating laboratory-grade EEG into consumer earbuds for sleep optimization and cognitive health monitoring.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>CorTec completes second human implantation of Brain Interchange&#8482; BCI in FDA-approved stroke trial:</strong> CorTec GmbH announced the second successful implantation of its Brain Interchange&#8482; system at Harborview Medical Center (UW Medicine) in Seattle, as part of an FDA-approved trial evaluating cortical stimulation for upper-limb motor recovery in stroke patients. The fully implantable, closed-loop platform enables bidirectional neural recording and stimulation. Early neurological gains in the first participant informed the decision to proceed. The trial operates under an FDA Investigational Device Exemption, with further enrollment planned. <a href="https://www.globenewswire.com/news-release/2026/02/10/3235251/0/en/CorTec-Announces-Successful-Second-Human-Implantation-of-Its-Brain-Computer-Interface-BCI-System.html">(Read More)</a></p></li><li><p><strong>Apple confirms ~$2B acquisition of Q.ai, advancing silent speech technology:</strong> Apple confirmed its acquisition of Q.ai, an Israeli AI startup, in a deal valued at close to $2 billion, its second-largest after Beats in 2014. Q.ai uses infrared imaging to detect facial skin micromovements and infer speech without audible input, with patents describing integration into headphones and glasses. Around 100 employees, including CEO Aviad Maizels (founder of PrimeSense, the basis for Face ID), will join Apple&#8217;s hardware technologies group. While not a neural interface, the deal reflects growing convergence between biosignal interpretation and ambient device interaction. <a href="https://www.theverge.com/news/870353/apple-q-ai-acquisition-silent-speech?">(Read More)</a></p></li><li><p><strong>Muse launches Deep Sleep Boost for at-home slow-wave sleep enhancement:</strong> Muse announced Deep Sleep Boost (DSB), a feature for its Muse S Athena headband that uses AI-driven neural signal models to detect slow-wave sleep and deliver phase-timed pink noise to strengthen deep sleep architecture. The approach builds on published research showing phase-locked acoustic stimulation can increase slow-wave activity by nearly 50%. In beta testing, users experienced roughly 76% more organized slow-wave activity. Available now at no additional cost to Muse S Athena owners. <a href="https://www.businesswire.com/news/home/20260209682904/en/Muse-Brings-Deep-Sleep-Stimulation-Home">(Read More)</a></p></li><li><p><strong>Cigna&#8217;s Evernorth removes prior authorization for TMS across 18 million covered lives:</strong> Evernorth Behavioral Health, a Cigna Group subsidiary, will eliminate prior authorization for TMS delivered by contracted, in-network providers effective March 6, 2026. The change covers Evernorth and Cigna Healthcare plans across 12 states, serving over 18 million lives, for major depressive disorder and obsessive-compulsive disorder. Eligibility and medical necessity requirements remain in place; out-of-network providers still require authorization. <a href="https://rise4.com/insights/cigna-removes-tms-prior-authorization-2026/">(Read More)</a></p></li><li><p><strong>Encora Therapeutics receives FDA 510(k) clearance for Encora X1&#8482; wrist-worn tremor device:</strong> Encora Therapeutics, an MIT spinout, received FDA 510(k) clearance for Encora X1&#8482;, a prescription wrist-worn neurostimulation device for adults with essential tremor. The smartwatch-sized device senses tremor rhythm and delivers personalized stimulation to disrupt tremor signals at the wrist. Clearance was supported by a randomized, sham-controlled trial and a 90-day home-use study showing improvements in tremor severity and daily tasks. Encora received FDA Breakthrough Device Designation in 2021. <a href="https://www.businesswire.com/news/home/20260212105349/en/Encora-Therapeutics-Receives-FDA-510k-Clearance-for-Encora-X1-a-Breakthrough-Wearable-Device-for-Essential-Tremor">(Read More)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>The Biological Computing Company raises $25M seed to launch neuron-based computing platform:</strong> TBC raised $25 million in seed funding led by Primary Venture Partners to launch what it describes as the first commercial biological computing platform. Founded by neurosurgeon-scientists Alex Ksendzovsky and Jon Pomeraniec, TBC connects living neural networks with AI infrastructure to improve model performance while reducing compute cost. Unlike neuromorphic chip design, the platform harnesses living neurons directly. TBC claims five-times faster processing than silicon alone and has opened a flagship lab in San Francisco's Mission Bay. <a href="https://www.primary.vc/articles/the-biological-computing-company-raises-25m-seed">(Read More)</a></p></li><li><p><strong>Neupulse secures &#163;3M to advance wearable neuromodulation for Tourette syndrome:</strong> UK-based Neupulse raised &#163;3 million, led by Eos Advisory and the Midlands Engine Investment Fund II, to accelerate its non-invasive neuromodulation wristband for Tourette syndrome. Funding supports product refinement, regulatory approvals, and potential expansion into broader neurological indications. <a href="https://neupulse.co/blogs/news/neupulse-raises-3-million-to-accelerate-delivery-of-its-neurotherapeutic-technology?utm_source=chatgpt.com">(Read More)</a></p></li><li><p><strong>Stanhope AI raises &#163;6M for brain-inspired autonomous systems:</strong> Stanhope AI raised &#163;6 million ($8 million) to develop its brain-inspired &#8220;Real World Model,&#8221; an AI framework that processes real-time environmental input and adapts decisions under uncertainty. Currently tested in autonomous drone piloting and robotics, the round was led by Frontline Ventures with participation from Paladin Capital Group and others. <a href="https://www.uktech.news/ai/human-brain-based-ai-startup-raises-6m-20260212">(Read More)</a></p></li><li><p><strong>Vivatronx receives early-stage funding for spinal stimulation device in India:</strong> Vivatronx secured &#8377;1 crore (approximately $120K) following national recognition for its spinal stimulation device targeting motor rehabilitation in paralysis patients. While modest in scale, the milestone reflects growing activity in India&#8217;s neurotech landscape. <a href="https://www.deccanherald.com/india/karnataka/bengaluru/innovative-device-for-paralysis-patients-wins-big-on-reality-show-3879445">(Read More)</a></p></li></ul><div><hr></div><h3>&#129504; Neurotech Trends</h3><ul><li><p><strong>Brainomix launches stroke AI platform with regulatory-cleared net water uptake analysis:</strong> Brainomix launched its Brainomix 360 Stroke Next Generation platform at ISC 2026 in New Orleans, featuring a regulatory-cleared, automated net water uptake (NWU) capability using routine non-contrast CT scans. NWU provides a quantitative measure of edema severity within ischemic tissue, complementing existing ischaemic core volume and e-ASPECTS features. The platform received the Red Dot Design Award for usability and supports faster decision-making for thrombolysis, thrombectomy, and transfer scenarios. Brainomix is an Oxford University spinout operating in more than 20 countries.  <a href="https://neuronewsinternational.com/brainomix-to-launch-next-generation-stroke-platform-equipped-with-net-water-uptake-technology/?">(Read More)</a></p></li><li><p><strong>Israel advances eye- and mind-controlled systems for defense and healthcare:</strong> Alona Barnea, heading a newly revealed neurotechnology department at MAFAT (Israel's Defense Ministry R&amp;D unit), is developing BCI systems for drone control via eye tracking, neural command interfaces, and AI-generated digital twins. The technology combines neural monitoring, eye tracking, and facial muscle sensors for real-time human-machine interaction. While defense-oriented, the BCI and cognitive monitoring capabilities carry clinical and assistive implications. <a href="https://www.ynetnews.com/magazine/article/skgser7wwg">(Read More)</a></p></li><li><p><strong>Sensor-driven bionic footwear enters human augmentation space:</strong> Nike unveiled Project Amplify, a battery-powered footwear system developed with robotics partner Dephy, combining carbon-fiber sneakers with titanium leg shells housing motors, sensors, and adaptive algorithms. Controlled via mobile app, the system personalizes walking and running assistance. Consumer launch is targeted for 2028. While not a neural technology, Project Amplify reflects the broader convergence of biomechanics, wearable computing, and sensor-driven augmentation adjacent to neurorehabilitation. (<a href="https://www.npr.org/2026/02/10/nx-s1-5698195/nike-amplify-bionic-sneakers">Read More)</a></p></li></ul><div><hr></div><h3>&#128216; Neurotech Articles</h3><ul><li><p><strong>Brain network mapping links Parkinson&#8217;s symptoms to somato-cognitive action network:</strong> Researchers proposed a network-level reframing of Parkinson&#8217;s disease, linking motor and cognitive symptoms to hyperconnectivity between the somato-cognitive action network (SCAN) and subcortical regions rather than traditional motor pathways alone. Targeting SCAN nodes with clinical interventions improved both motor and cognitive outcomes, supporting personalized, network-based approaches to neuromodulation. .<a href="https://www.nature.com/articles/s41586-025-10059-1">(Read More)</a></p></li><li><p><strong>Spiking nanolasers replicate probabilistic neural computation at ultrafast speeds:</strong> Researchers at the University of Bern developed networks of spiking semiconductor nanolasers that mimic the brain&#8217;s probabilistic sampling of hidden environmental information. While biological neurons fire on millisecond timescales, nanolasers spike in picoseconds, enabling computations hundreds of millions of times faster. The work bridges neuroscience, photonics, and AI with implications for energy-efficient brain-inspired computing. <a href="https://ebrains.eu/news-and-events/2026/ultrafast-nanolasers-mimic-how-the-brain-imagines-unseen-parts-of-the-world">(Read More)</a></p></li><li><p><strong>Focused ultrasound modulates blood pressure in real time via spinal cord stimulation:</strong> Researchers at Johns Hopkins University showed that low-intensity focused ultrasound can modulate spinal cord circuits to raise or lower blood pressure without drugs or implants. Thoracic stimulation lowered pressure; lumbosacral stimulation raised it. The dual-directional control is relevant to spinal cord injury patients with autonomic dysfunction, and the team envisions future wearable devices for on-demand blood pressure management. <a href="https://www.bme.jhu.edu/news-events/news/sound-waves-offer-new-way-to-steer-blood-pressure-hopkins-study-finds/?">(Read More)</a></p></li></ul><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>Cognitive Neuroscience Annual Meeting 2026</strong></p><p>&#128197; Date: March 7&#8211;10, 2026 | &#128205; Vancouver, Canada</p><p><strong>Why Attend the Event?</strong> Covers advances in memory, perception, and decision-making, with sessions on digital cognitive assessments, wearable EEG, and real-time BCIs.</p><p><strong>Link to register:</strong> <a href="https://www.cogneurosociety.org/registration/">Register here</a></p></li><li><p><strong>Computational and Systems Neuroscience (COSYNE) 2026</strong></p><p>&#128197; Date: March 12&#8211;17, 2026 | &#128205; Lisbon &amp; Cascais, Portugal<br><strong>Why Attend the Event?</strong> Focuses on computational modeling of neural circuits and systems-level brain dynamics, highlighting AI, machine learning, and high-density neural recordings for next-generation BCIs.</p><p><strong>Link to register:</strong> <a href="https://www.cosyne.org/registration">Register here</a></p></li><li><p><strong>Neuro Tech Forum 2026</strong></p><p>&#128197; Date: March 26&#8211;27, 2026 | &#128205; Newport Beach, California, USA<br><strong>Why Attend the Event?</strong> Covers commercialization strategies, funding trends, regulatory pathways, and startup-to-market approaches for BCI devices and neuromodulation systems.</p><p><strong>Link to register</strong>: <a href="https://octaneoc.org/program/ntf-2026/">Register here</a></p></li><li><p><strong>Asilomar for the Brain &amp; Mind 2026</strong></p><p>&#128197; Date: March 29&#8211;April 1, 2026 | &#128205; Pacific Grove, California, USA<br><strong>Why Attend the Event?</strong> Brings together neuroscientists, neurotech entrepreneurs, and thought leaders for interdisciplinary collaboration across brain research, AI-driven neural modeling, and cognitive devices.</p><p>Link to register: <a href="https://www.asilomarbrainmind.org/">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: NextSense &#8211; EEG-Powered Earbuds for Sleep and Cognitive Health</strong></p><p>In this edition&#8217;s case study spotlight, we feature <strong>NextSense</strong>, a California-based neurotechnology company building consumer-grade EEG earbuds for sleep optimization and brain health monitoring. Founded in 2020 by Jonathan Berent, a former project lead at Alphabet&#8217;s X moonshot factory, NextSense has moved from prototype to commercial launch, backed by a $16 million oversubscribed Series A led by Ascension Ventures in November 2025.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!n8V5!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!n8V5!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 424w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 848w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 1272w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!n8V5!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic" width="1456" height="819" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:819,&quot;width&quot;:1456,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:45791,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/heic&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://neurotechpulse.substack.com/i/189349524?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!n8V5!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 424w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 848w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 1272w, https://substackcdn.com/image/fetch/$s_!n8V5!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1d686874-aaaa-4a9f-a018-9d5385a3ca25_1650x928.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong> </p><p>NextSense develops Smartbuds, wireless earbuds housing six clinical-grade EEG sensors that capture brain activity in real time. Rather than inferring sleep from motion or heart rate, Smartbuds detect neural signals to identify sleep stages and deliver precisely timed audio stimulation to strengthen slow-wave sleep. The system uses adaptive, closed-loop algorithms that learn individual neural patterns and adjust output accordingly.</p><p>In beta testing over 106 nights, Smartbuds increased slow-wave activity, with nearly 50% of participants reporting better sleep and improved morning recovery. The company has collected over 1,000 nights of real-world in-ear EEG data, one of the largest such datasets outside a controlled study. Medical applications are targeted for 2027 through planned university and pharmaceutical research partnerships.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Sleep Optimization:</strong> Real-time auditory cues synchronized to brain activity prolong and stabilize slow-wave sleep.</p></li><li><p><strong>Cognitive State Feedback:</strong> Relax and Focus modes adapt audio to detected brain states for self-regulation and attention.</p></li><li><p><strong>Longitudinal Brain Monitoring:</strong> Continuous in-ear EEG across multiple nights enables tracking of sleep architecture outside clinical settings.</p></li><li><p><strong>Research Applications:</strong> Wearable EEG data supports neuroscience and sleep research at scale in a natural-use form factor.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Healthcare providers monitoring sleep disorders, cognitive decline, or rehabilitation</p></li><li><p>Consumers seeking evidence-based sleep and cognitive wellness tools</p></li><li><p>Neuroscience researchers requiring real-world, high-fidelity EEG datasets</p></li><li><p>Wellness organizations integrating neurofeedback into mental health programs</p></li></ul><p><strong>Key Partnerships:</strong></p><p>NextSense has expanded clinical research collaborations with Stanford, Harvard, Mayo Clinic, and Emory University, contributing to validation studies and early-stage neuroscience research using its in-ear EEG platform. The company has also built visibility in elite sports performance, including a top-3 finish at NFLPA Pitch Day, forming partnerships with athletic organizations exploring brain-based recovery and cognitive monitoring. On the investor side, NextSense's $16 million Series A was led by Ascension Ventures (a healthcare-focused venture fund), with participation from Satori Neuro and Corundum Neuroscience Fund, aligning its capital base with partners active in neuroscience commercialization and clinical validation.</p><p><strong>Leadership Team:</strong></p><p>NextSense is led by Jonathan Berent (Founder &amp; CEO), whose background spans neuroscience, product development, and wearable technology from his time at Alphabet&#8217;s X. The board includes QuHarrison Terry (Mark Cuban Companies) and John Kuelper (Ascension Ventures), with scientific advisors including Gert Cauwenberghs of UC San Diego.</p><p>For more information about NextSense, visit <a href="https://nextsense.io/">nextsense.io</a> </p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><div><hr></div><p><em>&#10084;&#65039; Join us on <a href="https://discord.com/invite/VAvUjKd7nS">Discord</a>.</em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><div><hr></div><p></p><h1></h1>]]></content:encoded></item><item><title><![CDATA[Neurotech in Practice: Regulation, Scale, and Deployment – Issue #34]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #34! This edition captures neurotechnology&#8217;s shift from validation to execution.]]></description><link>https://neurotechpulse.substack.com/p/neurotech-in-practice-regulation</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/neurotech-in-practice-regulation</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sat, 31 Jan 2026 06:01:52 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!laEJ!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #34!</strong> This edition captures neurotechnology&#8217;s shift from validation to execution. Recent regulatory milestones, from FDA approval of at-home neuromodulation to early feasibility trials in inflammatory and metabolic disease dedicated BCI clinics and point-of-care deployments show neural interfaces moving into structured healthcare workflows.</p><p>Investment continues to scale across both foundational and applied layers of the stack, spanning BCI infrastructure, AI-driven acute diagnostics, and neuromodulation platforms designed for real-world use.</p><p>At the same time, advances in high-resolution sensing, material science, and consumer-grade brain interfaces indicate a shift where form factor, manufacturability, and deployment readiness are becoming as critical as signal quality.</p><p>This issue&#8217;s Case Study Spotlight features <strong>BrainCo</strong>, a rare example of a non-invasive BCI company that has scaled beyond prototypes. Operating across health, education, and rehabilitation, BrainCo illustrates how EEG based interfaces are evolving into deployable, everyday neurotechnology platforms that bridge consumer and clinical contexts.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Surf Therapeutics begins early feasibility trial for non-invasive neuromodulation in rheumatoid arthritis: </strong>Surf Therapeutics has launched an Early Feasibility Study to evaluate its non-invasive ultrasound neuromodulation platform for treating rheumatoid arthritis. The approach uses a patented broad-beam ultrasound system to stimulate nerves involved in the body&#8217;s natural anti-inflammatory pathways, aiming to reduce chronic inflammation without drugs, surgery, or implants. The study will enroll up to 40 patients across an open-label pilot and a randomized, sham-controlled phase, with findings expected to inform future pivotal trials and support a more scalable, patient-friendly alternative to existing rheumatoid arthritis treatments. <a href="https://www.businesswire.com/news/home/20260108857068/en/Surf-Therapeutics-Announces-Early-Feasibility-Study-EFS-To-Advance-Non-Invasive-Approach-to-Neuromodulation-for-Rheumatoid-Arthritis">(Read more)</a></p></li><li><p><strong>FDA-Cleared Layer 7 BCI advances  toward clinical scale through Precision Neuroscience &amp; Medtronic  Partnership: </strong>Precision Neuroscience and Medtronic have partnered to integrate Precision&#8217;s FDA-cleared Layer 7 cortical BCI with Medtronic&#8217;s neurosurgical navigation and stimulation systems. The integration allows surgeons to place the ultra-thin, temporary cortical electrode array during standard neurosurgical procedures to capture high-resolution cortical signals intraoperatively&#8212;supporting real-time brain mapping, functional monitoring, and safer surgical decision-making. This marks a concrete step toward embedding BCIs directly into routine neurosurgical workflows rather than standalone research setups. <a href="https://www.globenewswire.com/news-release/2026/01/12/3217312/0/en/Precision-Neuroscience-and-Medtronic-Partner-to-Integrate-Layer-7-Brain-Computer-Interface-with-Medtronic-Neurosurgical-Platform.html">(Read More)</a></p></li><li><p><strong>Empatica&#8217;s EmbraceMini receives FDA clearance for sleep monitoring:</strong></p><p>Empatica has received FDA clearance for EmbraceMini, its wrist-worn device for sleep monitoring using physiological signals such as movement and autonomic activity. The clearance enables broader clinical deployment and integration into regulated care workflows, strengthening the role of continuous, wearable biosignal monitoring in sleep medicine and long-term neurological health tracking.  <a href="https://www.empatica.com/blog/fda-clears-empatica-s-embracemini-for-sleep-monitoring/">(Read More)</a></p></li><li><p><strong>Neurolief secures FDA PMA approval for first physician-directed at-home neuromodulation therapy for depression: </strong>Neurolief has received FDA PMA approval for Proliv&#8482;Rx, the first prescription, physician-directed at-home brain neuromodulation therapy for treatment-resistant depression. Supported by the multicenter MOOD Study, the approval enables clinically validated neuromodulation to be delivered at home under physician oversight, offering a scalable alternative to clinic-based interventions, with a US launch expected in early 2026. <a href="https://www.prnewswire.com/news-releases/neurolief-receives-fda-pma-approval-for-first-at-home-brain-neuromodulation-therapy-for-adults-whose-depression-was-not-adequately-improved-by-antidepressants-302658098.html?trk=feed-detail_comments-list_comment-text">(Read More)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Merge Labs raises $252M to advance brain&#8211;computer interface development:</strong></p><p>Merge Labs has raised $252M in new funding to accelerate the development of its brain&#8211;computer interface technology. Backed by Open AI, Bain Capital, and others, the funding aims to  support continued research, talent expansion, and long-term efforts to scale BCI platforms aimed at pushing the boundaries of human&#8211;machine interaction. <a href="https://www.bloomberg.com/news/articles/2026-01-15/altman-s-merge-raises-252-million-to-link-brains-and-computers?">(Read More)</a></p></li><li><p><strong>BrainCo raises $286M to scale non-invasive BCI and expand into regulated global markets: </strong>BrainCo has raised over $286M, co-led by IDG Capital and Walden International to accelerate the next phase of its non-invasive brain&#8211;computer interface strategy, moving beyond early deployments toward large-scale manufacturing, parallel hardware development, and broader international expansion. The capital is expected to support scaling across rehabilitation, assistive devices, education, and mental health, while also addressing growing scrutiny around how cognitive data is collected and used. <a href="https://www.yicaiglobal.com/news/chinas-brainco-raises-usd2863-million-in-largest-bci-funding-outside-the-us">(Read More)</a></p></li><li><p><strong>Spiro Medical raises $67M Series A to develop neuromodulation therapy for asthma: </strong>Spiro Medical has secured $67M in Series A financing to advance development of its implantable neuromodulation system designed to treat asthma. The funding will support clinical development and regulatory progress of Spiro&#8217;s nerve-targeted therapy, which aims to modulate airway inflammation and bronchoconstriction without relying solely on chronic drug treatment. (<a href="https://www.prnewswire.com/news-releases/spiro-medical-secures-67-million-series-a-financing-to-develop-a-neuromodulation-system-for-asthma-302654610.html">Read More</a>)</p></li><li><p><strong>Omniscient Neurotechnology secures $20M to scale AI-driven brain mapping: </strong>Omniscient Neurotechnology has received a $20M investment from Australia&#8217;s National Reconstruction Fund to expand its AI-powered brain mapping platform worldwide. The funding supports global deployment of precision neurosurgical planning tools that map brain networks non-invasively, accelerating safer surgery and reinforcing the shift toward data-driven, personalized neurosurgery infrastructure. <a href="https://www.nrf.gov.au/news-and-media-releases/nrfc-invests-20-million-help-omniscient-neurotechnology-expand-its-revolutionary-brain-mapping-technology-around-world">(Read More</a>)</p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends</strong></h3><ul><li><p><strong>HyperX and Neurable explore brain-sensing headphones for cognitive gaming: </strong>HyperX and Neurable&#8217;s brain-sensing gaming headset made headlines again at the 2026 Consumer Electronics Show, marking a coming-of-age moment for consumer neurotech. By pairing Neurable&#8217;s brain-sensing and signal processing with HyperX&#8217;s gaming hardware, the headset points toward a future of immersive, adaptive gaming experiences that respond in real time to the player&#8217;s mental state&#8212;potentially reshaping how performance and engagement are defined in gaming. (<a href="https://in.ign.com/news/250200/hyperx-and-neurable-are-trying-to-make-your-brain-better-at-gaming">Read More</a>)</p></li><li><p><strong>BCI Engineering extends into organ preservation and transplant care: </strong>Science Corporation, founded by former Neuralink president Max Hodak, is applying brain&#8211;computer interface engineering to organ preservation. The company is developing compact, automated perfusion systems that use sensors and closed-loop control to keep organs viable outside the body for longer periods&#8212;potentially improving transplant logistics, reducing organ waste, and extending neurotech expertise beyond the brain into critical care infrastructure. (<a href="https://www.wired.com/story/a-brain-computer-interface-company-is-getting-into-organ-preservation/">Read More</a>)</p></li><li><p><strong>Materials science and high-resolution EEG push BCIs toward precision: </strong>Advances in materials science and sensing technologies, including graphene based electrodes and millimeter scale EEG, are improving spatial accuracy and reducing signal drift. These developments enable finer neural decoding and support BCI expansion beyond clinical use. As investment shifts toward consumer and performance applications and regulation becomes more defined, BCIs are evolving from niche therapeutic tools into scalable and ethically governed platforms for cognitive interaction. (<a href="https://www.globenewswire.com/news-release/2026/01/22/3224194/0/en/11-20-Bn-Brain-Computer-Interface-Global-Market-Opportunities-and-Strategies-to-2033-Astute-Analytica.html">Read More</a>)</p></li></ul><div><hr></div><h3><strong>&#128216; Neurotech Articles</strong></h3><ul><li><p><strong>Rebuilding human brain circuits reveals the thalamus&#8217;s role in cortical development: </strong>Researchers in Japan, led by scientists at Nagoya University, have recreated key human neural circuits using multi-region brain models known as assembloids. These models are formed by fusing cortical and thalamic organoids derived from human induced pluripotent stem cells. The study shows that the thalamus plays a central role in guiding cortical maturation. Cortical tissue connected to the thalamus exhibited more advanced gene expression and synchronized neural activity, with thalamic signals selectively strengthening specific neuron types. Published in Proceedings of the National Academy of Sciences, the work establishes assembloids as a powerful platform for studying human brain wiring and neurodevelopmental disorders such as autism. (<a href="https://www.pnas.org/doi/10.1073/pnas.2506573122">Read More</a>)</p></li><li><p><strong> A multimodal AI sleep model for long term disease prediction: </strong>Researchers have developed SleepFM, a multimodal AI foundation model trained on over 585,000 hours of sleep recordings that can predict the risk of 130 diseases from a single night of data. By integrating EEG, ECG, respiratory, and muscle signals, the model uncovers physiological patterns linked to long-term health outcomes. This work positions sleep as a powerful, non-invasive health signal, with the potential to turn routine sleep studies into early warning systems for preventive and personalized medicine. (<a href="https://www.nature.com/articles/s41591-025-04133-4">Read More</a>)</p></li><li><p><strong>Stimulant drugs improve performance by boosting arousal rather than attention: </strong>A new study published in Cell shows that commonly prescribed stimulant medications do not directly enhance attention circuits. Instead, they increase arousal, wakefulness, and reward related brain activity, producing neural patterns similar to those observed after healthy sleep. The findings challenge long held assumptions about how ADHD drugs work and suggest that their benefits arise from increased alertness and engagement rather than selective activation of attention networks. (<a href="https://www.cell.com/cell/fulltext/S0092-8674%2825%2901373-X">Read More</a>)</p></li></ul><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events</strong></h3><ol><li><p><strong>International Stroke Conference (ISC) 2026</strong></p></li></ol><p>&#128197; <strong>Date:</strong> February 04&#8211;06, 2026 | &#128205; <strong>New Orleans, USA</strong></p><p><strong>Why Attend the Event?</strong> As the premier global meeting for cerebrovascular disease, ISC 2026 is critical for neurotech developers focused on neurorehabilitation and acute intervention. The conference showcases the latest in &#8220;bench-to-bedside&#8221; research, including robotic rehabilitation, brain-computer interfaces for post-stroke recovery, and advanced neuro-imaging for vascular health. It is an essential stop for those looking to understand the clinical requirements for next-generation stroke technologies.</p><p><strong>Link to register: </strong><a href="https://professional.heart.org/en/meetings/international-stroke-conference">Register here</a></p><ol start="2"><li><p><strong>ACTRIMS Forum 2026</strong></p></li></ol><p>&#128197; <strong>Date:</strong> February 05&#8211;07, 2026 | &#128205; <strong>San Diego, USA</strong></p><p><strong>Why Attend the Event?</strong> The Americas Committee for Treatment and Research in Multiple Sclerosis (ACTRIMS) Forum focuses on the latest scientific advances in neuroimmunology. For the neurotech community, this event provides insight into how digital biomarkers and wearable sensors are being used to track disease progression and gait analysis. It offers a specialized environment for those developing monitoring technologies for chronic neurodegenerative conditions.</p><p><strong>Link to register: </strong><a href="https://forum.actrims.org/">Register here</a></p><ol start="3"><li><p><strong>AAIC Neuroscience Next</strong></p></li></ol><p>&#128197; <strong>Date:</strong> February 23&#8211;26, 2026 | &#128205; <strong>Hybrid / Global Hubs</strong></p><p><strong>Why Attend the Event?</strong> Organized by the Alzheimer&#8217;s Association, this no-cost hybrid conference is designed to showcase the next generation of researchers in dementia and Alzheimer&#8217;s. The program is unique for its &#8220;hub&#8221; format, connecting local neurotech ecosystems (such as London, Sydney, and San Jose) to a global audience. It is an excellent opportunity for early-career innovators to explore how AI and neuro-assessment tools are reshaping our approach to cognitive decline.</p><p><strong>Link to register: </strong><a href="https://www.alz.org/neurosciencenext">Register here</a></p><ol start="4"><li><p><strong>4th European Congress of Neurology and Neuropsychiatry</strong></p></li></ol><p>&#128197; <strong>Date:</strong> February 23&#8211;24, 2026 | &#128205; <strong>Paris, France</strong></p><p><strong>Why Attend the Event?</strong> This congress bridges the gap between clinical neurology and psychiatric practice, making it a key venue for neurotechnology aimed at behavioral and cognitive disorders. Discussions often center on neuromodulation techniques (like TMS and tDCS) and the integration of AI-driven diagnostics in clinical settings. The Paris setting facilitates high-level networking with European regulatory experts and clinical researchers. </p><p><strong>Link to register: </strong><a href="https://neurologyconf.com/">Register here</a></p><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: BrainCo &#8211; non-invasive BCI for health, education, and rehabilitation</strong></p><p>In this edition&#8217;s case study spotlight, we feature <strong>BrainCo</strong>, a leading neurotechnology unicorn that originated in the Harvard Innovation Lab. While many firms struggle to move past the prototype stage, BrainCo has achieved massive scale by deploying non-invasive Brain-Computer Interface (BCI) technology across three distinct sectors: intelligent bionics, wellness/education, and clinical rehabilitation. Their ecosystem approach proves that high-fidelity EEG data can be commercialized in both consumer and medical-grade products simultaneously. </p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!laEJ!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!laEJ!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 424w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 848w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 1272w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!laEJ!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic" width="1456" height="971" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:971,&quot;width&quot;:1456,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:137830,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/heic&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://neurotechpulse.substack.com/i/186302026?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!laEJ!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 424w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 848w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 1272w, https://substackcdn.com/image/fetch/$s_!laEJ!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F44a6a94b-2a5b-4660-8203-6e09a5a5d10e_1920x1280.heic 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p>BrainCo develops wearable EEG headsets and software platforms that measure neural signals related to attention, intent, and motor imagery. Its product portfolio spans cognitive training systems for education, neurofeedback tools, and rehabilitation-focused BCIs that enable control of assistive devices such as robotic prosthetics.</p><p>The company&#8217;s systems rely on non-invasive EEG acquisition combined with signal processing and machine-learning models to translate brain activity into actionable outputs, with a focus on robustness and repeatability outside controlled lab environments.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Cognitive Training &amp; Education:</strong> EEG-based feedback systems designed to measure and improve attention and engagement in learning environments.</p></li><li><p><strong>Neurorehabilitation:</strong> Brain-controlled interfaces used for stroke recovery and motor rehabilitation through intention-driven feedback loops.</p></li><li><p><strong>Assistive Robotics:</strong> Brain-controlled prosthetic and assistive devices enabling users to perform motor tasks using neural intent.</p></li><li><p><strong>Applied Neurofeedback</strong>: Real-time brain signal feedback for training focus, self-regulation, and mental performance.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Rehabilitation hospitals and physical therapy centers</p></li><li><p>Educational institutions and cognitive training programs</p></li><li><p>Researchers studying applied BCIs and neurofeedback</p></li><li><p>Organizations deploying assistive technologies for motor impairment</p></li></ul><p><strong>Key Partnerships:</strong></p><p>In January 2026, BrainCo announced a pre-IPO financing round led by IDG Capital and Walden International, marking one of the largest disclosed private financings in the BCI sector to date.</p><p>On the manufacturing side, BrainCo has entered a strategic partnership with Lens Technology, a major supplier to Apple, enabling large-scale production of EEG modules and bionic prosthetic components. The partnership supports BrainCo&#8217;s transition from limited deployments to volume manufacturing.</p><p>In robotics, BrainCo partnered with Unitree Robotics in 2025 to integrate its bionic hand systems into Unitree&#8217;s humanoid robotics platform, extending BrainCo&#8217;s assistive technology stack into general-purpose robotics research and development.</p><p>As of January 2026, BrainCo has confidentially filed for an initial public offering on the Hong Kong Stock Exchange, reflecting its intent to access public markets following several years of commercial scaling.</p><p><strong>Leadership Team:</strong></p><p>BrainCo is led by Bicheng Han, Ph.D. (Founder &amp; CEO), who conducted doctoral research at the Harvard Center for Brain Science. Han remains closely involved in the company&#8217;s technical and strategic direction and was appointed in 2025 to the Hong Kong Chief Executive&#8217;s advisory body focused on innovation, AI, and emerging technologies.</p><p>BrainCo&#8217;s R&amp;D organization draws heavily from U.S. academic research ecosystems, with a significant portion of its engineering and research team trained at institutions including Harvard and MIT, and a growing patent portfolio spanning neural signal acquisition, decoding algorithms, and human&#8211;machine interfaces.</p><p>For more information about BrainCo and its BCI products, visit <a href="https://www.brainco.tech/">brainco.tech</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@anthriq.com</p></blockquote><div><hr></div><p>&#10084;&#65039; Join us on <a href="https://discord.com/invite/VAvUjKd7nS">Discord</a>.</p><p>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</p><div><hr></div><div><hr></div><div class="subscription-widget-wrap-editor" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe&quot;,&quot;language&quot;:&quot;en&quot;}" data-component-name="SubscribeWidgetToDOM"><div class="subscription-widget show-subscribe"><div class="preamble"><p class="cta-caption">Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts and support my work.</p></div><form class="subscription-widget-subscribe"><input type="email" class="email-input" name="email" placeholder="Type your email&#8230;" tabindex="-1"><input type="submit" class="button primary" value="Subscribe"><div class="fake-input-wrapper"><div class="fake-input"></div><div class="fake-button"></div></div></form></div></div>]]></content:encoded></item><item><title><![CDATA[Signals at Scale: Regulation, Infrastructure, and the Quiet Maturation of Neurotech – Issue #33]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #33!]]></description><link>https://neurotechpulse.substack.com/p/signals-at-scale-regulation-infrastructure</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/signals-at-scale-regulation-infrastructure</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Wed, 31 Dec 2025 05:55:23 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!BGSU!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #33! </strong>This edition captures neurotech&#8217;s continued shift from experimental promise to operational reality. Regulatory clearances for non-invasive depression treatment and point-of-care EEG diagnostics signal growing clinical confidence, while funding rounds across interventional psychiatry, consumer BCIs, and implantable monitoring systems reflect sustained investor focus on scalable, real-world deployment.</p><p>Alongside these advances, the field is confronting new questions around privacy, consent, and long-term monitoring as ambient AI and continuous biosignal collection move deeper into healthcare settings. Emerging trends&#8212;from smart clothing overtaking wrist-wearables to BCIs expanding into smart home control&#8212;underscore how form factor and usability are increasingly shaping adoption.</p><p>This issue&#8217;s Case Study Spotlight features Earable Neuroscience, a company advancing ear-EEG as a low-friction approach to sleep and cognitive monitoring. Through its FRENZ&#8482; Brainband, Earable illustrates how biosignal collection is moving beyond episodic lab studies toward continuous, real-world neuroscience, marking another step in neurotech&#8217;s gradual integration into everyday care and research.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Flow Neuroscience receives major FDA clearance for depression treatment: </strong>Flow Neuroscience secured a significant FDA clearance for its non-invasive neuromodulation system targeting Major Depressive Disorder. The approval strengthens the clinical case for home-based neurostimulation as a scalable alternative to pharmacological treatment, especially for patients with treatment-resistant depression. (<a href="https://www.medicaldevice-network.com/news/fda-clears-flow-neuroscience-at-home-depression-treatment-in-us-first/">Read more</a>)</p></li><li><p><strong>Natus receives FDA 510(k) clearance for status epilepticus detection: </strong>Natus announced FDA 510(k) clearance for an electrographic status epilepticus diagnostic indication within its BrainWatch point-of-care EEG platform. The update enables faster bedside decision-making in critical care environments where time-to-diagnosis is essential. (<a href="https://www.prnewswire.com/news-releases/natus-announces-fda-510k-clearance-for-electrographic-status-epilepticus-diagnostic-indication-in-brainwatch-point-of-care-eeg-solution-302631532.html">Read more</a>)</p></li><li><p><strong>Sharp HealthCare faces lawsuit over Ambient AI monitoring: </strong>Sharp HealthCare is facing legal challenges related to its use of Ambient AI for passive patient monitoring. While not limited to neurotech, the case raises critical questions around consent, transparency, and liability as hospitals deploy &#8220;always-on&#8221; biosignal and AI systems. (<a href="https://www.mobihealthnews.com/news/patient-files-lawsuit-against-sharp-healthcare-ambient-ai-use">Read more</a>)</p></li><li><p><strong>IBEC develops mobile biosignal tech for post-stroke sleep apnea: </strong>Researchers at the Institute for Bioengineering of Catalonia (IBEC) unveiled a non-invasive mobile system for diagnosing sleep apnea in stroke survivors. By correlating respiratory EMG with neurological recovery, the platform enables continuous home monitoring of post-stroke complications. (<a href="https://ibecbarcelona.eu/mobile-technology-revolutionises-the-diagnosis-of-sleep-apnoea-after-a-stroke/">Read more</a>)</p></li><li><p><strong>Motif Neurotech launches patient registry for DOT depression therapy: </strong>Motif Neurotech opened its patient registry for upcoming trials of its Digitally Optimized Therapy (DOT) implant&#8212;a battery-free, skull-mounted device that stimulates the dorsolateral prefrontal cortex without penetrating brain tissue. (<a href="https://www.businesswire.com/news/home/20251216800381/en/Motif-Neurotech-Launches-Patient-Registry-for-Future-Research-Opportunities">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Radial raises $50M Series A to scale interventional psychiatry: </strong>Radial secured a $50M Series A round led by General Catalyst to expand its network of clinics delivering interventional psychiatric care. The funding will support new clinic openings and the development of proprietary decision-support software to guide treatments such as transcranial magnetic stimulation (TMS) and rapid-acting therapeutics. The raise positions Radial as infrastructure for scaling equipment-heavy, non-traditional mental health care. (<a href="https://bhbusiness.com/2025/12/10/general-catalyst-leads-50m-round-to-expand-radials-interventional-psychiatry-network/">Read more</a>)</p></li><li><p><strong>Neurable raises $35M Series A to commercialize everyday brain-computer interfaces: </strong>Neurable announced a $35M Series A round to accelerate the rollout of its AI-powered BCI platform. The capital will fund commercialization of the MW75 Neuro headphones, which integrate soft EEG sensors into consumer audio devices. Neurable aims to position cognitive monitoring as a daily-use feature and expand OEM integrations over the coming years. (<a href="https://www.axios.com/pro/health-tech-deals/2025/12/19/neurable-raises-35m-for-brain-ai">Read more</a>)</p></li><li><p><strong>Kitea Health closes $13M round to advance implantable intracranial pressure monitoring: </strong>Kitea Health raised $13M in an oversubscribed round to advance development of its Axon&#8482; implant, a wireless sensor designed to continuously monitor intracranial pressure in patients with hydrocephalus. The funding will support upcoming human trials in the United States, a key step toward regulatory approval. (<a href="https://www.nzherald.co.nz/business/kitea-health-closes-13m-raise-lines-up-human-trials-in-the-us/premium/O3EXTV5CLFHGDBMRRSOJ5QUBWQ/">Read more</a>)</p></li><li><p><strong>NeuroBionics raises $10M Seed to develop endovascular neural interfaces: </strong>NeuroBionics announced a $10M Seed round to advance its minimally invasive neural interface platform. The company is developing flexible bioelectronic fibers that access the brain through blood vessels, enabling neural recording and modulation without open surgery. The funding will support continued R&amp;D and early clinical validation. (<a href="https://neurobionics.io/press/news/neurobionics-announces-oversubscribed-10m-seed-round-with-second-close-led-by-future-ventures/">Read more</a>)</p></li><li><p><strong>Subsense raises additional $10M to pursue nanoparticle-based brain interfaces: </strong>Subsense raised an additional $10M, bringing its total Seed funding to $27M, to develop a non-surgical brain&#8211;computer interface based on engineered nanoparticles. The approach aims to create a bi-directional neural interface without implants by delivering nanoparticles via a nasal route. The funds will be used to advance preclinical development of the platform. (<a href="https://www.axios.com/pro/biotech-deals/2025/12/11/subsense-raises-10m-for-neurotech">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ul><li><p><strong>UNICEF releases &#8220;Neuro-Rights for Children&#8221; framework: </strong>UNICEF published a report titled <em>&#8220;Preparing for the Future: Neurotechnology and Children&#8217;s Rights&#8221;</em>, outlining risks associated with the use of neurotechnology on minors. The framework warns against attention-monitoring headsets in classrooms, calls for restrictions on neuro-surveillance in educational settings, and introduces the concept of CALMTech to ensure access to therapeutic neurotechnology without exposing children&#8217;s neural data to commercial exploitation. (<a href="https://www.unicef.org/innocenti/reports/neurotechnology-and-childrens-rights">Read more</a>)</p></li><li><p><strong>Smart clothing begins to outpace wrist-based wearables: </strong>Consumer technology forecasts indicate that smart clothing with embedded biosensors such as EMG and ECG is projected to grow faster than wrist-wearables in 2026. Advances in flexible electronics are enabling signal acquisition from garments and headwear, offering richer physiological data without the friction of dedicated devices. (<a href="https://www.precedenceresearch.com/e-textiles-and-smart-clothing-market">Read more</a>)</p></li><li><p><strong>BCI expands beyond gaming into smart home automation: </strong>Market reports released in December 2025 identify smart home automation as an emerging primary driver for non-invasive BCI adoption. Consumer devices are increasingly positioned as hands-free controllers for lighting, temperature, and security systems, with a focus on accessibility and use by aging or mobility-limited populations. (<a href="https://www.thebusinessresearchcompany.com/report/brain-computer-interface-global-market-report">Read more)</a></p></li></ul><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ul><li><p><strong>Reversing &#8220;brain aging&#8221; to stop epilepsy: </strong>A new study reported that temporal lobe epilepsy may be driven by premature cellular aging (senescence). Researchers showed that senolytic drugs, which selectively remove aging cells, significantly reduced seizure frequency and improved memory in mouse models. The findings suggest a potential new therapeutic pathway for drug-resistant epilepsy by targeting cellular aging rather than neural excitability alone. (<a href="https://www.sciencedirect.com/science/article/pii/S1059131124002449">Read more</a>)</p></li><li><p><strong>Advanced brain imaging shows how inflammation can be blocked in Parkinson&#8217;s disease: </strong>Researchers at the University of Queensland used simultaneous PET/MRI imaging to visualize the effects of a new oral anti-inflammatory drug in the living brain. The study confirmed that the drug blocked specific inflammasomes and prevented neuronal death, providing direct imaging-based evidence of efficacy that could accelerate progression to human clinical trials. (<a href="https://academic.oup.com/brain/advance-article/doi/10.1093/brain/awaf372/8287312">Read more</a>)</p></li><li><p><strong>Ultra-thin wireless brain implant streams signals from over 65,000 electrodes: </strong>Researchers from Columbia University, Stanford University, and the University of Pennsylvania published a paper in <em>Nature Electronics</em> describing the Biological Interface System to Cortex (BISC). The wireless, paper-thin implant floats on the brain&#8217;s surface and transmits neural data at up to 100 Mbps using more than 65,000 electrodes. The architecture addresses long-standing wiring and bandwidth limitations in high-density brain&#8211;computer interfaces. (<a href="https://pubmed.ncbi.nlm.nih.gov/38798494/">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>Consumer Electronics Show (CES) 2026</strong><br>&#128197; Date: January 06&#8211;09, 2026 | &#128205; Las Vegas, USA</p><p><strong>Why Attend the Event?</strong><br>CES 2026 brings neurotechnology into the mainstream consumer spotlight as biosensors increasingly move from research labs into everyday products. The Digital Health track is expected to feature a growing number of &#8220;invisible&#8221; biosensors, including EEG-integrated sleep devices, EMG-enabled wearables, and stress-monitoring systems. The event offers an early view into how brain and biosignal technologies are being packaged for mass-market adoption.</p><p><strong>Link to register:</strong> <a href="https://www.ces.tech/attendee-guides/registration-information/">Register here</a></p></li><li><p><strong>Alpine Brain Imaging Meeting (ABIM) 2026</strong><br>&#128197; Date: January 11&#8211;15, 2026 | &#128205; Champ&#233;ry, Switzerland</p><p><strong>Why Attend the Event?</strong><br>ABIM 2026 is a focused gathering for researchers working on advanced brain imaging and human brain mapping. The meeting emphasizes in-depth technical discussions around fMRI, high-density EEG, and connectivity modeling in a small, collaborative setting. It is particularly valuable for researchers seeking close interaction and collaboration on next-generation brain imaging methods.</p><p><strong>Link to register:</strong> <a href="https://www.unige.ch/ABIM/participants">Register here</a></p></li><li><p><strong>SPIE BiOS &amp; Photonics West 2026</strong><br>&#128197; Date: January 17&#8211;22, 2026 | &#128205; San Francisco, USA</p><p><strong>Why Attend the Event?</strong><br>SPIE BiOS is a leading conference for the hardware and optics side of neurotechnology. The Neurophotonics track covers optical brain interfaces, including optogenetics, functional near-infrared spectroscopy (fNIRS), and optical imaging techniques. The event highlights sensor technologies and photonic tools shaping future non-invasive and minimally invasive neural interfaces.</p><p><strong>Link to register:</strong> <a href="https://spie.org/conferences-and-exhibitions/photonics-west/exhibitions/for-exhibitors">Register here</a></p></li><li><p><strong>Winter Conference on Brain Research</strong><br>&#128197; Date: January 24&#8211;29, 2026 | &#128205; Big Sky, Montana, USA</p><p><strong>Why Attend the Event?</strong><br>The Winter Conference on Brain Research focuses on fundamental neuroscience, with an emphasis on neural circuits, plasticity, and systems-level understanding of the brain. The interdisciplinary program brings together molecular biologists, systems neuroscientists, and clinicians, making it relevant for those building biologically grounded neurotechnology and adaptive BCI systems.</p><p><strong>Link to register: </strong><a href="https://winterbrain.org/">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Earable Neuroscience &#8211; Ear-EEG for Sleep and Cognitive Monitoring</strong></p><p>In this edition&#8217;s case study spotlight, we feature <strong>Earable Neuroscience</strong>, a neurotechnology company focused on developing ear-centered brain monitoring systems for sleep and cognitive health. The company&#8217;s flagship product, FRENZ&#8482; Brainband, is an ear-EEG&#8211;based wearable designed to capture brain activity and physiological signals during natural sleep and daily use. By shifting EEG sensing from the scalp to the ear, Earable aims to enable continuous, low-friction neural monitoring outside clinical and laboratory environments.</p><p>Earable&#8217;s work is positioned around validating ear-EEG as a practical alternative to traditional EEG, with an emphasis on real-world data collection rather than episodic, lab-based recordings.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!BGSU!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!BGSU!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 424w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 848w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 1272w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!BGSU!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp" width="1024" height="561" 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srcset="https://substackcdn.com/image/fetch/$s_!BGSU!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 424w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 848w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 1272w, https://substackcdn.com/image/fetch/$s_!BGSU!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F125cf60d-3141-41ce-8ea1-6a83978a2297_1024x561.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong></p><p><strong>FRENZ&#8482; Brainband</strong> is an ear-worn device that integrates EEG with additional biosignals such as heart rate and motion to monitor brain and sleep states. The system is designed for overnight and long-duration use, enabling longitudinal tracking of neural activity with minimal setup compared to conventional scalp EEG.</p><p>Earable Neuroscience has published and presented research demonstrating the feasibility of ear-EEG for sleep staging and cognitive state analysis, positioning the ear as a stable and socially acceptable sensing location for continuous neurophysiological monitoring.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Sleep Staging and Quality Assessment:</strong> Uses ear-EEG and physiological signals to analyze sleep architecture in natural settings.</p></li><li><p><strong>Cognitive State Monitoring:</strong> Supports research into attention, fatigue, and mental workload outside laboratory conditions.</p></li><li><p><strong>Longitudinal Brain Monitoring:</strong> Enables repeated, extended neural data collection over days or weeks.</p></li><li><p><strong>Low-Friction EEG Form Factor:</strong> Ear-based sensing reduces preparation time and discomfort compared to scalp EEG.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Sleep researchers studying brain activity during natural sleep</p></li><li><p>Neuroscience teams exploring ambulatory EEG and real-world cognition</p></li><li><p>Digital health researchers evaluating objective sleep and brain biomarkers</p></li><li><p>Organizations conducting longitudinal neurophysiological studies</p></li></ul><p><strong>Key Partnerships:</strong></p><p>Earable Neuroscience is an official member of the National Sleep Foundation&#8217;s SleepTech&#174; Network, aligning its research and product development with established clinical sleep standards. The company is backed by Samsung Ventures, which supports its manufacturing and scaling efforts, and Founders Fund, providing early-stage backing that reflects strong confidence in Earable&#8217;s deep-tech approach to neural sensing.</p><p><strong>Leadership Team:</strong></p><p>Earable Neuroscience is led by Tam Vu, Ph.D. (Founder &amp; CEO), a former professor at the University of Oxford and the University of Colorado Boulder, and the primary inventor of the company&#8217;s core ear-EEG sensing technology. Kimi Doan (Chief Innovation Officer) oversees global expansion and ecosystem development, with a focus on building partnerships across the emerging SleepTech landscape.</p><p>For more information about Earable Neuroscience and FRENZ&#8482; Brainband, visit <a href="https://frenzband.com/">frenzband.com</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@nexstem.ai</p></blockquote><div><hr></div><p><em>&#10084;&#65039; Join us on <a href="https://discord.com/invite/R7MzTQWPE7">Discord</a>.</em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><div class="subscription-widget-wrap-editor" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe&quot;,&quot;language&quot;:&quot;en&quot;}" data-component-name="SubscribeWidgetToDOM"><div class="subscription-widget show-subscribe"><div class="preamble"><p class="cta-caption">Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts and support my work.</p></div><form class="subscription-widget-subscribe"><input type="email" class="email-input" name="email" placeholder="Type your email&#8230;" tabindex="-1"><input type="submit" class="button primary" value="Subscribe"><div class="fake-input-wrapper"><div class="fake-input"></div><div class="fake-button"></div></div></form></div></div>]]></content:encoded></item><item><title><![CDATA[Control, Communication, and Care: Assistive BCIs and the Rise of Thoughtful Interfaces – Issue #32]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #32! This edition reflects neurotech&#8217;s steady progression from early-stage exploration to clinical and commercial execution.]]></description><link>https://neurotechpulse.substack.com/p/control-communication-and-care-assistive</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/control-communication-and-care-assistive</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sun, 30 Nov 2025 09:02:04 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!HJlx!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #32!</strong> This edition reflects neurotech&#8217;s steady progression from early-stage exploration to clinical and commercial execution. From Paradromics&#8217; FDA greenlight for its speech-restoring implant and ONWARD&#8217;s at-home spinal cord therapy approval to INBRAIN&#8217;s AI partnership with Microsoft and Phantom Neuro&#8217;s patient registry launch, the field continues to bridge neuroscience, devices, and real-world care.</p><p>Funding momentum from Synchron, Beacon Biosignals, and Coherence Neuro highlights investor confidence in scalable BCI systems, neural diagnostics, and brain-guided therapies. We also explore emerging trends in ethics, ambient interfaces, and hybrid brain&#8211;device architectures, alongside breakthroughs in transformer-powered EEG decoding, subretinal prosthetics, and lab-grown brain organoids.</p><p>This issue&#8217;s Case Study Spotlight features Cognixion, a California-based company building non-invasive BCIs that help people speak using only brain and eye signals. By combining EEG, AR, and gaze tracking into a wearable system, Cognixion is rethinking how communication can be restored without implants or muscle movement.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Paradromics gets FDA approval for the first human trial of its Connexus BCI (speech restoration): </strong>Paradromics has secured FDA Investigational Device Exemption (IDE) approval for its Connect-One Early Feasibility Study. The study will evaluate the Connexus BCI, a high-bandwidth neural implant designed to restore speech in individuals with severe motor impairment. First-in-human trials are expected to begin in early 2026. (<a href="https://www.paradromics.com/news/paradromics-receives-fda-approval-for-the-connect-one-clinical-study-with-the-connexus-brain-computer-interface">Read more</a>)</p></li><li><p><strong>ONWARD Medical receives FDA 510(k) clearance for at-home use of its ARC-EX system (spinal cord injury rehabilitation):</strong> ONWARD&#8217;s ARC-EX system, a non-invasive neuromodulation device for spinal cord injury (SCI), has been cleared for home use by the FDA, enabling patients to continue therapy outside clinical settings. The company also received IDE approval to begin a pivotal study of its implanted ARC-IM system focused on blood pressure stabilization in SCI patients. (<a href="https://ir.onwd.com/static-files/cb47b7af-6775-469f-b4f4-cb660b8731c3">Read more</a>)</p></li><li><p><strong>Phantom Neuro launches Patient Registry for upcoming neural interface trials: </strong>Phantom Neuro has opened enrollment for its Patient Registry, inviting upper-limb amputees to participate in upcoming studies. The initiative supports clinical validation of Phantom&#8217;s minimally invasive neural interfaces aimed at intuitive prosthetic control. (<a href="https://www.prnewswire.com/news-releases/phantom-neuro-officially-opens-its-much-anticipated-patient-registry-to-connect-amputees-with-future-clinical-opportunities-302623988.html">Read more</a>)</p></li><li><p><strong>INBRAIN Neuroelectronics partners with Microsoft on agentic AI for BCI therapeutics: </strong>INBRAIN is collaborating with Microsoft to develop agentic AI systems that power precision neurology. The partnership combines INBRAIN&#8217;s graphene-based neural interfaces with Microsoft&#8217;s cloud and AI infrastructure, accelerating personalized brain therapies. (<a href="https://www.businesswire.com/news/home/20251109800738/en/INBRAIN-Neuroelectronics-Announces-Collaboration-with-Microsoft-to-Advance-Agentic-AI-for-Precision-Neurology-and-Brain-Computer-Interface-Therapeutics">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Synchron raises $200M Series D to scale Stentrode and launch new BCI platform: </strong>Synchron announced a $200M round led by Double Point Ventures, with continued backing from ARCH, Khosla Ventures, Jeff Bezos, and Protocol Labs. The funds will accelerate commercialization of its Stentrode BCI system and support development of a stealth-mode, high-channel, whole-brain interface. Synchron also plans to open a new R&amp;D facility in San Diego to drive next-gen platform innovation. (<a href="https://www.businesswire.com/news/home/20251106150841/en/Synchron-Raises-%24200-Million-Series-D-to-Advance-Brain-Computer-Interface-Technology">Read more</a>)</p></li><li><p><strong>Beacon Biosignals raises $86M Series B to expand AI-powered brain diagnostics: </strong>Backed by ARCH Venture Partners, the round will be used to scale Beacon&#8217;s EEG-based precision neurology platform, grow its proprietary neurodiagnostic datasets, and accelerate the development of AI-derived biomarkers for brain and mental health disorders. (<a href="https://beacon.bio/news/beacon-biosignals-raises-86m-to-accelerate-ai-driven-insights-into-brain-health">Read more</a>)</p></li><li><p><strong>Coherence Neuro raises $10&#8239;M to launch closed-loop neuro system for cancer treatment: </strong>San Francisco-based Coherence Neuro has secured a $10 million seed round from Babel Ventures to advance its work at the intersection of neuroengineering and cancer therapy. This latest funding will enable the company to begin its first human trials, a pivotal step toward building a closed-loop, bi-directional system for treating cancer. (<a href="https://techfundingnews.com/startup-in-spotlight-coherence-neuro-raises-10m-to-launch-closed-loop-neuro-dystem-for-cancer-treatment/">Read more</a>)</p></li><li><p><strong>EBRAINS-Neurotech awarded &#8364;18.3M grant to build next&#8209;gen brain technology infrastructure: </strong>A new European consortium, EBRAINS&#8209;Neurotech, led by the University of Amsterdam and 8 other institutions has secured funding from the Dutch Research Council (NWO) to build shared infrastructure for brain&#8209;machine interface research, advanced neural implants, and digital brain models. (<a href="https://www.uva.nl/shared-content/uva/en/news/news/2025/11/ebrains-neurotech-building-the-next-generation-of-brain-technology.html?cb">Read more</a>)</p></li><li><p><strong>NextSense raises $16M Series A to launch EEG-smartbuds for everyday brain monitoring: </strong>Led by Creation Partners, the round will support the commercial launch and scale-up of NextSense&#8217;s EEG-enabled smart earbuds, designed to passively monitor brain activity during sleep, focus, and daily life. The funding will also help expand developer tools and accelerate clinical research partnerships. (<a href="https://techfundingnews.com/nextsense-scoops-16m-launch-worlds-first-eeg-smartbuds/">Read more</a>)</p></li><li><p><strong>Precision Neuroscience receives investment from SCI Ventures to accelerate BCI access for paralysis:</strong> Precision Neuroscience has partnered with SCI Ventures, a firm focused on spinal cord injury innovation, to expand the clinical deployment of its Layer 7 cortical interface. The funds will support clinical studies, regulatory progress, and broader access to brain-computer interface technology for individuals with severe paralysis. (<a href="https://www.globenewswire.com/news-release/2025/11/05/3181536/0/en/Precision-Neuroscience-and-SCI-Ventures-Partner-to-Bring-Brain-Computer-Interfaces-to-People-Living-with-Paralysis.html">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ul><li><p><strong>UNESCO Adopts Global Ethics Standard for Neurotechnology: </strong>In a landmark move, UNESCO has adopted the world&#8217;s first international ethical framework for neurotechnology. The guidelines emphasize mental privacy, cognitive liberty, and protection from coercive or exploitative use, laying down ethical boundaries for neural data collection, workplace surveillance, and military applications. (<a href="https://www.unesco.org/en/articles/ethics-neurotechnology-unesco-adopts-first-global-standard-cutting-edge-technology">Read more</a>)</p></li><li><p><strong>Global BCI market projected to grow from ~$2.4B (2025) to ~$6.16B by 2032, fueled by Non-Invasive Solutions: </strong>A recent market analysis projects the global brain-computer interface market to grow from ~$2.4B in 2025 to ~$6.16B by 2032, driven by regulatory progress, broader neurological applications, and a surge in wearable and non-invasive systems. The forecast reflects rising confidence in neurotech&#8217;s shift from experimental to essential. (<a href="https://www.globenewswire.com/news-release/2025/11/20/3192028/0/en/Brain-Computer-Interface-Market-Poised-for-Explosive-Growth-Projected-to-Hit-USD-6-16-Billion-by-2032-Coherent-Market-Insights.html">Read more</a>)</p></li><li><p><strong>Apple Vision Pro Explores Accessibility via Non-Invasive Brain Interfaces: </strong>Apple&#8217;s accessibility team has begun experimenting with Vision Pro as a hands-free interface platform, leveraging gaze tracking and neural signal interpretation for users with motor impairments. Early pilots suggest that non-invasive brain-computer interaction could evolve through ambient sensors and attention-based triggers&#8212;transforming assistive tech into a seamless, mainstream experience (<a href="https://www.cognixion.com/blog/2025/10/29/apple-work-cognixion-episode-l8t26">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ul><li><p><strong>Lab-Grown Brain Organoids mimic early Human Cognition:</strong>Researchers from UC Santa Cruz found that human brain organoids (grown from stem cells and isolated from all sensory input) produce structured, time&#8209;based neuronal firing patterns resembling the brain&#8217;s default mode. These early sequences emerge months before sensory processing is possible, suggesting the brain assembles its foundational circuitry from an intrinsic, genetically guided program. The work provides a controlled model for studying early neurodevelopment, disorders, and the impact of toxins on fetal brain wiring. (<a href="https://neurosciencenews.com/organoid-cognition-neurodevelopment-29974/">Read more</a>)</p></li><li><p><strong>Sleep Apnea may be a precursor to Parkinson&#8217;s Disease:</strong> A longitudinal study of over 11million adults found that individuals with obstructive sleep apnea (OSA) were significantly more likely to develop Parkinson&#8217;s disease &#8212; independent of age, sex, and other risk factors. The research highlights a potential neurodegenerative pathway triggered by chronic sleep disruption and positions respiratory irregularities during sleep as an early biomarker for Parkinsonian disorders. (<a href="https://neurosciencenews.com/osa-parkinsons-neurology-29977/">Read more</a>)</p></li><li><p><strong>Genetic risk combined with cardiovascular factors may help predict and delay dementia: </strong>A new study led by UC San Francisco shows that dementia risk prediction improves significantly when genetic factors are combined with cardiovascular health markers. While genes like APOE4 and family history carry weight, modifiable risks, such as hypertension, obesity, and diabetes proved equally important. The findings point toward more personalized, prevention-focused strategies for identifying those at highest risk. (<a href="https://neurosciencenews.com/genetics-dementia-cvd-29966/">Read more</a>)</p></li><li><p><strong>Guidewire&#8209;deployable high&#8209;density ECoG array enables scalable BCI implants: </strong>A team of researchers published a novel electrocorticography (ECoG) array that packs 256 electrodes in 4&#8239;cm&#178;, can be folded, inserted via a millimeter&#8209;scale skull opening, then unfurled epidurally. In canine tests it captured rich auditory neural signals and, using standard ML classifiers, could distinguish between sound types with &gt;&#8239;80% accuracy. This design resolves a longstanding tradeoff between electrode coverage, signal fidelity, and surgical invasiveness, a key enabler for future, scalable brain&#8209;computer interfaces. (<a href="https://arxiv.org/abs/2511.12907">Read more</a>)</p></li><li><p><strong>Transformer&#8209;integrated deep&#8209;learning enables robust EEG decoding of complex visual imagery: </strong>In a new study, researchers introduced a deep learning architecture that combines functional connectivity metrics with a convolutional neural network and image transformer hybrid. Applied to non-invasive EEG recordings, the system decodes complex visual imagery (such as imagined upper-limb movements) into control signals for robotic arm manipulation. Offline and pseudo-online tests showed promising subject-independent decoding, marking a step toward versatile, non-invasive BCI interfaces that do not require implants. (<a href="https://arxiv.org/abs/2511.15218">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>NeurIPS 2025<br></strong> &#128197; Date: December 02&#8211;07, 2025 | &#128205; San Diego, USA<a href="https://neurips.cc/?utm_source=chatgpt.com"> NeurIPS+1</a></p><p><strong>Why Attend the Event?</strong></p><p>Join neuroscientists, ML researchers, and neurotech innovators at NeurIPS 2025, the world&#8217;s leading conference on neural information processing. While known for frontier AI work, its dedicated tracks on computational neuroscience, neural decoding, and brain-inspired architectures are where the next wave of BCI algorithms are born. Expect sessions on spiking neural networks, neural representation learning, semantic decoding from EEG, and biologically grounded AI.</p><p><strong>Link to register:</strong> <a href="https://neurips.cc/">Register here</a></p></li><li><p><strong>EBRAINS Summit 2025<br></strong> &#128197; Date: December 08&#8211;11, 2025 | &#128205; Brussels, Belgium</p><p><strong>Why Attend the Event?<br></strong>Join neuroinformaticians, brain researchers, and policy leaders for the EBRAINS Summit 2025, focused on building Europe&#8217;s digital neuroscience infrastructure. This year&#8217;s edition will spotlight the EBRAINS 2.0 roadmap, advancing cross-border brain data sharing, simulation engines, and ultra-detailed brain atlases. Sessions explore how open-access neural platforms are powering both clinical research and next-gen neurotechnologies.</p><p><strong>Link to register:</strong> <a href="https://summit2025.ebrains.eu/">Register here</a></p></li><li><p><strong>CIFAR Neuroscience of Consciousness Winter School<br></strong> &#128197; Date: December 10&#8211;12, 2025 | &#128205; Montebello, Canada</p><p><strong>Why Attend the Event?<br></strong>Join neuroscientists, philosophers, and AI researchers at this intimate CIFAR winter workshop exploring the biology of consciousness. Hosted by the Brain, Mind &amp; Consciousness program, the event brings together leading voices tackling the &#8220;hard problem&#8221; of subjective experience. Sessions delve into cross-species neural correlates of consciousness, selfhood, memory, and what it means for the future of sentient AI systems.</p><p><strong>Link to register:</strong> <a href="https://cifar.ca/next-generation/cifar-neuroscience-of-consciousness-winter-school/">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p><strong>&#127916; Case Study Spotlight: Cognixion &#8211; Non-Invasive BCI for Assistive Communication</strong></p><p>In this edition&#8217;s case study spotlight, we feature <strong>Cognixion</strong>, a California-based neurotechnology company advancing brain&#8211;computer interfaces for individuals with severe motor and speech impairments. Cognixion is developing Cognixion ONE, a non-invasive, wearable system that combines EEG, eye tracking, and augmented reality to enable communication through neural and gaze-based intent. By integrating multiple input modalities into a portable, AI-assisted interface, the platform offers a new pathway for restoring speech without relying on muscle movement or invasive implants.</p><p>Currently offered for research and investigational use, Cognixion ONE is being evaluated in clinical environments, with the aim of enabling real-world application across assistive care, neurorehabilitation, and speech therapy.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!HJlx!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!HJlx!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 424w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 848w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 1272w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!HJlx!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp" width="1456" height="1092" 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srcset="https://substackcdn.com/image/fetch/$s_!HJlx!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 424w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 848w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 1272w, https://substackcdn.com/image/fetch/$s_!HJlx!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fff48442e-ed47-4f80-943e-2b657cb76c26_2400x1800.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong><br>Cognixion ONE pairs a wireless EEG headset (Axon-R) with an AR-enabled display to detect and interpret user intent using a combination of brain activity, gaze fixation, and head pose. The system supports predictive text generation, personalized voice synthesis, and real-time interaction via a fully embedded, multimodal interface.</p><p>Designed for individuals with conditions such as ALS, cerebral palsy, or spinal cord injury, the platform operates without surgical intervention and is optimized for deployment in home and clinical settings. A clinical study integrating Cognixion ONE with Apple Vision Pro is currently underway to explore spatial computing applications for non-verbal communication.</p><p><strong>Use Case Highlights: </strong></p><ul><li><p><strong>Assistive Communication:</strong> Enables speech generation using neural and gaze signals in individuals with minimal or no voluntary movement.</p></li><li><p><strong>Supports Multimodal Input:</strong> Combines EEG, eye tracking, and head tracking to improve accuracy and reduce false selections.</p></li><li><p><strong>Non-Invasive and Portable:</strong> Offers a fully wearable, wireless BCI system designed for real-world environments without surgical procedures.</p></li><li><p><strong>Voice Personalization: </strong>Supports custom voice proxies for identity-preserving speech synthesis in degenerative conditions.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Clinicians and speech-language pathologists supporting patients with neuromuscular or motor impairments</p></li><li><p>Rehabilitation centers and long-term care facilities seeking non-invasive AAC (augmentative and alternative communication) solutions</p></li><li><p>Neurotechnology researchers developing multimodal BCI systems for assistive and clinical applications</p></li></ul><p><strong>Key Partnerships:</strong><br>Cognixion has partnered with Pupil Labs for integrated eye-tracking support and Blackrock Neurotech for research distribution of the Axon-R platform. A clinical collaboration with Apple Vision Pro is underway to evaluate spatial computing interfaces for non-verbal users.</p><p><strong>Leadership Team:</strong><br>Cognixion is led by <strong>Andreas Forsland</strong> (Founder &amp; CEO), whose experience as a caregiver informed the company&#8217;s mission, and <strong>Chris Ullrich</strong> (CTO), who brings technical leadership across biosignals, AR, and embedded systems. The team spans neuroscience, clinical design, and real-time systems engineering.</p><p>For more information about Cognixion and its non-invasive BCI platform, visit <a href="https://www.cognixion.com/">cognixion.com</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming Neurotech Insights edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to collaboration@nexstem.ai</p></blockquote><div><hr></div><p>                                                        <em>&#10084;&#65039; Join us on <a href="https://discord.com/invite/R7MzTQWPE7">Discord</a>.</em></p><p><em>               Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p><div><hr></div><p></p>]]></content:encoded></item><item><title><![CDATA[Light, Thought, and Vision: Neurotech’s Non-Invasive Revolution – Issue #31]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #31!]]></description><link>https://neurotechpulse.substack.com/p/light-thought-and-vision-neurotechs</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/light-thought-and-vision-neurotechs</guid><pubDate>Fri, 31 Oct 2025 15:02:52 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!3jya!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #31! </strong>This edition captures neurotech&#8217;s accelerating shift from lab-scale innovation to clinical reality. From Boston Scientific&#8217;s $533M acquisition of Nalu Medical and Neuralink&#8217;s 10,000+ patient waitlist to Biolinq&#8217;s FDA-cleared needle-free sensor and REMspace&#8217;s dream-to-dream communication, the field continues to expand across medicine, mind, and machine. Funding milestones from HistoSonics, Sense Neuro, and CoMind spotlight the momentum in non-invasive therapies and real-time brain monitoring. We also explore breakthroughs in bioelectronic hybrid neurons, multi-point ultrasound neuromodulation, and optical tracking of Alzheimer&#8217;s progression. </p><p>This issue&#8217;s Case Study Spotlight features <strong>CoMind</strong>, a London-based startup redefining brain monitoring with its light-based CoMind One system, aiming to make intracranial insights safer, smarter, and truly non-invasive.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Boston Scientific to Acquire Nalu Medical for $533M:</strong> Boston Scientific has signed a definitive agreement to acquire Nalu Medical, maker of a miniaturized, battery-free peripheral nerve stimulation system for chronic pain. The deal, expected to close in early 2026, expands its neuromodulation and pain management portfolio. <a href="https://www.prnewswire.com/news-releases/boston-scientific-announces-agreement-to-acquire-nalu-medical-inc-302587495.html">(Read more)</a></p></li><li><p><strong>Neuralink Reports 10,000+ Patient Waitlist: </strong>President Dongjin Seo revealed that over 10,000 people have expressed interest in receiving Neuralink&#8217;s N1 implant, with 12 patients already implanted and 25 expected by year-end. The company&#8217;s robotic surgical arm is key to scaling safely, with users achieving 10&#215; faster-than-human response times.<a href="https://www.pcmag.com/news/neuralink-has-a-huge-patient-waitlist-bring-on-the-robot-surgeons"> (Read more)</a></p></li><li><p><strong>Natus Acquires Holberg EEG to Advance AI in Neurodiagnostics:</strong> Natus Medical has acquired full ownership of Holberg EEG, creator of the first FDA-cleared AI model for automatic EEG interpretation. Trained on 30,000+ recordings, the system matches expert accuracy and integrates with Natus NeuroWorks&#174; to bring faster, smarter brain diagnostics to clinics worldwide. <a href="https://www.prnewswire.com/news-releases/natus-acquires-holberg-eeg-expanding-innovation-in-neurodiagnostic-ai-solutions-302570347.html">(Read more)</a></p></li><li><p><strong>Revision Implant Wins &#8216;Most Disruptive Innovator&#8217; at Deloitte Fast 50: </strong>Belgian startup Revision Implant was named Most Disruptive Innovator at Deloitte&#8217;s 2025 Technology Fast 50 for its vision-restoring neural prosthesis that enables blind individuals to regain functional sight. The award recognizes cutting-edge medical technologies redefining sensory restoration and neuroprosthetics. <a href="https://www.deloitte.com/be/en/about/press-room/fast50-2025-winners.html">(Read more)</a></p></li><li><p><strong>REMspace Enables First Dream-to-Dream Communication:</strong> California startup REMspace achieved a world-first by letting two lucid dreamers exchange a message while asleep using EEG and facial EMG sensors. The team now aims to enable real-time communication within dreams. <a href="https://www.businesswire.com/news/home/20241008878282/en/Breakthrough-from-REMspace-First-Ever-Communication-Between-People-in-Dreams">(Read more)</a></p></li><li><p><strong>Biolinq&#8217;s Needle-Free Glucose Sensor Gets FDA Approval:</strong> The Biolinq Shine, a quarter-sized patch with micro-scale electrochemical sensors, measures glucose without breaking the skin. It uses color cues, blue for normal, yellow for high, and syncs sleep and activity data to a smartphone app, marking a step toward multi-analyte biosensing for wellness and metabolic health. <a href="https://www.medscape.com/viewarticle/biolinq-shine-new-sensor-doesnt-require-needle-measure-2025a1000sab?form=fpf">(Read more)</a></p></li><li><p><strong>Pixium&#8217;s PRIMA Implant Restores Vision in AMD Patients:</strong> A new <em>NEJM</em> study shows that the subretinal photovoltaic microarray restored partial central vision in 80% of advanced AMD patients. Combined with infrared glasses, the system enabled meaningful visual recovery within 12 months, a key milestone for bionic vision. <a href="https://www.nejm.org/doi/10.1056/NEJMoa2501396">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Sense Neuro Diagnostics Raises $17M to Advance Rapid Stroke &amp; TBI Scanner:</strong> Backed by UC&#8217;s 1819 Innovation Hub, Queen City Angels, and two U.S. DoD contracts ($4.4M combined); funds will accelerate NeuroHawk&#8217;s clinical testing and FDA clearance. <a href="https://www.uc.edu/news/articles/2025/09/uc-1819-backed-startup-sense-neuro-fueled-by-17-million.html">(Read more)</a></p></li><li><p><strong>CoMind Raises $102.5M to Redefine Non-Invasive Brain Monitoring:</strong> London-based CoMind secured $102.5M led by Plural, with Angelini Ventures, Octopus, and LocalGlobe to advance regulatory approval of <strong>CoMind One</strong>, a bedside device providing continuous, non-invasive insights into cerebral blood flow, autoregulation, and intracranial pressure.<a href="https://www.comind.io/news/comind-announces-102-5m-funding-to-redefine-clinical-monitoring-of-the-brain"> (Read more)</a></p></li><li><p><strong>HistoSonics Raises $250M to Expand Non-Invasive Tumor Therapy:</strong> The developer of the Edison&#174; Histotripsy System secured $250M in oversubscribed growth financing led by Thiel Bio, K5 Global, and Bezos Expeditions. The funds will expand global access and new indications for its focused-ultrasound platform that liquefies tumors without surgery or radiation. <a href="https://www.businesswire.com/news/home/20251016119331/en/HistoSonics-Announces-Oversubscribed-%24250-Million-Growth-Financing">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>Bioelectronic Hybrid Neurons Blur the Line Between Biology and Computing:</strong> Researchers at the University of Massachusetts Amherst have created artificial neurons using bacterial nanowires and memristors that mimic real neurons&#8217; voltage and behavior. Operating at 0.1 V&#8212;10&#215; more efficient than previous models, the hybrids can fire, rest, and respond to chemical cues, even controlling living heart cells. The breakthrough points to energy-efficient neuromorphic computing and biointegrated BCIs. <a href="https://singularityhub.com/2025/10/21/unprecedented-artificial-neurons-are-part-biological-part-electrical-work-more-like-the-real-thing/?isPostPreview=true">(Read more)</a></p></li><li><p><strong>Ultrasound Breakthrough Targets Multiple Brain Networks at Once: </strong>Researchers at ETH Zurich, University of Zurich, and NYU have developed a new focused ultrasound system that can stimulate 3&#8211;5 brain regions simultaneously, a first in non-invasive neuromodulation. The technique uses hologram-like ultrasound waves at lower intensity to safely activate or inhibit brain networks, while simultaneously visualizing their activity. Early animal tests show potential for treating Alzheimer&#8217;s, epilepsy, tremor, Parkinson&#8217;s, depression, and stroke recovery. <a href="https://neurosciencenews.com/ultrasound-brain-system-neurotech-29763/">(Read more)</a></p></li><li><p><strong>Real-Time Optical Tracking of Alzheimer&#8217;s Progression:</strong> Researchers from the University of Strathclyde, IIT, Padua, and DTU have developed an optical fibre&#8211;based technique that can monitor Alzheimer&#8217;s progression in real time as animals move naturally. Using fluorescent dyes that bind to amyloid plaques, the system shines light into the brain to measure plaque build-up dynamically across regions, eliminating the need for anaesthesia or fixed imaging. The method could accelerate drug testing and enable longitudinal brain monitoring in neurodegenerative research. <a href="https://agetechworld.co.uk/news/new-technique-can-track-alzheimers-in-real-time/">(Read More)</a></p></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>Australia&#8217;s Human Rights Commission Calls for Neurotech Safeguards:</strong> The Australian Human Rights Commission has released Peace of Mind: Navigating the Ethical Frontiers of Neurotechnology and Human Rights, calling for urgent reforms to protect neural data privacy, mental freedom, and workplace rights. The report urges &#8220;human rights by design&#8221; principles, explicit protection for brain data, bans on coercive neuromarketing, and strict oversight of workplace and military neurotech use. <a href="https://humanrights.gov.au/about/news/media-releases/cutting-edge-report-calls-urgent-action-neurotechnology-and-human-rights">(Read more)</a></p></li><li><p><strong>Vision Restored in AMD Patients Using Retinal BCI:</strong> A New England Journal of Medicine study from Science Corp. demonstrates that the Prima retinal implant can restore central vision in patients with geographic atrophy from age-related macular degeneration. The photovoltaic implant, paired with infrared-projection glasses, activates the retina directly when photoreceptors are lost. Led by Dr. Frank Holz and Science Corp. founder Max Hodak, the study marks a milestone in translating brain&#8211;computer interface technology into clinical ophthalmology. <a href="https://news.gsmedtech.com/science-corp-reports-positive-results-for-vision-restoring-bci/?utm_campaign=Guided%20Solutions%20-%20Social&amp;utm_content=457451762&amp;utm_medium=social&amp;utm_source=twitter&amp;hss_channel=tw-493313500">(Read more)</a></p></li><li><p><strong>Music and Nature Work in Harmony to Ease Stress and Lift Mood: </strong>A review from George Mason University shows that combining music and nature, like listening to songs outdoors or singing while gardening, can significantly reduce stress, anxiety, and depression. The dual-sensory approach engages multiple senses, improving emotional well-being and fostering creativity. Researchers highlight its accessibility for trauma survivors, veterans, and older adults with dementia, presenting a low-cost, non-pharmacological path to better mental health. <a href="https://neurosciencenews.com/neuroscience-topics/featured/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>Global Congress on Neuroscience and Psychiatry</strong><br>&#128197; Date: March 09&#8211;10, 2026 | &#128205; Singapore City, Singapore</p><p><strong>Why Attend the Event?</strong><br>Join neuroscientists, psychiatrists, engineers, and innovators for <em>NeuroCon 2026</em>, themed &#8220;Mind, Machine &amp; Medicine: The Future of Neuropsychiatry.&#8221; The congress explores how neurotechnologies, ranging from BCIs and neural implants to AI-driven brain mapping are redefining brain and mental health care. Sessions include discussions on neuroplasticity, computational psychiatry, digital twins, and ethical frontiers in neurotech.</p><p><strong>Link to register: </strong><a href="https://www.scimeethub.com/neuroscience">Register here</a></p></li><li><p>Satellite Workshop: High-Performance BCIs in Action<br>&#128197; Date: November 15, 2025 |&#128205;San Diego, USA</p><p><strong>Why Attend the Event?</strong><br>Join researchers, clinicians, and neuroengineers at this <em>Neuroscience 2025</em> satellite workshop to experience the latest in invasive and non-invasive brain&#8211;computer interface systems for rehabilitation and brain assessment. Explore next-generation EEG hardware, including wet, dry, hybrid, and TMS-compatible electrodes, along with ultra-high-density grids, wireless EEG, and advanced signal processing algorithms. The session will also feature live demos from the BCI Hackathon and BCI Award series.</p><p><strong>Link to register:</strong> <a href="https://www.gtec.at/event/bci-workshop-sfn-2025/">Register here</a></p><p></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: CoMind &#8211; Non-Invasive Brain Monitoring for Critical Care</strong></p><p>In this edition&#8217;s case study spotlight, we feature <strong>CoMind</strong>, a London-based neurotechnology company redefining how the brain is measured and treated across the care continuum. CoMind is developing <strong>CoMind One</strong>, a non-invasive brain-monitoring device that uses advanced infrared light to measure cerebral blood flow, autoregulation, and intracranial pressure in real time, offering a safer alternative to invasive procedures that require drilling into the skull. With over <strong>$102.5 million</strong> in total funding and multiple clinical trials underway, CoMind is advancing toward regulatory approval and commercialization by 2027.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!3jya!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!3jya!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 424w, https://substackcdn.com/image/fetch/$s_!3jya!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 848w, https://substackcdn.com/image/fetch/$s_!3jya!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 1272w, https://substackcdn.com/image/fetch/$s_!3jya!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!3jya!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png" width="1024" height="576" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:576,&quot;width&quot;:1024,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:null,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!3jya!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 424w, https://substackcdn.com/image/fetch/$s_!3jya!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 848w, https://substackcdn.com/image/fetch/$s_!3jya!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 1272w, https://substackcdn.com/image/fetch/$s_!3jya!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F09e510da-ad1e-419c-af27-7b9d7183abdc_1024x576.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Overview:</strong><br>CoMind One combines an adhesive forehead sensor with interferometric optical sensing to track cerebral blood flow and metabolic balance in the brain. Using laser light to measure &#8220;time-of-flight&#8221; signals through tissue, the system can estimate intracranial pressure non-invasively and display results in real time on a dedicated monitor or integrated hospital systems. Clinical validation is underway through the CoMind Early Feasibility Study (NCT06368648) and DuoSense Trial, aimed at proving non-invasive measurement of cerebral pressure and blood flow, key steps toward FDA clearance and adoption in ICUs, operating rooms, and neurocritical care.</p><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Critical-Care Brain Monitoring:</strong> Provides real-time data on cerebral blood flow and pressure, helping clinicians detect hypoperfusion and autoregulatory failure early.</p></li><li><p><strong>Cardiac &amp; Vascular Surgery:</strong> Monitors cerebral physiology during complex procedures to reduce the risk of ischemic complications.</p></li><li><p><strong>Traumatic Brain Injury (TBI):</strong> Enables safer monitoring of intracranial pressure without surgical intervention.</p></li><li><p><strong>AI-Driven Insights:</strong> CoVision, CoMind&#8217;s analytics platform, uses these signals to generate predictive insights that support proactive interventions.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Neurosurgeons, anesthesiologists, and intensivists managing neuro-critical patients</p></li><li><p>Hospitals seeking next-generation brain-monitoring systems</p></li><li><p>Clinical researchers in neurophysiology and biomedical optics</p></li></ul><p><strong>Key Partnerships:</strong><br>CoMind collaborates with leading clinicians and research institutions across the U.S. and U.K., supported by an independent Clinical Advisory Board and other experts in neurology, neurosurgery, and critical care.</p><p><strong>Leadership Team:</strong><br>CoMind is led by James Dacombe (Founder &amp; CEO) and Simon Morling (CTO), supported by a multidisciplinary team bringing together deep expertise across neuroscience, optics, AI, and clinical translation.</p><p>For more information about CoMind and its next-generation neuromonitoring platform, visit <a href="https://www.comind.io">comind.io</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p><a href="https://www.nexstem.ai/">Nexstem</a> is looking to partner with universities, labs, and researchers exploring EEG, EMG, or multi-biosignal systems. If your work bridges neuroscience and engineering, we&#8217;d love to collaborate on the next breakthrough. Reach out: <a href="mailto:collaboration@nexstem.ai">collaboration@nexstem.ai</a></p></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.</em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p><p></p></div><p></p>]]></content:encoded></item><item><title><![CDATA[Reality Is a Controlled Hallucination: Inside the Predictive Brain- Issue #30]]></title><description><![CDATA[&#8220;Perception is not something that happens to us, or in us.]]></description><link>https://neurotechpulse.substack.com/p/reality-is-a-controlled-hallucination</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/reality-is-a-controlled-hallucination</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Wed, 15 Oct 2025 15:02:54 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/f90c4127-50f1-4b95-8b4d-443d88fc20da_1536x1024.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><em>&#8220;Perception is not something that happens to us, or in us. It is something we do.&#8221;</em>-Alva No&#235;, <em>Action in Perception</em> (2004)</p><p>Every moment, your brain is not merely receiving the world, it is <strong>predicting it</strong>.<br>From the color of the wall to the weight of a cup, every perception begins as a hypothesis, tested and updated in real time. This framework, known as <strong>predictive coding</strong> or <strong>predictive processing</strong> has become one of the most influential theories in modern neuroscience (<a href="https://www.nature.com/articles/nrn2787">Friston, 2010</a>; <a href="https://www.cambridge.org/core/journals/behavioral-and-brain-sciences/article/whatever-next-predictive-brains-situated-agents-and-the-future-of-cognitive-science/33542C736E17E3D1D44E8D03BE5F4CD9">Clark, 2013</a>).</p><p>At its core, predictive coding suggests that the brain is a <em>generative model</em>, a self-updating simulation that continuously forecasts incoming sensory inputs and adjusts when its expectations don&#8217;t match reality. The result? What we experience as &#8220;perception&#8221; is the brain&#8217;s <strong>best guess</strong> of the world, continuously corrected by sensory evidence.</p><p>In short: perception is prediction constrained by sensation.</p><p>This framework extends beyond vision or hearing. It explains how we move, feel emotions, make decisions, and even experience a stable sense of self.</p><div><hr></div><h2>The Neuroscience of Prediction and Error</h2><p><strong>Cortical Hierarchies and Feedback Loops</strong></p><p>Predictive coding proposes a hierarchical structure in the cortex. Higher regions generate <strong>top-down predictions</strong>, while lower regions send back <strong>bottom-up prediction errors</strong>, the difference between expected and actual input (<a href="https://www.nature.com/articles/nn0199_79">Rao &amp; Ballard, 1999</a>).</p><p>Every cortical level communicates in this loop. When errors are small, the brain&#8217;s model is accurate. When large, it updates its beliefs. Over time, this loop allows the brain to minimize surprise, what Karl Friston calls the <strong>Free Energy Principle</strong> <a href="https://www.nature.com/articles/nrn2787">(Friston, 2010).</a></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!lwUe!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!lwUe!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 424w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 848w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!lwUe!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg" width="538" height="454.8612637362637" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:1231,&quot;width&quot;:1456,&quot;resizeWidth&quot;:538,&quot;bytes&quot;:237248,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/jpeg&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://nexstem.substack.com/i/176024032?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!lwUe!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 424w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 848w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!lwUe!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F9e44335d-440c-4723-b116-1fa72f7a2f83_1540x1302.jpeg 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a><figcaption class="image-caption"><strong>Image credits: Karl Friston</strong></figcaption></figure></div><p><strong>Experimental Evidence: The Brain&#8217;s Prediction Errors</strong></p><p>Evidence for predictive coding comes from multiple well-established paradigms:</p><ul><li><p><strong>Mismatch Negativity (MMN):</strong> EEG studies show a negative deflection around 100&#8211;250 ms after an unexpected auditory event, the brain&#8217;s automatic detection of a violated sensory regularity <a href="https://www.sciencedirect.com/science/article/abs/pii/S1388245707001939?via%3Dihub">(N&#228;&#228;t&#228;nen et al., 2007)</a>. In predictive-coding terms, the MMN represents a prediction-error signal, generated when actual input deviates from the brain&#8217;s statistical model of the environment.</p></li><li><p><strong>Error-Related Negativity (ERN):</strong> A rapid negative EEG deflection originating in the anterior cingulate cortex (ACC), the ERN peaks &#8776; 50&#8211;150 ms after an error, often before conscious awareness (<a href="https://journals.sagepub.com/doi/10.1111/j.1467-9280.1993.tb00586.x">Gehring et al., 1993</a>). It marks the brain&#8217;s automatic performance-monitoring signal, interpreted as either a negative prediction error (&#8220;worse than expected&#8221;) or conflict between competing actions, prompting swift behavioral correction.</p></li><li><p><strong>Perceptual Illusions:</strong> The McGurk effect, hollow-mask illusion, and bistable figures demonstrate that perception follows internal models more than raw input <a href="https://www.sciencedirect.com/science/article/abs/pii/S0010027708001327?via%3Dihub">(Hohwy et al., 2008)</a>. When data are ambiguous, the brain privileges <em>priors</em> &#8212; top-down expectations, over conflicting sensory evidence.</p></li><li><p><strong>Sensory Attenuation:</strong> During self-generated movement, predicted sensations are suppressed, explaining why you can&#8217;t tickle yourself <a href="https://journals.lww.com/neuroreport/abstract/2000/08030/why_can_t_you_tickle_yourself_.2.aspx">(Blakemore et al., 2000)</a>. This reflects a forward model that subtracts expected sensory consequences from self-produced actions.</p></li></ul><p>Together, these findings reveal a simple truth: the brain does not passively receive the world, it continuously <em>predicts</em> it, corrects itself, and thereby constructs the stable experience of reality.</p><div><hr></div><h2>Beyond Sensation: Prediction in Emotion, Action, and Self</h2><p>Predictive processing extends deep into interoception, the brain&#8217;s monitoring of internal bodily states.</p><ul><li><p><strong>Emotion as Prediction: </strong>According to Lisa Feldman Barrett&#8217;s Theory of Constructed Emotion, emotions are the brain&#8217;s predictions about bodily states, not mere reactions <a href="https://pmc.ncbi.nlm.nih.gov/articles/PMC5390700/">(Barrett, 2017)</a>. Anxiety, for example, emerges when threat priors are overweighted, the brain predicts danger even in ambiguous contexts.</p></li><li><p><strong>Action as Prediction: </strong>Motor control itself is predictive. The motor cortex sends efference copies of movement commands to predict the resulting sensations (<a href="https://www.science.org/doi/10.1126/science.7569931">Wolpert et al., 1995</a>). Smooth motion depends on how well these predictions match sensory feedback.</p></li><li><p><strong>The Self as a Model: </strong>Our sense of self may be the most enduring prediction of all, a hierarchical model integrating interoceptive, proprioceptive, and exteroceptive data (Seth, 2021). When predictions fail catastrophically, experiences like depersonalization or out-of-body perception can emerge <a href="https://www.frontiersin.org/journals/psychology/articles/10.3389/fpsyg.2011.00395/full">(Seth et al., 2012).</a></p><p></p></li></ul><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!UzjH!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!UzjH!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg 424w, https://substackcdn.com/image/fetch/$s_!UzjH!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg 848w, https://substackcdn.com/image/fetch/$s_!UzjH!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!UzjH!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!UzjH!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fe37f37b9-865a-4047-b017-3a9cee8f11e2_760x717.jpeg" width="582" height="549.0710526315789" 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class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a><figcaption class="image-caption">Image credits: PMC</figcaption></figure></div><div><hr></div><h2>The Predictive Brain Meets Neurotechnology</h2><p>Predictive coding provides a powerful lens for designing <strong>next-generation BCIs</strong> &#8212; systems that interpret, anticipate, and adapt to neural states rather than merely reading signals.</p><ul><li><p><strong>Detecting Prediction Errors: </strong>EEG markers such as MMN and ERN allow real-time detection of cognitive mismatch or performance errors. BCIs leveraging these signatures can adapt interfaces dynamically, adjusting stimuli, difficulty, or feedback loops <a href="https://pubmed.ncbi.nlm.nih.gov/22336293/">(Blankertz et al., 2012).</a></p></li><li><p><strong>Active Inference Interfaces: </strong>In active inference, the brain acts to minimize prediction error, by changing the world or its own model <a href="https://direct.mit.edu/neco/article-abstract/29/1/1/8207/Active-Inference-A-Process-Theory?redirectedFrom=fulltext">(Friston et al., 2017)</a>. BCIs can mirror this principle: instead of passively decoding, they probe the user (through feedback or stimulation) to reduce uncertainty.</p></li><li><p><strong>Adaptive Motor and Cognitive Systems: </strong>Closed-loop neuroprosthetics already exploit predictive mechanisms. Motor-imagery BCIs predict intended movement before muscle activation, while adaptive EEG systems detect lapses in attention or fatigue seconds before performance declines .</p></li></ul><div><hr></div><h2>Parallels with Artificial Intelligence</h2><p>Modern AI shares the same core logic: prediction. Large language models, predictive vision systems, and generative agents all minimize &#8220;loss&#8221; &#8212; the digital analogue of prediction error.</p><p>But while current AI lacks embodied feedback, <strong>biosignal-informed AI</strong> closes that loop. When BCIs feed human-state data (EEG, EMG, HRV) into adaptive algorithms, machines gain priors shaped by biology. This convergence of <strong>predictive coding and embodied AI</strong> may define the next era of human&#8211;machine symbiosis</p><div><hr></div><h2>Ethical and Philosophical Considerations</h2><p>Manipulating priors is powerful and risky. If perception is a controlled hallucination, technology that alters priors effectively alters reality.</p><ul><li><p><strong>Autonomy:</strong> Adaptive interfaces must preserve voluntary control, not override it.</p></li><li><p><strong>Consent:</strong> Emotional or perceptual nudging requires explicit awareness and opt-in.</p></li><li><p><strong>Bias:</strong> Predictive systems trained on limited priors risk amplifying societal and cognitive bias.</p></li></ul><p>Neurotechnology must therefore operate with what philosophers call <strong>epistemic humility</strong>, awareness of the limits of what can or should be changed in the human predictive loop.</p><div><hr></div><h2>Closing Thought</h2><p>The brain is not a camera capturing the world; it is a composer conducting a symphony of expectation and error.</p><p>To build truly human-aware machines, we must learn not only to read the brain&#8217;s signals but to understand its predictions.</p><div><hr></div><h3><em><strong>Call for Research Collaborations: EEG, EMG &amp; Beyond</strong></em></h3><blockquote><p><a href="https://www.nexstem.ai/">Nexstem</a> is looking to partner with universities, labs, and researchers exploring EEG, EMG, or multi-biosignal systems. If your work bridges neuroscience and engineering, we&#8217;d love to collaborate on the next breakthrough. Reach out: <a href="mailto:collaboration@nexstem.ai">collaboration@nexstem.ai</a></p></blockquote><div class="pullquote"><p><em><strong>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br><br><br></strong>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div><p></p>]]></content:encoded></item><item><title><![CDATA[BCI Advances, Apple Health Stack & Neuro Diagnostics: What’s Next – Issue #29]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #29! In this edition, we explore the latest advancements shaping neurotechnology.]]></description><link>https://neurotechpulse.substack.com/p/bci-advances-apple-health-stack-and</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/bci-advances-apple-health-stack-and</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Tue, 30 Sep 2025 15:01:21 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/f5b81961-601d-40df-88b9-de5228a6b919_960x791.webp" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #29!</strong> In this edition, we explore the latest advancements shaping neurotechnology<strong>.</strong> <br>From Alterego&#8217;s Silent Sense headset and Neuralink&#8217;s inner-speech trial to Oxford&#8217;s focused-ultrasound helmet and Sense Neuro&#8217;s rapid stroke/TBI detector, the field is moving from lab proofs to real-world deployment. Funding highlights include Galvanize Therapeutics, Noctrix Health, Optain Health, and Boomerang Medical, fueling growth across neuroimmune therapy, sleep and RLS care, oculomics, and GI neuromodulation. This issue&#8217;s Case Study Spotlight turns to NeuroBionics, whose hair-thin endovascular fibers aim to deliver deep and peripheral neuromodulation without open surgery. We also dive into China&#8217;s first BCI device standard, Apple&#8217;s expanding health stack across AirPods and Watch, and Meta&#8217;s latest neural input and display updates.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Alterego Demos &#8216;Near-Telepathic&#8217; Wearable for Silent Communication:</strong> The <em>Silent Sense</em> headset detects subtle signals to enable thought-speed typing, silent conversations, hands-free device control, and real-time translation, positioning Alterego as a non-invasive rival to implants. <a href="https://www.tomshardware.com/peripherals/wearable-tech/alterego-demoes-worlds-first-near-telepathic-wearable-that-enables-typing-at-the-speed-of-thought-other-abilities-device-said-to-enable-silent-communication-with-others-control-devices-hands-free-and-restore-speech-for-impaired?utm_source=chatgpt.com">(Read more)</a></p></li><li><p><strong>Apple Pushes Health Stack Across AirPods &amp; Watch:</strong> AirPods Pro 3 add ear-based heart-rate tracking and improved hearing assistance, while Apple Watch Series 11/Ultra 3 introduce hypertension pattern alerts (FDA clearance pending) plus a new 100-point sleep score. Together, Apple&#8217;s wearables tighten a consumer-scale biometrics loop for continuous cardio and sleep monitoring. <a href="https://finance.yahoo.com/news/apple-makes-its-biggest-health-push-yet-with-latest-airpods-and-apple-watches-190754498.html?guccounter=2&amp;guce_referrer=aHR0cHM6Ly93d3cubGlua2VkaW4uY29tLw&amp;guce_referrer_sig=AQAAAMLqjOoCKS3ILDKUqALe4qg1FgFP_sMADSMmd_AH3kLQzUB2l_jTKYxXPrUxYBZ6xkaqmGEQlAl1kn907BiF1qcCbYYSTWnkduzAmNPmenOggDPH6B-17_okbIdqy_u9K_E6VPAubqi-RE1tc96SHJxRoWswr1V_xItYUpw1h8DS">(Read more)</a></p></li><li><p><strong>Sense Neuro Submits FDA Application for NeuroHawk Stroke &amp; TBI Detector:</strong> The radio-frequency-based system identifies brain bleeds, stroke, and traumatic brain injury in under four minutes at the point of care, from ambulances to ICUs. With reusable control units and disposable headsets, NeuroHawk aims to deliver rapid, scalable neurocritical diagnostics beyond CT and MRI. <a href="https://senseneuro.com/sense-neuro-diagnostics-submits-fda-application-for-neurohawk-a-breakthrough-in-rapid-stroke-and-tbi-detection/">(Read more)</a></p></li><li><p><strong>Neuralink Launches &#8216;Blindsight Echo&#8217; Inner Speech Trial:</strong> Neuralink has received FDA clearance to begin a 20-person feasibility study aimed at decoding inner speech into text with its N1 implant, targeting speeds of 100 words per minute at ~80% accuracy. If successful, the trial could restore communication for ALS and stroke patients and redefine human&#8211;AI interaction through direct thought-to-text systems. <a href="https://futurefintechnews.com/neuralinks-blindsight-echo-the-future-of-communication-for-everyone/">(Read more)</a></p></li><li><p><strong>INBRAIN Neuroelectronics Partners with Mayo Clinic to Advance Graphene BCI:</strong> The ICN2/ICREA/CSIC spin-off will co-develop and clinically evaluate graphene-based brain-computer interfaces for neurological disorders; first-in-human safety data from Manchester trials reported positive results, with U.S. expansion planned in Boston and on the West Coast. <a href="https://icn2.cat/en/news/5509-inbrain-neuroelectronics-partners-with-mayo-clinic-to-advance-its-graphene-based-medical-technology">(Read more)</a></p></li><li><p><strong>Medtronic&#8217;s Altaviva&#8482; gets FDA approval for urge urinary incontinence (UUI):</strong> A minimally invasive implantable tibial neuromodulation device placed near the ankle; activates at discharge, is MRI-compatible, and targets ~16M U.S. UUI patients with a ~15-year battery life. <a href="https://news.medtronic.com/2025-09-19-Medtronic-secures-FDA-approval-for-the-Altaviva-TM-device,-a-simple-experience-for-treating-urge-urinary-incontinence">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Galvanize Therapeutics Raises $100M Series C to Scale PEF Oncology &amp; COPD Therapies: </strong>Oversubscribed round led by Sofinnova Partners; funds expand Aliya&#174; for solid tumors, RheOx&#174; for chronic bronchitis, and support commercialization. <a href="https://www.prnewswire.com/news-releases/galvanize-therapeutics-raises-100-million-in-oversubscribed-series-c-financing-to-transform-the-treatment-of-cancer-and-chronic-lung-disease-302544329.html">(Read more)</a></p></li><li><p><strong>Noctrix Health Raises $33.5M (Debt + Equity) to Accelerate U.S. Launch of Nidra&#174; TOMAC for RLS:</strong> New capital from Blue Venture Fund, Sandbox Clinical Ventures, and Bridge Bank supports commercialization and clinical adoption. <a href="https://www.accessnewswire.com/newsroom/en/healthcare-and-pharmaceutical/noctrix-health-raises-33.5m-and-expands-leadership-team-to-accelerate-1066896?">(Read more)</a></p></li><li><p><strong>Optain Health Raises $26M Series A to Scale AI + Robotic Retinal Imaging for Early Disease Detection:</strong> Led by Insight Partners with major U.S. health systems; funds U.S. deployments, teleophthalmology grading, and global expansion of its oculomics platform. <a href="https://www.citybiz.co/article/742938/optain-health-closes-26-million-series-a/">(Read more)</a></p></li><li><p><strong>Boomerang Medical Raises $20M Series B to Advance Pivotal UC Neuromodulation</strong> <strong>Trial</strong>: Co-led by Arboretum Ventures and Hatteras, the round funds BOOM-IBD2, a U.S.-enrolling pivotal study of implantable sacral neuromodulation following a 40-patient feasibility cohort. <a href="https://www.businesswire.com/news/home/20250904154790/en/Boomerang-Medical-Raises-%2420-Million-Series-B-to-Advance-Pivotal-Trial-of-Neuromodulation-in-Inflammatory-Bowel-Disease">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>India&#8217;s 2nm Push Gains a Bengaluru Anchor: </strong>ARM Embedded Technologies will design 2nm-class chips at its new Bengaluru hub, deepening India&#8217;s advanced-node footprint under Semiconductor Mission 2.0 and a $1B Deep Tech Fund. With a rapidly localizing supply chain (fabs/ATMP, specialty chemicals, gases), this strengthens on-device AI for neurotech, lower latency, longer battery life, and a path to next-gen neural signal-processing silicon for wearables and BCIs<strong>.</strong><a href="https://www.cnbctv18.com/business/arm-embedded-technologies-to-design-advanced-2nm-chips-at-new-bengaluru-facility-it-minister-ashwini-vaishnaw-19677090.htm">(Read more)</a></p></li><li><p><strong>China Issues First BCI Medical Device Standard:</strong> The National Medical Products Administration has released the <em>Terminology of Medical Devices Using Brain-Computer Interface Technology</em>, the country&#8217;s first BCI medical device standard, effective January 1, 2026. The move underpins China&#8217;s broader roadmap to achieve breakthroughs in electrodes, chips, and devices by 2027 and build globally competitive BCI enterprises and clusters by 2030. <a href="https://technode.com/2025/09/17/china-issues-first-industry-standard-for-brain-computer-interface-medical-devices/">(Read more)</a></p></li><li><p><strong>Meta Launches Ray-Ban Display Glasses and Neural Band Interface:</strong> Meta has introduced AI glasses featuring a high-resolution monocular display,  paired with a wrist-worn Neural Band that enables silent control via subtle neural/muscle signals. Live demos demonstrated ~30 words per minute &#8220;air-typing,&#8221; real-time subtitles/translation, and media control. The $799 set ships on September 30, alongside updated Ray-Ban Meta and Oakley Vanguard models, with Horizon Studio/Engine framing glasses and neural input as the next platform. <a href="https://www.youtube.com/live/uYbKKxQodwM?feature=shared">(Watch)</a></p><div id="youtube2-uYbKKxQodwM" class="youtube-wrap" data-attrs="{&quot;videoId&quot;:&quot;uYbKKxQodwM&quot;,&quot;startTime&quot;:null,&quot;endTime&quot;:null}" data-component-name="Youtube2ToDOM"><div class="youtube-inner"><iframe src="https://www.youtube-nocookie.com/embed/uYbKKxQodwM?rel=0&amp;autoplay=0&amp;showinfo=0&amp;enablejsapi=0" frameborder="0" loading="lazy" gesture="media" allow="autoplay; fullscreen" allowautoplay="true" allowfullscreen="true" width="728" height="409"></iframe></div></div></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>AI Co-Pilot Supercharges Non-Invasive BCI</strong>: UCLA engineers paired a wearable EEG with a camera-guided AI &#8220;co-pilot&#8221; that infers user intent in real time to control a cursor or robotic arm. In tests, tasks were completed significantly faster; a paralyzed participant finished a 4-block pick-and-place in ~6.5 minutes with AI but couldn&#8217;t without it, pointing to scalable shared-autonomy assistive BCIs. <a href="https://samueli.ucla.edu/ai-co-pilot-boosts-noninvasive-brain-computer-interface-by-interpreting-user-intent/">(Read more)</a></p></li><li><p><strong>Dynamic &#8216;NeuroWorm&#8217; Soft Electrode Enables Steerable, Long-Term Neural Interfaces: </strong>Shenzhen Institute of Advanced Technology reports a 200-&#181;m, magnetically guided microfibre with up to 60 channels that can be repositioned in vivo, recording stable EMG for 43+ weeks with ~23-&#181;m fibrosis (vs ~451-&#181;m for rigid electrodes) and capturing high-quality signals along cortex-to-subcortex trajectories. If translated to humans, steerable low-scarring electrodes could cut revision surgeries, expand multisite monitoring/stimulation for BCIs, prosthetics, and epilepsy mapping, and make chronic implants more durable. <a href="https://bioengineer.org/groundbreaking-development-researchers-unveil-the-first-dynamic-soft-electrode-for-brain-computer-interfaces/">(Read more)</a></p></li><li><p><strong>A Helmet That Could Treat the Brain Without Surgery:</strong> An Oxford-led team showcased a 256-element focused-ultrasound helmet that non-invasively modulated the lateral geniculate nucleus in volunteers, driving visual-cortex changes that persisted for ~40 minutes. By precisely tuning deep circuits without surgery, this platform points to a potential DBS alternative for disorders like Parkinson&#8217;s, depression, and epilepsy, and a path to wearable, clinic-friendly neuromodulation via the NeuroHarmonics spinout. <a href="https://drugtodayonline.com/medical-news/news-topic/24661-a-helmet-that-could">(Read more)</a></p></li><li><p><strong>Decoding Inner Speech with a Mental Passcode:</strong> Stanford researchers translated silent inner monologue to speech in real time from implanted microelectrode arrays, reaching up to 74% accuracy and adding a user-controlled &#8220;neural password&#8221; to prevent unintended decoding. Tested in BrainGate2 participants with ALS, the approach lowers effort compared to attempted-speech BCIs and worked even when articulation wasn&#8217;t possible. If validated and scaled to larger vocabularies, inner-speech BCIs could restore faster, more natural communication while preserving mental privacy by design. <a href="https://singularityhub.com/2025/08/18/new-brain-implant-decodes-inner-monologue-of-people-with-paralysis/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>MiNT UK 2025: Neurotechnology in Practice, Measuring Impact on Patient </strong><br>&#128197; Date: October 16, 2025 | CentrEd at ExCeL London</p><p><strong>Why Attend the Event?</strong><br>Join clinicians, researchers, engineers, and device developers for a full-day program on how neurotechnology is transforming clinical practice and patient outcomes. Expect expert panels, live demos, hands-on workshops, a MiNT Surgery lunch-and-learn, fast-forward posters with awards, and a strong exhibitor/innovator showcase with plenty of networking.</p><p><strong>Link to register:</strong> <a href="https://themintacademy.co.uk/mint-uk-2025">Register here</a></p></li><li><p><strong>Neuroscience 2025 (Society for Neuroscience Annual Meeting)</strong><br>&#128197; Date: November 15&#8211;19, 2025 | San Diego Convention Center, San Diego, CA</p><p><strong>Why Attend the Event?</strong><br>Join global leaders in neuroscience for five days of high-impact posters, symposia, tool demos, and networking, spanning circuits, computation, neuroAI, and BCIs. Ideal for presenting work, finding collaborators, and scouting next-gen methods.</p><p>Link to register: <a href="https://www.sfn.org/meetings/neuroscience-2025/registration">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; Case Study Spotlight: NeuroBionics &#8211; evStim Endovascular Neuromodulation</p><p>In this edition&#8217;s case study spotlight, we highlight <strong>NeuroBionics</strong>, a Boston-based startup translating hair-thin, flexible bioelectronic fibers into a minimally invasive neuromodulation platform. The company&#8217;s evStim device is designed to deliver deep and peripheral neuromodulation through blood vessels aiming to broaden access to therapies like DBS without open surgery. With founders from MIT&#8217;s Anikeeva Lab, NeuroBionics positions evStim as a therapeutic BCI platform for CNS and PNS targets.</p><p><strong>Overview:</strong> evStim is a microscale bioelectric fiber coiled into a helical anchor and delivered endovascularly via a stent-like catheter procedure. Once positioned, it provides precise stimulation through the vessel wall to target tissue. The platform emphasizes biocompatibility/hemocompatibility, multi-electrode capability (record and stimulate), and tunable geometry to fit small and large vessels. In parallel, the IO fiber research tool combines electrical and optogenetic stimulation/recording with a fluidic channel in a single MRI-compatible device.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!UNVK!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!UNVK!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 424w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 848w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 1272w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!UNVK!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp" width="1456" height="765" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/b9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:765,&quot;width&quot;:1456,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:404784,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/webp&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://nexstem.substack.com/i/164988437?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!UNVK!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 424w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 848w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 1272w, https://substackcdn.com/image/fetch/$s_!UNVK!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fb9931fcf-beaa-4239-bafe-b498090646e6_2500x1313.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Endovascular DBS without craniotomy:</strong> Potentially expand access for Parkinson&#8217;s disease, essential tremor, epilepsy, and depression.</p></li><li><p><strong>Peripheral neuromodulation via vasculature:</strong> Access splenic/vagus (inflammation, sympathetic tone), hypoglossal (OSA), and sacral (incontinence) targets without open cut-down surgery.</p></li><li><p><strong>Bidirectional platform:</strong> Multi-electrode design supports recording and stimulation today, with electrical/optical/fluidic experimentation via the IO fiber.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Patients considering neuromodulation for movement disorders, epilepsy, OSA, incontinence, or neuroimmune indications</p></li><li><p>Neurosurgeons, interventional neurologists/neurointerventionalists, and functional neuromodulation teams</p></li><li><p>Research groups needing compact, MRI-compatible, multimodal interfaces for CNS/PNS studies</p></li></ul><p><strong>Key Partnerships:</strong> <br>NeuroBionics is working with leading academic labs and clinical advisors to advance early-feasibility studies, while building manufacturing and testing capabilities to accelerate translation.</p><p><strong>Leadership Team:</strong> <br>NeuroBionics is led by bioelectronic materials innovators MJ Antonini, PhD (Founder &amp; CEO) and Nicolette Driscoll, PhD (Founder &amp; CTO), supported by a multidisciplinary team with expertise spanning endovascular neuromodulation, soft bioelectronics, device biocompatibility/hemocompatibility, and clinical translation.</p><p>For more information about NeuroBionics and evStim, visit <a href="https://neurobionics.io/">neurobionics.io.</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.</em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em><br></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div><h1></h1><p></p>]]></content:encoded></item><item><title><![CDATA[Decoding Emotion: The Neuroscience of Feeling and Affective Computing – Issue #28]]></title><description><![CDATA[Your physiology always speaks first.]]></description><link>https://neurotechpulse.substack.com/p/decoding-emotion-the-neuroscience</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/decoding-emotion-the-neuroscience</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Tue, 16 Sep 2025 15:02:35 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/e95e768a-6ba3-43ee-9300-a9a93a927624_420x300.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>Your physiology always speaks first. Long before you admit to being nervous, your palms are already damp, your heart rate has accelerated, and your cortical rhythms have shifted. Decades of neuroscience and biotech research converge on one reliable truth: <strong>emotion is not abstract; it is embodied.</strong></p><p>For centuries, emotions were dismissed as irrational disturbances in the rational mind. Today, neuroscience tells a very different story. Emotions are integral to cognition and survival. They are fast, coordinated loops between brain and body that shape every decision we make. What is new and potentially transformative is that these loops can now be decoded, measured, and even influenced in real time.</p><div><hr></div><h2>The Brain&#8211;Body Circuit of Emotion</h2><p>Emotions emerge from the interplay of multiple neural systems. The amygdala detects threats and rewards within milliseconds, well before conscious awareness. The prefrontal cortex then evaluates and regulates these raw signals, determining whether to amplify or suppress them. The insula integrates interoceptive signals, the tightness in your stomach or the catch in your breath, linking internal physiology with subjective feeling.</p><p>At the same time, neurochemistry orchestrates emotional tone. Dopamine encodes motivation and reward, serotonin stabilizes mood, and norepinephrine heightens vigilance. None of these processes exists in isolation. Together, they constitute what Antonio Damasio has described as the &#8220;<em>feeling brain</em>&#8221;: a dynamic integration of cognition and physiology.</p><div><hr></div><h2>Biosignals That Reveal Feeling</h2><p>What makes emotions scientifically accessible is that they are not confined to neural activity; they leave distinct traces across the body.</p><p>Electroencephalography (EEG) captures the brain&#8217;s fast electrical signatures. Frontal alpha asymmetry, for instance, has long been used as an index of emotional valence, left-frontal activity correlating with approach-related positive affect, right-frontal with withdrawal or fear <a href="https://www.sciencedirect.com/science/article/abs/pii/S0301051104000389?via%3Dihub">(Davidson, 2004).</a> Transient increases in theta and gamma oscillations reflect heightened arousal and attentional engagement (<a href="https://www.sciencedirect.com/science/article/abs/pii/S0031938409001449?via%3Dihub">Balconi &amp; Pozzoli, 2009).</a></p><p>Heart rate variability (HRV) reflects the balance of sympathetic and parasympathetic control. High HRV indicates adaptive regulation and emotional flexibility, whereas persistently low HRV is associated with stress, anxiety, and vulnerability to depression <a href="https://pubmed.ncbi.nlm.nih.gov/22178086/">(Thayer et al., 2012)</a>. Electrodermal activity (EDA), the subtle changes in skin conductance caused by sweat gland activity, provides a robust marker of arousal, though it cannot discriminate between fear and excitement.</p><p>Even expression and voice, often considered superficial, carry valuable data. Facial electromyography (EMG) detects minute contractions in frown or smile muscles, while micro-variations in vocal pitch and prosody betray stress or joy that words alone may conceal.</p><p>No single channel provides a complete account. The most promising direction in affective neuroscience is multimodal fusion, integrating EEG, HRV, EDA, and expressive cues into coherent models of emotional state.</p><div><hr></div><h2>Mapping the Emotional Landscape</h2><p>Among the many frameworks for classifying emotions,<a href="https://pmc.ncbi.nlm.nih.gov/articles/PMC2367156/"> </a><strong><a href="https://pmc.ncbi.nlm.nih.gov/articles/PMC2367156/">Russell&#8217;s Circumplex Model</a></strong><a href="https://pmc.ncbi.nlm.nih.gov/articles/PMC2367156/"> </a>remains one of the most useful for connecting biosignals with subjective experience. Emotions can be positioned on two axes:</p><ul><li><p><strong>Valence</strong>: ranging from pleasant to unpleasant.</p></li><li><p><strong>Arousal</strong>: ranging from calm to excited.</p></li></ul><p>Fear and excitement both involve high arousal, but their valence diverges. This is why a racing heart and sweaty palms may be indistinguishable at the physiological level; only context or multimodal integration reveals whether they signal thrill or terror.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!idsh!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!idsh!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 424w, https://substackcdn.com/image/fetch/$s_!idsh!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 848w, https://substackcdn.com/image/fetch/$s_!idsh!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 1272w, https://substackcdn.com/image/fetch/$s_!idsh!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!idsh!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png" width="526" height="414.00824175824175" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:1146,&quot;width&quot;:1456,&quot;resizeWidth&quot;:526,&quot;bytes&quot;:null,&quot;alt&quot;:&quot;Russell's (1980) Circumplex Models &#8211; Psychology of Human ...&quot;,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="Russell's (1980) Circumplex Models &#8211; Psychology of Human ..." title="Russell's (1980) Circumplex Models &#8211; Psychology of Human ..." srcset="https://substackcdn.com/image/fetch/$s_!idsh!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 424w, https://substackcdn.com/image/fetch/$s_!idsh!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 848w, https://substackcdn.com/image/fetch/$s_!idsh!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 1272w, https://substackcdn.com/image/fetch/$s_!idsh!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F50e2c0f8-88b5-4c35-ba3d-bd079e470a02_1492x1174.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a><figcaption class="image-caption"><strong>Russell&#8217;s Circumplex Model</strong></figcaption></figure></div><div><hr></div><h2>From Laboratory to Real Life</h2><p>Early emotion research relied on highly controlled paradigms: presenting fearful faces, startling noises, or emotionally charged images. While scientifically rigorous, such experiments rarely capture the complexity of real-world experience.</p><p>In the last decade, however, emotion decoding has entered naturalistic contexts. fMRI studies show synchronized amygdala activation in audiences watching the same emotionally intense film <a href="https://www.pnas.org/doi/full/10.1073/pnas.1206095109">(Nummenmaa et al., 2012)</a>. Portable EEG has been deployed in classrooms to track stress during examinations <a href="https://www.frontiersin.org/journals/computational-neuroscience/articles/10.3389/fncom.2016.00101/full">(Minguill&#243;n et al., 2016)</a>. Virtual reality therapies now combine immersive scenarios with biosignal monitoring to treat phobias and PTSD. In the automotive industry, companies such as Affectiva and Smart Eye have developed systems that monitor driver fatigue, anger, or distraction in real time.</p><p>The lesson is clear: emotions can be measured not only in the lab but also in the wild, and doing so unlocks profound applications.</p><div><hr></div><h2>Affective Computing and Human-Aware Systems</h2><p>The concept of machines that can recognize and respond to human emotions, first articulated by Rosalind Picard in the 1990s, is no longer speculative. Affective computing has moved into practical deployment.</p><p>Wearables like the Empatica E4 wristband monitor HRV and EDA for stress and anxiety research. Adaptive learning systems use EEG and facial data to adjust lesson pace in response to frustration. Emotion-aware driver monitoring is being integrated into cars to reduce accident risk. Consumer devices from companies like Muse and Emotiv are experimenting with emotion-sensitive meditation and gaming.</p><p>This progression signals a broader shift: we are building machines that are not merely task-aware, but affect-aware.</p><div><hr></div><h2>Beyond Decoding: Toward Emotional Modulation</h2><p>If emotions can be measured, can they also be modulated? Research suggests they can. Neurofeedback allows individuals to consciously regulate their emotional states by observing real-time EEG or HRV patterns. Non-invasive brain stimulation techniques such as tDCS and tACS can alter prefrontal excitability, with evidence of reduced anxiety and enhanced attentional control</p><p>The frontier lies in closed-loop brain&#8211;computer interfaces. These systems detect emotional states in real time and deliver corrective feedback or stimulation automatically. Such technology raises the possibility of wearable systems that can pre-emptively counteract anxiety before a public presentation, or dampen stress reactivity in high-stakes environments like aviation or surgery.</p><div><hr></div><h2>Ethical Considerations</h2><p>The ability to decode and influence emotion carries obvious risks. Misclassification is a persistent challenge; concentration and anger may look identical in EEG signatures. Cultural variability further complicates interpretation: a scowl in one culture may reflect focus rather than hostility.</p><p>Privacy is perhaps the most pressing issue. Should employers or insurers have access to your stress levels? Should governments deploy affective computing in public surveillance? The potential for manipulation is equally concerning. Emotion-aware AI could be exploited to shape consumer behavior, political opinion, or even collective sentiment.</p><p>Without clear ethical frameworks and strict consent protocols, affective technologies risk eroding trust and autonomy.</p><div><hr></div><h2>Closing Thought: Emotion as Operating System</h2><p>In the early 2000s, it was fashionable to describe the brain as a computer. Two decades of research have shown this analogy is incomplete. If the brain is a computer, then emotion is not a software bug; it is the operating system.</p><p>Decoding emotions offers powerful insights into human behavior. But the true test of this technology will not be whether we can measure feelings; it will be whether we can do so responsibly, in ways that support human well-being rather than compromise it.</p><p>Emotion is not noise. It is a signal. And increasingly, our machines are learning how to listen.</p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 10,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></blockquote><div class="pullquote"><p><em><strong>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br><br><br><br></strong>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div><p></p><p></p>]]></content:encoded></item><item><title><![CDATA[Thought Control, Spinal Repair & China’s 2030 BCI Roadmap: The Next Frontier of Neurotech – Issue #27]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #27! In this edition, we explore the latest advancements shaping neurotechnology.]]></description><link>https://neurotechpulse.substack.com/p/thought-control-spinal-repair-and</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/thought-control-spinal-repair-and</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sun, 31 Aug 2025 15:03:19 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!mzRt!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p><strong>Welcome to Neurotech Pulse &#8211; Issue #27!</strong> In this edition, we explore the latest advancements shaping neurotechnology.<br>From Neuralink&#8217;s first patient update and Stanford&#8217;s inner-speech decoder to Israel&#8217;s upcoming spinal cord transplant, the boundaries of brain&#8211;machine medicine are expanding fast. Funding highlights include Neurovalens, Jocasta Neuroscience, and SetPoint Medical, fueling growth across non-invasive stimulation, longevity therapeutics, and neuroimmune therapies. This issue&#8217;s Case Study Spotlight turns to Precision Neuroscience, whose Layer 7 Cortical Interface offers a minimally invasive, high-resolution path to scalable BCIs. We also dive into China&#8217;s 2030 BCI roadmap, CorTec&#8217;s wireless stroke-rehab implant, and new frontiers in sleep and pain treatment.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Neuralink&#8217;s First Patient Shares Update</strong>: 18 months post-surgery, Noland Arbaugh says the brain implant lets him study, game, and control devices by thought, restoring independence after paralysis. <a href="https://in.mashable.com/science/98943/elon-musks-neuralink-patient-uses-brain-to-play-chess-mario-kart">(Read more)</a></p></li><li><p><strong>BCI Decodes Inner Speech on Command: </strong>A Stanford-led team built a brain-computer interface that can decode inner monologues with up to 74% accuracy. The system only activates with a chosen keyword, protecting mental privacy while enabling communication for people with severe paralysis. <a href="https://www.the-independent.com/tech/brain-chip-reads-inner-thoughts-speech-b2809479.html">(Read more)</a></p></li><li><p><strong>Sam Altman Eyes BCI Startup to Rival Neuralink: </strong>Altman is reportedly co-founding Merge Labs, a brain-computer interface venture valued at ~$850M, with possible backing from OpenAI. Still early, it positions Altman against Musk in the race for human&#8211;AI integration. <a href="https://techcrunch.com/2025/08/12/sam-altman-openai-will-reportedly-back-a-startup-that-takes-on-musks-neuralink/">(Read more)</a></p></li><li><p><strong>Israel Prepares for World&#8217;s First Spinal Cord Transplant:</strong> Tel Aviv University will attempt the first human spinal cord implant using lab-grown tissue from a patient&#8217;s own cells. Approved for compassionate use in eight patients, the approach has restored mobility in paralyzed animals. <a href="https://nrtimes.co.uk/worlds-first-spinal-cord-transplant-could-allow-patients-to-walk-again-nra25/">(Read more)</a></p></li><li><p><strong>FDA Clears ONWARD Medical Spinal Study: </strong>The FDA has approved ONWARD&#8217;s Empower BP trial to test its ARC-IM implant, a neurostimulation device aimed at stabilizing blood pressure in spinal cord injury patients. Enrollment at ~20 sites will begin by late 2025.<a href="https://nrtimes.co.uk/fda-gives-go-ahead-for-onward-medical-spinal-study-nracm25/"> (Read more)</a></p></li><li><p><strong>Synchron Moves Toward Pilot Study: </strong>After showing an ALS patient controlling an iPad with thought alone, Synchron is advancing its fully wireless Stentrode into a pilot study, with pivotal trials expected in 2026. <a href="https://insights.citeline.com/medtech-insight/business/r-and-d/after-thought-control-demo-synchron-plans-pilot-study-with-upgraded-bci-on-path-to-pivotal-trial-ENN3O4KDLVH7FPHSK7VGILBMA4/">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Neurovalens Raises &#163;6M for Global Expansion: </strong>Belfast-based Neurovalens secured <strong>&#163;6M (&#8364;6.95M)</strong> to scale its FDA-cleared neurostimulation devices for insomnia and anxiety, and to pursue approvals for PTSD treatment in the U.S. and beyond. <a href="https://www.htworld.co.uk/news/ni-neurotech-startup-closes-6m-funding-round-su25/">(Read more)</a></p></li><li><p><strong>Jocasta Neuroscience Raises $35M Series A: </strong>Arizona-based Jocasta Neuroscience secured <strong>$35M</strong> to advance its longevity protein <em>&#945;-Klotho</em> (JN-0413) into Phase 1 trials for cognitive decline in neurodegenerative diseases, with IND submission planned for late 2026. <a href="https://www.prnewswire.com/news-releases/jocasta-neuroscience-lands-35-million-series-a-to-advance-longevity-protein-program-for-managing-cognitive-impairment-302527795.html">(Read more)</a></p></li><li><p><strong>SetPoint Medical Raises $140M: </strong>SetPoint Medical secured $140M to commercialize its FDA-approved neuroimmune therapy for rheumatoid arthritis and expand into other autoimmune conditions. <a href="https://setpointmedical.com/setpoint-medical-raises-140-million-in-private-financing-and-expands-leadership-team-to-support-commercialization-strategy-for-rheumatoid-arthritis-therapy/">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>China Unveils 2030 Roadmap to Lead Global BCI Industry:</strong> Seven government agencies, including MIIT, have released national guidelines to make China a world leader in brain-computer interfaces by 2030. The plan sets milestones for 2027 (breakthroughs in electrodes, chips, and integrated systems with international standards) and 2030 (2&#8211;3 globally influential enterprises, industrial clusters, and advanced business models). Both implantable and wearable BCIs are targeted, with lighter, faster devices, precision surgical robots, and next-gen BCI chips highlighted as priorities. Stock markets responded quickly, with BCI-linked companies in Hong Kong seeing double-digit gains. <a href="https://www.globaltimes.cn/page/202508/1340328.shtml">(Read more)</a></p></li><li><p><strong>Sleep Apnea Implant Gains FDA Approval Amid Patent Clash:</strong> Nyxoah&#8217;s Genio system, a battery-free implant that stimulates hypoglossal nerves to keep airways open, has received FDA approval as an alternative to CPAP for obstructive sleep apnea. In trials, it reduced apnea episodes by 71%, but its U.S. launch faces a roadblock: rival Inspire Medical has filed a patent suit seeking to block entry. With ~30M Americans affected by OSA, the ruling could shape the competitive landscape of sleep neurotech. <a href="https://www.fiercebiotech.com/medtech/nyxoah-plans-us-launch-sleep-apnea-implant-rival-inspire-lobs-patent-suit">(Read more)</a></p></li><li><p><strong>CorTec Begins First Human Trial of Wireless Stroke Rehab Implant:</strong> Germany&#8217;s CorTec has implanted its fully wireless <em>Brain Interchange</em> BCI in a stroke patient, testing whether cortical stimulation combined with physiotherapy can restore hand and arm movement. The device records brain signals, delivers targeted stimulation, and charges wirelessly through the skin, reducing infection risks tied to connectors. Early safety results will guide expansion to more patients, with pivotal trials targeted for 2027. <a href="https://insights.citeline.com/medtech-insight/business/r-and-d/clinical-trials/cortec-begins-first-human-trial-of-wireless-brain-implant-for-stroke-rehab-5GRLD4I2AVCCLPCAV75UVP6TEA/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>AI Cuts Stroke Diagnosis Time in UK Hospitals</strong>: Russells Hall Hospital in England has deployed RapidAI to speed up stroke triage, sending brain scans directly to consultants&#8217; phones within seconds. The system shortens diagnosis by up to an hour, enabling faster treatment decisions and even detecting strokes in patients without typical symptoms. The rollout is part of the UK&#8217;s broader plan to integrate AI across the NHS. <a href="https://nrtimes.co.uk/ai-speeds-up-triage-for-stroke-patients-stroke25/">(Read more)</a></p></li><li><p><strong>Targeting Pain Without Opioids: Amygdala Neurons Offer a New Path</strong><br>Researchers at UNC, Stanford, and UCSF have pinpointed specific neurons in the amygdala that make pain&nbsp;<em>feel unpleasant, thereby&nbsp;</em>separating suffering from sensation. With a new $12M NIH grant, they&#8217;re developing small molecules to block these circuits without addictive opioid effects. Still in preclinical stages, the approach could transform chronic pain management by focusing on the brain&#8217;s emotional processing of pain rather than its sensory detection. <a href="https://neurosciencenews.com/pain-neuropharmacology-non-addictive-29605/">(Read more)</a></p></li><li><p><strong>Smartwatches Detect Parkinson&#8217;s Earlier Than Clinical Scores</strong>: A study from Dr. Cynthia Sandor&#8217;s team (UK DRI at Imperial) shows that long-term smartwatch data can detect early Parkinson&#8217;s-related brain changes with higher sensitivity than gold-standard clinical risk scores. Using data from the Michael J. Fox Foundation&#8217;s PPMI cohort, researchers developed a digital risk score from sleep, heart rate, and activity patterns. When combined with smell testing, the model identified over 80% of individuals with abnormal brain scans or spinal fluid markers, offering a non-invasive, low-cost tool for early screening. <a href="https://www.ukdri.ac.uk/news-and-events/smartwatch-data-more-sensitive-clinical-scores-detecting-early-parkinsons-related">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>MiNT UK 2025: Neurotechnology in Practice &#8211; Measuring Impact on Patient Outcomes</strong><br>&#128197; Date: October 16, 2025 | &#128205; CentrEd at ExCeL, London</p><p><strong>Why Attend the Event?</strong><br>Join clinicians, researchers, and innovators for a full-day conference on how neurotechnology is transforming clinical practice and patient outcomes. The program includes expert panels, interactive workshops, and poster sessions covering applications in neurorehabilitation, therapy, and beyond.</p><p><strong>Link to register: </strong> <a href="https://themintacademy.co.uk/mint-uk-2025">Register here</a></p></li><li><p><strong>IEEE Brain Discovery and Neurotechnology Workshop</strong><br>&#128197; Date: September 12&#8211;13, 2025 | Morris J. Wosk Centre for Dialogue, Vancouver</p><p><strong>Why Attend the Event?</strong><br>Join global researchers and clinicians to explore breakthroughs in neurotechnology, machine learning for brain discovery, and clinical impact. The workshop features keynotes, panels on ethics and standards, and sessions highlighting future growth areas in neuroengineering.</p><p><strong>Link to register: </strong> <a href="https://web.cvent.com/event/b0899371-333f-474b-81e2-1aa1bdfc442f/summary">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: Precision Neuroscience &#8211; The Layer 7 Cortical Interface</strong></p><p>In this edition&#8217;s case study spotlight, we highlight <strong>Precision Neuroscience</strong>, a rapidly advancing BCI company co-founded by former Neuralink engineer Dr. Ben Rapoport. Precision is developing the <em><strong>Layer 7 Cortical Interface</strong></em>, a thin-film electrode array that conforms to the surface of the brain, enabling thousands of channels of high-resolution recording and stimulation through a minimally invasive, reversible procedure. With FDA clearance secured in 2025 and early clinical trials underway, Precision is positioning its system as a safer, scalable alternative to penetrating implants.</p><p><strong>Overview: </strong>The Layer 7 Cortical Interface is a flexible, modular array, 1/5th the thickness of a human hair, engineered to capture neural activity at the micron scale without damaging cortical tissue. Using a patented cranial micro-slit technique, the array can be placed on the brain&#8217;s surface within minutes and removed if needed. Each array contains 1,024 electrodes, and multiple arrays can be combined to cover larger regions of the cortex. The system is fully implantable, powered through inductive charging, and paired with machine learning software to decode neural intent and deliver precise bidirectional stimulation.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!mzRt!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!mzRt!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 424w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 848w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!mzRt!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg" width="690" height="388" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:388,&quot;width&quot;:690,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:null,&quot;alt&quot;:&quot;FDA Clears Key Component of Brain-Computer Interface System&quot;,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="FDA Clears Key Component of Brain-Computer Interface System" title="FDA Clears Key Component of Brain-Computer Interface System" srcset="https://substackcdn.com/image/fetch/$s_!mzRt!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 424w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 848w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!mzRt!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F3ff099fc-5177-41e4-9586-63b141ba5420_690x388.jpeg 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Restoring Communication &amp; Independence:</strong> Enables patients with paralysis (e.g., ALS, SCI) to control digital devices like computers, tablets, smart home systems through thought alone.</p></li><li><p><strong>Neurorehabilitation:</strong> Combines stimulation with physical therapy to promote neuroplasticity in stroke recovery.</p></li><li><p><strong>Bidirectional Recording &amp; Stimulation:</strong> Provides both neural signal capture and targeted stimulation, laying the groundwork for adaptive therapies in conditions such as refractory depression and epilepsy.</p></li><li><p><strong>High-Resolution Neural Research:</strong> Offers researchers unprecedented micron-scale data density for mapping and decoding brain activity across regions.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Patients with severe paralysis and neurodegenerative conditions</p></li><li><p>Neurosurgeons and clinicians specializing in stroke, epilepsy, and movement disorders</p></li><li><p>Research institutions advancing cortical recording and stimulation methods</p></li><li><p>Biotech and medtech partners developing BCI-driven therapies</p></li></ul><p><strong>Key Partnerships:</strong><br>Precision is working with top academic hospitals and research institutes in the U.S. to conduct first-in-human trials and expand its clinical research footprint. In parallel, the company has invested in dedicated microfabrication facilities to strengthen control over its technology development.</p><p><strong>Leadership Team:</strong><br>Precision is led by neurosurgeon and BCI pioneer Dr. Ben Rapoport (Co-founder &amp; CSO) and business builder Michael Mager (Co-founder &amp; CEO), supported by a multidisciplinary team with expertise spanning neurosurgery, AI, chip design, and clinical translation.</p><p>For more information about Precision Neuroscience and the Layer 7 Cortical Interface, visit <a href="http://precisionneuro.io?utm_source=chatgpt.com">precisionneuro.io</a>.</p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 10,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></blockquote><div class="pullquote"><p><em><strong>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.</strong></em></p><p><em><strong>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</strong></em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div><p></p><p></p><p></p><p></p><p></p><p></p><p></p><p></p>]]></content:encoded></item><item><title><![CDATA[Interfaces Without Limits: Somnee, Neuralink, and IBM Drive the Next Leap in Brain-Tech Integration– Issue #23]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #23!]]></description><link>https://neurotechpulse.substack.com/p/interfaces-without-limits-somnee</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/interfaces-without-limits-somnee</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Mon, 30 Jun 2025 15:02:25 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/177e23d4-d61b-486b-9834-909410eef045_920x500.jpeg" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>Welcome to Neurotech Pulse &#8211; Issue #23! In this edition, we explore the latest advancements shaping neurotechnology. Epitel&#8217;s REMI system earns FDA clearance for pediatric EEG, Epiminder&#8217;s Minder implant reaches a key clinical milestone for epilepsy monitoring, and Paradromics completes its first-in-human BCI trial. Meanwhile, China makes headlines with its first successful wireless brain implant in a tetraplegic patient, marking a major step in the global BCI race.</p><p>This issue&#8217;s Case Study Spotlight features Somnee, an AI-powered sleep neurotech wearable that uses real-time EEG brain mapping and personalized neurostimulation to enhance sleep quality in just 15 minutes. Backed by world-class scientists and pilots with NBA teams, Somnee is redefining non-drug sleep interventions. We also explore emerging trends, from real-time voice synthesis BCIs for ALS patients and respiratory &#8220;fingerprints&#8221; as a novel biometric, to AI-powered imaging tools transforming Alzheimer&#8217;s care. Plus, don&#8217;t miss breakthroughs in neuron conversion, expression-based diagnostics, and EEG neurofeedback for chronic pain, alongside major funding news from Neuralink, Somnee, and Samphire Neuroscience.</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Epitel Earns FDA Clearance for Pediatric Wireless EEG Monitoring: </strong>Epitel&#8217;s REMI System has earned its fifth 510(k) clearance, now approved for EEG monitoring in infants and children aged 1+. The wireless, wearable setup enables comfortable, remote brain monitoring in both hospitals and homes, marking a major step for pediatric neurocare. (<a href="https://www.medicaldevice-network.com/news/fda-epitel-eeg-system/?cf-view">Read more</a>)</p></li><li><p><strong>Epiminder&#8217;s Implantable EEG Clears Clinical Milestone: </strong>Epiminder&#8217;s Minder system, a minimally invasive implantable EEG device, has shown comparable accuracy to scalp EEG in the UMPIRE trial across Australia. Approved as a Breakthrough Device by the FDA, Minder enables continuous, remote monitoring for drug-resistant epilepsy, capturing seizures even during daily life, and offering insights not seen in traditional systems. (<a href="https://www.medicaldevice-network.com/news/epiminder-eeg-monitoring-device/?cf-view">Read more</a>)</p></li><li><p><strong>Paradromics Begins Human Trials with Connexus&#174; BCI: </strong>Paradromics has completed its first-in-human recording using the Connexus&#174; BCI in partnership with the University of Michigan. The surgery demonstrated safe implantation, recording, and removal within 20 minutes. This milestone transitions Paradromics into a clinical-stage company, with further trials planned to assess long-term safety and communication restoration for patients with severe motor impairments.<a href="https://www.paradromics.com/news/paradromics-completes-first-in-human-recording-with-the-connexus-brain-computer-interface">(Read more)</a></p></li><li><p><strong>China Conducts First Successful Invasive BCI Trial: </strong>China has completed its first clinical trial of a wireless invasive brain-computer interface (BCI), placing it alongside the US in advancing implantable neurotech. Conducted by the Center for Excellence in Brain Science (Shanghai) and Fudan University&#8217;s Huashan Hospital, the trial involved a tetraplegic patient who played computer games using only neural signals. The implant, reportedly the world&#8217;s smallest and 100x more flexible than Neuralink&#8217;s, enabled real-time control of external devices. Researchers now aim to enable robotic arm control, with market approval targeted by 2028. <a href="https://www.livemint.com/technology/tech-news/china-joins-us-in-brain-implant-race-with-clinical-trial-11750045328718.html">(Read more)</a></p></li><li><p><strong>IBM x Inclusive Brains: New Study on Mind-Controlled Interfaces: </strong>IBM and neurotech startup Inclusive Brains have teamed up to explore how AI and quantum computing can classify brain activity for mind-controlled computing. The joint study will test algorithmic models using IBM&#8217;s Granite foundation models and quantum ML to translate neural intent into digital action, without invasive implants. Inclusive Brains&#8217; multimodal interface interprets brainwaves, facial cues, and eye movements to support mental commands. Early tests include monitoring surgeon stress during live operations. The results will be published as open science to support ethical, inclusive BCI development. <a href="https://newsroom.ibm.com/2025-06-03-ibm-and-inclusive-brains-bring-together-ai,-quantum-and-neurotechnologies-to-improve-the-understanding-of-brain-machine-interfaces">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Neuralink Raises $650M to Expand Brain Interface Trials and Applications</strong><br>Neuralink has closed a $650 million Series E round with participation from Sequoia Capital, Founders Fund, ARK Invest, Thrive Capital, and others. The funding supports ongoing clinical trials across the U.S., Canada, and the UAE, including five paralyzed patients using Neuralink to control digital and physical devices via thought. The company also received FDA Breakthrough Device Designations for vision and speech restoration programs and is advancing toward a whole-brain interface. (<a href="https://neuralink.com/blog/neuralink-raises-650m-series-e/">Read more</a>)</p></li><li><p><strong>Samphire Neuroscience Raises $5M to Expand tDCS Wearable for Menstrual Pain: </strong>Samphire Neuroscience closed a $5M seed round led by Inventure VC to scale its CE-certified neurotech wearable, <em>Nettle</em>, designed to alleviate menstrual symptoms through daily tDCS sessions. The headband targets mood and pain issues related to PMS and PMDD, offering a non-hormonal alternative with strong demand in Europe and the UK. The funding will support commercial expansion and platform development, following a pre-seed raise of $2.3M in 2024. <a href="https://femtechinsider.com/samphire-neuroscience-raises-5m-series-a-for-novel-neurotech-wearable-targeting-menstrual-pain/">(Read more)</a></p></li><li><p><strong>Somnee raises $10M to expand AI neurotech sleep wearables: </strong>US-based Somnee has raised $10M in a seed extension round led by Khosla Ventures, with backing from TIME Ventures, the DeVos family, and others. The funds will support the launch of its Gen-2 smart headband, which uses EEG+ and real-time AI to enhance deep sleep quality. Early studies show it outperforms melatonin, Ambien, and CBT-i. Currently in beta testing with NBA teams, Somnee aims to scale across elite sports, employers, and wellness brands. <a href="https://news.gsmedtech.com/somnee-10m-ai-neurotech-sleep-wearables/?utm_campaign=Guided%20Solutions%20-%20Social&amp;utm_content=398364868&amp;utm_medium=social&amp;utm_source=twitter&amp;hss_channel=tw-493313500">(Read more)</a></p></li><li><p><strong>Draig Therapeutics Raises $140M to Advance Next-Gen Therapies for Neuropsychiatric Disorders: </strong>UK-based Draig Therapeutics has closed a $140M Series A round led by Access Biotechnology, with participation from Sanofi Ventures, Canaan Partners, SR One, and others. The funding will advance DT-101, a novel AMPA receptor modulator, into Phase II trials for major depressive disorder (MDD). DT-101 showed promising target engagement in Phase Ia using magnetoencephalography (MEG), linking the program to advanced neuroimaging-based validation. Draig will also progress two GABAA receptor modulators aimed at broader neuropsychiatric conditions with limited current treatment options. (<a href="https://www.pharmaceutical-technology.com/news/draig-funding-neuropsychiatric-disorder-therapies/?cf-view">Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>Real-Time BCI Voice Synthesis Advances Communication for ALS Patients:</strong><br>Following Blackrock Neurotech&#8217;s text-to-speech BCI milestone in 2024, UC Davis researchers have now demonstrated real-time voice synthesis directly from brain signals. Published in <em>Nature</em>, the study shows an ALS patient communicating via instantaneous speech generation (25 ms delay) with control over intonation, pacing, and melody. Unlike earlier systems that spelled out words, this approach recreates the natural rhythm and prosody of speech, offering a richer interface for people with severe paralysis. This BCI-enabled &#8220;digital voice box&#8221; represents a leap toward conversational neuroprosthetics, not just faster, but more human. (<a href="https://health.ucdavis.edu/news/headlines/first-of-its-kind-technology-helps-man-with-als-speak-in-real-time/2025/06">Read more</a>)</p></li><li><p><strong>Your Breath, Your Brain: Nasal Airflow Patterns as a New Biometric Frontier:</strong><br>Researchers at the Weizmann Institute have identified &#8220;respiratory fingerprints&#8221;, unique nasal airflow patterns that can identify individuals with 96.8% accuracy. Using a wearable device that tracked airflow from both nostrils over 24 hours, the study revealed stable, person-specific breathing signatures that also correlate with anxiety, BMI, and sleep cycles. The findings suggest that breathing isn&#8217;t just passive; it may actively encode emotional and cognitive states. As the line between biometric ID and mental health monitoring blurs, breath may emerge as a new non-invasive channel for decoding brain states and emotional health. (<a href="https://www.cell.com/current-biology/fulltext/S0960-9822(25)00583-4?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0960982225005834%3Fshowall%3Dtrue">Read more)</a></p></li><li><p><strong>AI Imaging + Real-World Data: A New Era in Alzheimer&#8217;s Monitoring: </strong>Cortechs.ai has partnered with ALZ-NET to bring its AI-powered neuroimaging tool, NeuroQuant&#174; for ARIA, to clinics treating Alzheimer&#8217;s patients on anti-amyloid therapies. The tool detects and quantifies cerebral microbleeds and edema tied to ARIA (amyloid-related imaging abnormalities), enabling more precise monitoring of patients undergoing treatment. By linking this with ALZ-NET&#8217;s nationwide real-world data registry, the collaboration promises to accelerate evidence-based guidelines and early intervention strategies. As neurodegenerative therapies expand, this signals a critical shift toward AI-assisted, longitudinal tracking in real-world care. <a href="https://www.medicaldevice-network.com/news/cortechs-ai-alz-net-alzheimers/?cf-view">(Read more)</a></p></li><li><p><strong>Hacking the Brain Through the Knee? Stimvia&#8217;s Non-Invasive BCI Breakthrough: </strong>Czech startup Stimvia has developed URIS, a non-invasive neuromodulation device that stimulates deep brain regions via the peroneal nerve behind the knee. Initially used for overactive bladder, URIS is now being tested for Parkinson&#8217;s, MS, and restless leg syndrome. fMRI studies suggest effects on the prefrontal cortex. The system includes an AI assistant that adapts stimulation in real time. With 200+ units shipped, MDR certification, and EU expansion underway, Stimvia is preparing for U.S. trials and rollout. The approach offers a personalized alternative to invasive BCI systems. <a href="https://www.forbes.com/sites/charliefink/2025/06/19/hacking-the-brain-czech-neurotech-startup-stimvia-brings-ai-to-non-invasive-bci/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>Skin to Neuron, No Stem Cells Needed: MIT Engineers Redefine Cell Therapy: </strong>MIT researchers have developed a breakthrough technique that directly converts skin cells into motor neurons, without passing through a stem cell stage. By using just three transcription factors and two proliferation genes, the method achieved over 1,000% yield in mouse cells, with successful brain engraftment and functional signaling. Early human cell results are also promising. This streamlined process could accelerate treatments for spinal cord injury, ALS, and other motor disorders by enabling scalable neuron production for therapeutic use. <a href="https://news.mit.edu/2025/mit-engineers-turn-skin-cells-into-neurons-for-cell-therapy-0313">(Read more)</a></p></li><li><p><strong>Neuralink&#8217;s &#8220;Blindsight&#8221; Shows a Monkey What Isn&#8217;t There: </strong>At the Neural Interfaces conference, Neuralink shared first results from <em>Blindsight</em>, a visual prosthetic designed to restore sight by stimulating the brain&#8217;s visual cortex. In trials, monkeys with the implant responded to visual targets that didn&#8217;t physically exist, suggesting the device successfully generated perception directly in the brain. Neuralink aims to begin human trials soon, with longer-term goals of enabling augmented vision like infrared perception. The system may eventually combine brain implants with wearable glasses, powered by the company&#8217;s surgical robot for deeper cortical access. <a href="https://www.ndtv.com/world-news/elon-musks-neuralink-device-helps-monkey-see-something-thats-not-there-8669950">(Read more)</a></p></li><li><p><strong>Facial Expressions Reveal Hidden Cognitive States Across Species: </strong>New research from the Ernst Str&#252;ngmann Institute shows that facial expressions can predict internal cognitive states, like focus, motivation, and alertness, in both macaques and mice. Published in <em>Nature Communications</em>, the study used a foraging task and virtual reality to track facial features, finding consistent cross-species patterns that correlated with task performance. If validated in humans, this could unlock new diagnostic tools for ADHD, autism, and dementia by using facial data to objectively measure attention and cognitive traits. <a href="https://neurosciencenews.com/facial-expressions-cognitive-state-29311/">(Read more)</a></p></li><li><p><strong>Gaming the Brain: EEG Neurofeedback for Chronic Pain Relief: </strong>Researchers at the University of New South Wales and NeuRA have developed <em>PainWaive</em>, a game-based EEG neurofeedback system to help treat chronic nerve pain without drugs. The kit includes a low-cost 3D-printed EEG headset and a tablet app that trains users to regulate abnormal brainwave patterns linked to pain. In early trials, 3 out of 4 participants saw significant pain reduction, prompting a larger 224-person trial. The approach builds on findings that chronic pain disrupts thalamocortical rhythms, marked by more theta, fewer alpha, and excess high-beta waves, suggesting targeted neurofeedback could rewire these patterns. <a href="https://www.mobihealthnews.com/news/anz/university-new-south-wales-trials-brain-game-chronic-pain-treatment">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>IEEE Brain Discovery and Neurotechnology Workshop (In-Person)</strong><br>&#128197; Date: September 12&#8211;13, 2025 | Simon Fraser University, Vancouver, Canada</p><p><strong>Why Attend the Event?</strong><br>Connect with global leaders in neurotech, machine learning, and clinical neuroscience. Featuring keynotes, panels, and live demos, the workshop spotlights breakthroughs in brain imaging, BCIs, and AI-powered diagnostics.</p><p><strong>Link to register:</strong> <a href="https://cvent.me/VMXw00">Register here</a></p></li><li><p><strong>MiNT UK 2025 (In-Person)</strong><br>&#128197; Date: October 16, 2025 | CentrEd at ExCeL London</p><p><strong>Why Attend the Event?</strong><br>Explore how neurotechnology is shaping real-world clinical outcomes. MiNT UK brings together engineers, clinicians, and researchers for a full day of expert panels, hands-on workshops, and demos of emerging tools in neurorehab and therapy. A focused platform to connect, learn, and share across disciplines.</p><p>&#128279; <strong>Link to register:</strong> <a href="https://www.eventbrite.co.uk/e/mint-uk-2025-tickets-1030895545327?aff=oddtdtcreator">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; In this edition's case study spotlight, we explore <strong>Somnee</strong>, a personalized sleep technology developed by <strong>StimScience</strong> to address one of the most widespread yet underserved health issues: poor sleep. Somnee blends real-time EEG brain mapping with AI-guided transcranial electrical stimulation (tES) to help users fall asleep faster, reduce nighttime interruptions, and improve deep sleep quality, all through a 15-minute pre-sleep session. Backed by clinical validation and leading neuroscientists like <strong>Dr. Matthew Walker</strong>, Somnee is redefining non-drug interventions for better sleep.</p><p><strong>Overview: </strong>Somnee is a clinical-grade wearable that combines real-time EEG monitoring, personalized neurostimulation, and short-form therapy sessions before bedtime. The system analyzes brain activity to model each user&#8217;s unique sleep patterns and delivers targeted tACS stimulation to nudge the brain into a sleep-ready state. Unlike most overnight devices, Somnee is worn only before sleep, making it lightweight, convenient, and habit-friendly. The product has been piloted in high-performance environments and shows promise as a scalable tool for improving sleep quality across demographics.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!aI0u!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!aI0u!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 424w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 848w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 1272w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!aI0u!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp" width="1456" height="971" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:971,&quot;width&quot;:1456,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:112190,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/webp&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://nexstem.substack.com/i/166307794?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!aI0u!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 424w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 848w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 1272w, https://substackcdn.com/image/fetch/$s_!aI0u!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F423c0e8a-83d9-44c5-aa61-18d018012595_2000x1334.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Pre-Sleep EEG Brain Mapping: </strong>EEG+ sensors create a personalized model of the user&#8217;s sleep profile over multiple nights to tailor stimulation.</p></li><li><p><strong>AI-Personalized Neurostimulation: </strong>The SmartSleep OS adapts stimulation parameters nightly to improve sleep onset time, depth, and reduce nighttime wakeups.</p></li><li><p><strong>Non-Pharma Sleep Aid: </strong>A drug-free, non-invasive sleep solution that actively prepares the brain for rest, moving beyond passive tracking.</p></li><li><p><strong>Performance &amp; Recovery Focus: </strong>Currently in pilots with NBA teams and recovery-centric brands like Equinox Hotels, targeting elite athletic and wellness applications.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Individuals seeking clinically validated, non-drug interventions for sleep issues</p></li><li><p>Sleep clinics and neurologists offering personalized neurostimulation therapies</p></li><li><p>Sports and wellness programs prioritizing recovery and cognitive performance</p></li><li><p>Employers and health plans addressing sleep as part of preventive care</p></li></ul><p><strong>Key Partnerships:</strong><br>Somnee&#8217;s clinical science is supported by research pilots with the NBA Launchpad and Equinox Hotels, validating its use in both high-performance and consumer wellness contexts. On the investment side, Khosla Ventures, TIME Ventures, and the DeVos family have backed Somnee&#8217;s continued R&amp;D and market expansion.</p><p><strong>Leadership Team:</strong><br>Somnee is led by CEO Tim Rosa, former CMO at Fitbit, with deep expertise in health tech scale-ups. The founding team includes renowned sleep expert Dr. Matthew Walker, neurotech pioneer Dr. Ram Gurumoorthy, and UC Berkeley neuroscientists Dr. Robert Knight and Dr. Rich Ivry. Their combined experience spans sleep science, brain stimulation, and consumer health innovation.<br><br>For more information about Somnee and its AI-powered sleep neurotechnology, visit <a href="https://somneesleep.com/">Somnee</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></blockquote><div class="pullquote"><p><em><strong>&#10084;&#65039; </strong>Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<strong><br></strong></em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div>]]></content:encoded></item><item><title><![CDATA[Inside Neurotech’s Next Leap: Brain Chips, Apple Integration & Mental Privacy – Issue #21]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #19!]]></description><link>https://neurotechpulse.substack.com/p/inside-neurotechs-next-leap-brain</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/inside-neurotechs-next-leap-brain</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Sat, 31 May 2025 15:01:45 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/2f5444ac-ca74-4d0b-bc8f-a93c1fbbb978_1200x800.avif" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>Welcome to Neurotech Pulse &#8211; Issue #19! In this edition, we explore the latest advancements shaping neurotechnology. Precision Neuroscience&#8217;s Layer 7 Cortical Interface earns FDA approval, marking a new milestone for minimally invasive, wireless BCIs, while EPFL introduces a soft brainstem implant for patients who can&#8217;t benefit from cochlear implants. Georgia Tech&#8217;s microneedle sensors promise seamless brain monitoring, and the MICrONS project unveils an ultra-detailed 3D brain map to decode neural circuits.</p><p>This issue&#8217;s Case Study Spotlight features Flow Neuroscience, a company developing at-home depression treatment through a brain stimulation headset paired with a behavioral therapy app. We also cover Science Corp&#8217;s vision-restoring retinal implant, EEG-to-speech systems enhancing communication, and Inner Cosmos&#8217; minimalist brain implant targeting mental health. Plus, don&#8217;t miss our coverage on trends in spinal stimulation, robotic neurorehabilitation, and key investments shaping the neurotech space. Join us as we explore these breakthroughs, funding updates, and thought-provoking insights shaping the future of neurotech!</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Cognixion &#215; Blackrock: Expanding Access to Noninvasive BCIs: </strong>Blackrock Neurotech will distribute Cognixion&#8217;s Axon-R, a noninvasive BCI headset for research and neurorehab, through its global network. While Blackrock stays focused on implants, this partnership brings AI-powered, AR-integrated BCIs to more researchers, bridging noninvasive and implantable neurotech. (<a href="https://www.mobihealthnews.com/news/cognixion-blackrock-neurotech-partner-brain-computer-interface-technology">Read more</a>)</p></li><li><p><strong>Synchron&#8217;s BCI to Natively Control Apple Devices: </strong>Synchron will be the first BCI company to integrate with Apple&#8217;s new BCI Human Interface Device (BCI HID) protocol, enabling users to control iPhones, iPads, and Vision Pro with their thoughts. This marks a major leap in accessibility, bringing hands-free, voice-free neural control to everyday devices. (<a href="https://www.businesswire.com/news/home/20250513927084/en/Synchron-To-Achieve-First-Native-Brain-Computer-Interface-Integration-with-iPhone-iPad-and-Apple-Vision-Pro">Read more</a>)</p></li><li><p><strong>Gabe Newell&#8217;s BCI Startup to Launch Tiny Brain Chip in 2025: </strong>Starfish Neuroscience, founded by Valve&#8217;s Gabe Newell, has unveiled a 2&#215;4mm chip that can both read and stimulate brain activity, built for wireless, battery-free implants. Co-developed with imec, the chip targets multi-region neuromodulation with ultra-low power and onboard spike detection. (<a href="https://www.theverge.com/news/673938/gabe-newell-valve-founder-brain-computer-interface-first-chip-starfish">Read more</a>)</p></li><li><p><strong>Neuromorphic Chip Mimics Human Vision and Memory:</strong> Engineers at RMIT University have developed a tiny neuromorphic device that mimics how the brain processes visual information&#8212;detecting motion, storing memories, and reacting in real time without external computing. Made from molybdenum disulfide (MoS&#8322;), the chip uses ultra-low power to perform edge detection and memory encoding<em>, </em>key for real-time decisions in robotics and autonomous systems. (<a href="https://techxplore.com/news/2025-05-tiny-device-movement-real-visual.html">Read more</a>)</p></li><li><p><strong>Neuralink ALS Patient Edits Video Using Brain Signals: </strong>Brad Smith, the first ALS patient with a Neuralink implant, has publicly shared a YouTube video he edited and narrated using only his thoughts. The implant, embedded in his motor cortex, allows him to move a cursor and interact with his MacBook. AI also recreated his voice for narration. The system now helps Smith communicate faster, play video games with his kids, and access digital tools that were previously out of reach, marking a powerful real-world moment in BCI adoption. (<a href="https://www.digitalhealthnews.com/neuralink-s-first-als-patient-shares-youtube-video-edited-using-brain-implant">Read more</a>)</p><div id="youtube2-SqrANrm-QMY" class="youtube-wrap" data-attrs="{&quot;videoId&quot;:&quot;SqrANrm-QMY&quot;,&quot;startTime&quot;:null,&quot;endTime&quot;:null}" data-component-name="Youtube2ToDOM"><div class="youtube-inner"><iframe src="https://www.youtube-nocookie.com/embed/SqrANrm-QMY?rel=0&amp;autoplay=0&amp;showinfo=0&amp;enablejsapi=0" frameborder="0" loading="lazy" gesture="media" allow="autoplay; fullscreen" allowautoplay="true" allowfullscreen="true" width="728" height="409"></iframe></div></div></li><li><p><strong> Axoft&#8217;s Ultrasoft BCI Shows Early Success in Human Trial: </strong>Axoft has implanted its Fleuron&#8482;-based iBCI in four patients, recording stable deep-brain signals during surgery, without drift correction. The implant&#8217;s ultrasoft material reduces scarring and captures a potential biomarker of consciousness, marking a major step for long-term, high-fidelity BCIs. (<a href="https://www.businesswire.com/news/home/20250422988411/en/Axoft-Successfully-Completes-First-Four-Cases-of-First-in-Human-Clinical-Study-of-its-Ultrasoft-High-Density-Brain-Computer-Interface">Read more</a>) </p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Salvia BioElectronics Raises $60M to Advance Implantable Migraine Therapy</strong><br>Dutch medtech company Salvia BioElectronics closed a $60 million Series B round to fund its MySalvia Therapy &#8212; a minimally invasive neuromodulation solution for chronic migraine. The funds will support completion of the RECLAIM clinical trial, regulatory filings, and global launch prep. The FDA-designated Breakthrough Device uses ultra-thin forehead and neck implants activated via an external wearable. <a href="https://tech.eu/2025/05/27/salvia-bioelectronics-raises-60m-to-accelerate-its-migraine-therapy-launch/">(Read more)</a></p></li><li><p><strong>MindSpire Secures &#163;850K Pre-Seed for Cognitive Wearable: </strong>UK-based MindSpire raised &#163;850,000 to develop SONA&#8482;, a neuroadaptive wearable targeting stress and focus. The round was led by SFC Capital. (<a href="https://healthcaretoday.com/article/mindspire-raises-pre-seed-funding">Read more</a>)</p></li><li><p><strong>INBRAIN Neuroelectronics Awarded &#8364;4M Grant for Graphene BCI Development: </strong>Spain-based INBRAIN received a &#8364;4 million grant under the PERTE Chip initiative to accelerate development of its graphene-based brain-computer interfaces aimed at treating neurological disorders. <a href="https://www.businesswire.com/news/home/20250505249158/en/INBRAIN-Neuroelectronics-Awarded-%E2%82%AC4-Million-Grant-from-Spains-PERTE-Chip-Program-to-Advance-Graphene-Based-Brain-Computer-Interfaces?utm_source=chatgpt.com">(Read more)</a></p></li><li><p><strong>ClearPoint Neuro Secures $110M from Oberland Capital: </strong>ClearPoint Neuro has announced up to $110 million in funding from Oberland Capital to support its real-time MRI-guided neurosurgical navigation and delivery platforms. The investment will drive expansion into gene therapy delivery, neuromodulation, and global commercialization. <a href="https://news.gsmedtech.com/clearpoint-neuro-110m-investment-oberland-capital/">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>Rewiring Memory: A Dynamic Brain-Inspired Model Emerges: </strong>Researchers from UC Santa Barbara and the University of Padua have proposed a new model that better reflects how we recall memories in everyday life. Known as Input-Driven Plasticity (IDP), the model shows how external cues, like just seeing a cat&#8217;s tail, can dynamically reshape brain activity to retrieve the full memory. Unlike older models that assume memory recall begins from a static starting point, IDP captures a more fluid, adaptive process. It filters out weaker memory traces, adapts to noisy inputs, and offers a blueprint for building AI systems that are more context-aware, continuous, and flexible, much like the human brain. <a href="https://neurosciencenews.com/ai-memory-idp-28975/">(Read more)</a> </p></li><li><p><strong>Stabilizing BCIs by Aligning Latent Neural Dynamics: </strong>A new study in <em>Nature Communications</em> proposes a breakthrough method to solve one of BCI&#8217;s biggest challenges&#8212;neural drift. Researchers from Columbia and collaborators have shown that by aligning <strong>latent neural dynamics</strong>&#8212;the hidden structure beneath raw brain signals&#8212;brain-computer interfaces can maintain stable performance over time without frequent recalibration. The approach uses unsupervised manifold alignment to track the brain&#8217;s &#8220;intent&#8221; even as signals shift due to plasticity or electrode movement. Validated in non-human primates, this method paves the way for <strong>longer-lasting, adaptive BCIs</strong> that better mirror the brain&#8217;s intrinsic computational geometry. It could extend to neuroprosthetics, closed-loop systems, and even psychiatric applications. (<a href="https://bioengineer.org/aligning-latent-dynamics-to-stabilize-brain-interfaces/">Read more</a>)</p></li><li><p><strong>Transcranial Ultrasound Stimulation (TUS) Gains Ground as a Scalable Neurotech Tool: </strong>A new 20-year bibliometric review shows Transcranial Ultrasound Stimulation (TUS) rapidly rising as a promising noninvasive neuromodulation technique. Once limited to preclinical research, TUS is now being explored for clinical use in stroke rehabilitation, Parkinson&#8217;s, Alzheimer&#8217;s, and chronic pain. The review highlights a sharp spike in global research activity peaking in 2024, with growing calls for multicenter trials and standardized protocols. TUS is increasingly seen as a scalable, safer alternative to TMS and DBS, with the potential to redefine the next generation of neurotherapeutics. (<a href="https://www.frontiersin.org/journals/neuroscience/articles/10.3389/fnins.2025.1595061/full">Read more)</a></p></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>When AI Mirrors the Brain: LLMs and Aphasia Share Neural Patterns: </strong>Researchers at the University of Tokyo have discovered a striking similarity between how large language models (LLMs) and brains affected by Wernicke&#8217;s aphasia process language. Both generate fluent yet often incoherent output, linked to rigid internal signal dynamics. Using energy landscape analysis, the study found shared patterns in how information flows inside AI systems and human brains, offering fresh insight into both diagnosing language disorders and designing more flexible, trustworthy AI. It opens the door to objective aphasia diagnostics and cognitive-inspired model architecture that better reflects how the brain communicates meaning. (<a href="https://advanced.onlinelibrary.wiley.com/doi/10.1002/advs.202414016">Read more</a>) </p></li><li><p><strong>Mental Privacy Moves to Center Stage in Global Regulation: </strong>Neurotechnology is challenging one of the last frontiers of privacy: the human mind. With devices now able to detect attention, emotional states, and intent, U.S. states like California, Colorado, and Montana have introduced laws treating brain data as sensitive, requiring explicit consent, data security, and periodic renewal. Globally, countries like Chile have already enforced constitutional protections for neural data. As neural interfaces shift from medicine to consumer use, companies are being urged to build in mental privacy by design, prioritizing transparency, user control, and long-term safeguards. <a href="https://iapp.org/news/a/mind-matters-shaping-the-future-of-privacy-in-the-age-of-neurotechnology">(Read more)</a></p></li><li><p><strong>Why Neural Data Needs Scale: The Case for Brain-Sized Models: </strong>To decode the complexity of the brain, leading researchers argue we must embrace data-driven approaches&#8212;training large models on vast, high-dimensional neural datasets. In a roundtable hosted by <em>The Transmitter</em>, nine experts in computational neuroscience and neural data analysis reflect on the limitations of handcrafted models and advocate for a future that accepts "the bitter lesson": scale and data often outperform intuition in understanding the brain. The discussion explores how foundation models, self-supervised learning, and cross-species datasets could help capture the brain&#8217;s multi-layered dynamics, while calling for more collaborative infrastructure and computational resources to make this shift viable. <a href="https://www.thetransmitter.org/neuroai/accepting-the-bitter-lesson-and-embracing-the-brains-complexity/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>BCI &amp; Neurotech Masterclass Malaysia 4.0</strong><br>&#128197; June 18&#8211;19, 2025 | 09:00&#8211;17:00 MYT (Online)</p><p><strong>Why Attend the Event?</strong><br>Catch the latest in EEG, ERP, and neurorehab from Malaysia&#8217;s growing neurotech ecosystem. Speakers from g.tec, USM, UM, and more will share real-world BCI applications in clinical and performance contexts.</p><p><em><strong>Link to register</strong></em><strong>:</strong> <a href="https://us02web.zoom.us/webinar/register/WN_PSiOA2ZiTka6Lw3pVBOvPg#/registration">Register here</a><br></p></li><li><p><strong>New York BCI Symposium 2025 (In-Person)</strong><br>&#128197; Date: October 3&#8211;4, 2025 | New York Academy of Medicine, NYC</p><p><strong>Why Attend the Event?</strong><br>Join top minds in BCI translation, regulation, and commercialization. Hosted by Mount Sinai BioDesign, with speakers from science, surgery, and industry.</p><p><strong>Link to register:</strong> <a href="https://web.cvent.com/event/2886b64d-65fd-42dd-856c-57ff4a467388/websitePage:eac76abb-f644-4460-9b92-c4d989a4046f">Register here</a><br></p></li><li><p><strong>ISRC-CN3 Summer School (Hybrid)</strong><br>&#128197; Date: August 25 &#8211; September 1, 2025 | Ulster University &amp; Online</p><p><strong>Why Attend the Event?</strong><br>An intensive program on computational neuroscience, BCI, and neuro-inspired AI, featuring expert talks, hands-on labs, and student-led projects. Open to early-career researchers and engineers.</p><p><strong>Link to register: </strong><a href="https://forms.office.com/pages/responsepage.aspx?id=h5QLb6hPqEKutL8uLCLU6JmeB9PRf6BBrpFRkmV-rmxUNUtKTVdJSjhJT0k5SUxNQkVKNFA2RTc3Ui4u&amp;route=shorturl">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; In this edition's case study spotlight, we explore <strong>Starfish Neuroscience</strong>, a neurotechnology startup co-founded by Valve CEO Gabe Newell. The company is developing a novel class of minimally invasive, wireless, battery-free BCI chips designed for simultaneous recording and stimulation across multiple brain regions. This approach aims to address complex neurological disorders by enabling distributed neural interfacing.</p><p><strong>Overview:</strong> <strong>Starfish Neuroscience</strong> is engineering a custom <strong>electrophysiology chip</strong> measuring <strong>2 x 4 mm</strong>, fabricated using <strong>TSMC's 55 nm process</strong>. The chip is designed to consume just <strong>1.1 milliwatts</strong> during normal recording operations and supports <strong>32 electrode sites</strong> with <strong>16 simultaneous recording channels</strong> at <strong>18.75 kHz</strong>. Notably, the chip operates without an onboard battery, utilizing wireless power transmission, which reduces implant size and surgical complexity. The device is capable of both recording neural activity (spikes and local field potentials) and delivering biphasic stimulation pulses, with onboard data processing to enable low-bandwidth wireless communication.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!tg2h!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!tg2h!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 424w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 848w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 1272w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!tg2h!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif" width="1280" height="720" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:720,&quot;width&quot;:1280,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:44575,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/avif&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:&quot;https://nexstem.substack.com/i/163912992?img=https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif&quot;,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!tg2h!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 424w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 848w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 1272w, https://substackcdn.com/image/fetch/$s_!tg2h!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F94a30583-31c6-43f1-9737-15408fbd7b87_1280x720.avif 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Multi-Region Neuromodulation:</strong> The chip's ability to interface with multiple brain regions simultaneously positions it as a potential tool for treating disorders involving complex neural circuits, such as Parkinson's disease, epilepsy, and depression.</p></li><li><p><strong>Minimally Invasive Implantation:</strong> The ultra-small form factor and wireless power capability aim to reduce surgical risks and patient recovery time, making it suitable for chronic implantation scenarios.</p></li><li><p><strong>Closed-Loop Therapeutic Systems:</strong> By combining real-time neural recording with stimulation, the chip facilitates the development of adaptive, closed-loop neuromodulation therapies that respond dynamically to neural activity.</p></li><li><p><strong>Scalable Implant Networks:</strong> The battery-free design allows for the deployment of multiple implants across different brain regions without the need for complex power management, enabling scalable neural interfacing solutions.</p></li></ul><p><strong>Target Audience:</strong></p><ul><li><p>Neuroscientists and clinicians are developing advanced neuromodulation therapies.</p></li><li><p>Medical device companies are focusing on implantable neurotechnology.</p></li><li><p>Researchers in brain-computer interface systems and neural signal processing.</p></li><li><p>Partners specializing in wireless power transmission and implantable electronics.</p></li></ul><p><strong>Key Partnerships:</strong> Starfish Neuroscience has collaborated with <strong>imec</strong>, a leading research and development hub for nanoelectronics and digital technologies, to design and fabricate its custom electrophysiology chip. This partnership leverages imec's expertise in miniaturization and low-power electronics to advance Starfish's neural interface technology.</p><p><strong>Leadership Team:</strong> Co-founded by <strong>Gabe Newell</strong>, CEO of <a href="https://www.valvesoftware.com/en/">Valve Corporation</a>, Starfish Neuroscience brings together a team of engineers and neuroscientists dedicated to advancing neural interface technology. The company's leadership emphasizes a multidisciplinary approach to developing innovative solutions for neurological disorders.<br><br>For more information about Starfish Neuroscience and its next-generation brain-computer interface technologies, visit <a href="https://www.starfishneuroscience.com">starfishneuroscience</a></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br></em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div>]]></content:encoded></item><item><title><![CDATA[From Labs to Implants: EPFL, Science Corp & Inner Cosmos Take BCI to New Heights – Issue #19]]></title><description><![CDATA[Welcome to Neurotech Pulse &#8211; Issue #19!]]></description><link>https://neurotechpulse.substack.com/p/from-labs-to-implants-epfl-science</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/from-labs-to-implants-epfl-science</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Wed, 30 Apr 2025 15:02:32 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/2226230b-2385-45bc-8a53-82b1b61618c8_2913x2097.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>Welcome to Neurotech Pulse &#8211; Issue #19! In this edition, we explore the latest advancements shaping neurotechnology. Precision Neuroscience&#8217;s Layer 7 Cortical Interface earns FDA approval, marking a new milestone for minimally invasive, wireless BCIs, while EPFL introduces a soft brainstem implant for patients who can&#8217;t benefit from cochlear implants. Georgia Tech&#8217;s microneedle sensors promise seamless brain monitoring, and the MICrONS project unveils an ultra-detailed 3D brain map to decode neural circuits.</p><p>This issue&#8217;s Case Study Spotlight features Flow Neuroscience, a company developing at-home depression treatment through a brain stimulation headset paired with a behavioral therapy app. We also cover Science Corp&#8217;s vision-restoring retinal implant, EEG-to-speech systems enhancing communication, and Inner Cosmos&#8217; minimalist brain implant targeting mental health. Plus, don&#8217;t miss our coverage on trends in spinal stimulation, robotic neurorehabilitation, and key investments shaping the neurotech space. Join us as we explore these breakthroughs, funding updates, and thought-provoking insights shaping the future of neurotech!</p><div><hr></div><h3><strong>&#9889;&#65039;Neurotech Newsflash</strong></h3><ul><li><p><strong>Precision Neuroscience Gets FDA Clearance for Wireless Brain Implant:</strong> Precision Neuroscience has received FDA approval for its Layer 7 Cortical Interface, a microelectrode array thinner than a human hair that can record and stimulate brain activity without damaging tissue. While not the full BCI system, the clearance allows the device to be implanted in patients for up to 30 days in clinical settings. This marks the first full regulatory approval for a wireless BCI system and allows for broader clinical use and data collection. <a href="https://www.cnbc.com/2025/04/17/brain-implant-cleared-fda-musk-neuralink-rival-precision-neuroscience.html">(Read more)</a> </p></li><li><p><strong>Soft Brainstem Implant Enables Clearer Hearing: </strong>EPFL has developed a soft auditory brainstem implant that conforms to brain tissue, improving comfort and precision. Successfully tested in macaques, it offers a promising alternative for those who can&#8217;t use cochlear implants. <a href="https://www.news-medical.net/news/20250418/Soft-brainstem-implant-offers-new-hope-for-restoring-hearing.aspx">(Read more)</a></p></li><li><p><strong>Georgia Tech's Microneedle Brain Sensors for Seamless BCI Use</strong>: Georgia Tech has developed ultra-small microneedle sensors that capture neural signals during everyday activities. In a study with AR video calls, the sensors achieved 96.4% accuracy in detecting visual attention, even while participants walked or ran. This breakthrough paves the way for seamless, continuous BCI use outside clinical settings. <a href="https://techxplore.com/news/2025-04-unveil-invisible-brain-interface.html">(Read more)</a></p></li><li><p><strong>A Connectomic Milestone: MICrONS Unveils Most Detailed Brain Map:</strong> The MICrONS program has mapped a cubic millimeter of mouse cortex in stunning detail&#8212;200,000 cells, 4 km of axons, and 500M synapses&#8212;marking a major leap for connectomics. Dubbed neuroscience&#8217;s AlphaFold moment, it could reshape our understanding of brain function. (<a href="https://youtu.be/GobSwqomALo?feature=shared">Know more</a>)</p></li><li><p><strong>FDA Grants Authorization to Epiminder&#8217;s Implantable Continuous EEG Monitor for Epilepsy Treatment: </strong>Epiminder&#8217;s Minder, an implantable continuous EEG system, has received FDA De Novo authorization, marking it as the first device of its kind approved for drug-resistant epilepsy. The FDA's breakthrough device designation emphasizes its potential to enhance epilepsy care through more effective diagnosis and management. The system's utility was validated by the UMPIRE study, which demonstrated improved seizure tracking and management. The device is expected to launch in late 2025 at leading epilepsy centers. (<a href="https://www.neurologylive.com/view/fda-grants-authorization-epiminder-implantable-continuous-eeg-monitor-epilepsy-treatment">Read more</a>)</p></li></ul><div><hr></div><h3><strong>&#128176;Notable Funding</strong></h3><ul><li><p><strong>Science Corp. Raises $104M Led by Khosla Ventures: </strong>Science Corp., founded by Neuralink co-founder Max Hodak, has raised $104 million in a funding round led by Khosla Ventures to advance its retina and brain implant technologies. This brings the company&#8217;s total funding to $290 million. (<a href="https://www.bloomberg.com/news/articles/2025-04-14/neuralink-rival-science-corp-raises-104-million-led-by-khosla">Read more</a>)</p></li><li><p><strong>Ivory Raises $1M to Advance Cognitive Health Tech:</strong> Brain health startup <em>Ivory</em> secured $1M led by IIM-A Ventures and Capital A. Funds will boost AI-powered assessments and expand access across India. <a href="https://entrackr.com/snippets/ivory-raises-1-mn-led-by-iim-a-ventures-and-capital-a-8984497">(Read more)</a></p></li><li><p><strong>Phantom Neuro Raises $19M to Advance AI-Powered Prosthetics:</strong> Backed by Ottobock and others, Phantom Neuro will use the funds to advance its minimally invasive neural interface, Phantom X, toward clinical trials. The tech enables near-natural control of robotic limbs. (<a href="https://techcrunch.com/2025/04/15/phantom-neuro-grabs-19m-to-help-amputees-gain-control-of-their-phantom-limbs/">Read more</a>)</p></li><li><p><strong>Neuranics Raises $8M to Advance Magnetic Sensing Tech: </strong>Scottish deep-tech startup Neuranics has raised $8M in seed funding to scale its TMR-based magnetic sensing technology for next-gen XR, wearables, and digital health. Backed by Blackfinch Ventures, Archangels, Par Equity, and university funds, Neuranics aims to redefine human-machine interaction with ultra-sensitive, low-power, contactless sensors. <a href="https://www.businesswire.com/news/home/20250409168716/en/Neuranics-Raises-$8M-to-Revolutionise-Magnetic-Sensing-for-the-Future-of-Human-Machine-Interaction?trk=feed_main-feed-card_feed-article-content">(Read more)</a></p></li></ul><div><hr></div><h3><strong>&#129504; Neurotech Trends:</strong></h3><ol><li><p><strong>Robotics and Spinal Stimulation Restore Movement in Paralysis: </strong>Researchers at .NeuroRestore have developed an integrated system that combines spinal cord stimulation with rehabilitation robotics to restore movement in individuals with spinal cord injuries. The approach uses an implanted neuroprosthesis that delivers biomimetic electrical pulses, working in sync with robotic devices like exoskeletons and stationary bikes. In a proof-of-concept study, participants regained muscle activation during therapy and showed improvements in voluntary movements even after stimulation was turned off. The technology promises to enhance both immediate mobility and long-term recovery, offering new hope for those with paralysis. <a href="https://www.sciencedaily.com/releases/2025/03/250312145730.htm">(Read more)</a></p></li><li><p><strong>Brain Implant Restores Speech After 18 Years of Silence: </strong>A new brain implant has enabled a 47-year-old woman with quadriplegia, who lost her ability to speak after a stroke, to regain her voice. The device converts her thoughts into real-time speech, overcoming delays seen in previous systems. By recording brain activity and synthesizing her pre-stroke voice, the system translates her intent into fluent sentences in under 80 milliseconds, enabling natural conversations. This advancement could have significant implications for speech restoration, with a potential clinical rollout within the next decade. <a href="https://www.neurologyadvisor.com/news/brain-implant-lets-woman-talk-after-18-years-of-silence-stroke/">(Read more)</a></p></li><li><p><strong>EEG-to-Speech: Synthesis of Imagined Speech from Brain Activity: </strong>Researchers from the Harbin Institute of Technology have developed a system that synthesizes audible, highly understandable speech directly from the brain's EEG signals of imagined speech. Using a specially designed deep neural network, the system converts EEG data into speech, achieving an impressive 91.23% accuracy on a set of Chinese disyllabic words. This breakthrough is a major step towards non-invasive communication restoration for individuals with conditions like aphasia or paralysis. The system&#8217;s scalability to continuous speech and various languages opens up vast potential for improving communication in patients with limited verbal ability. <a href="https://www.frontiersin.org/journals/neuroscience/articles/10.3389/fnins.2025.1565848/full">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#128216; Neurotech Articles:</strong></h3><ol><li><p><strong>Neural Fingerprints Predict Team Flow in Social Interactions: </strong>Researchers from Toyohashi University of Technology and Caltech have developed an algorithm that maps a person&#8217;s brain activity into a stable, individual-specific &#8220;neural fingerprint.&#8221; In a rhythm-based video game experiment, participants with similar neural signatures were more likely to achieve team flow&#8212;a state of deep, synchronized focus&#8212;even amid distractions. The study bridges long-term neural traits and real-time social dynamics, with potential applications in high-performance teamwork across fields like space exploration, corporate leadership, and creative collaboration. <a href="https://neurosciencenews.com/neural-fingerprints-social-neuroscience-28673/">(Read more)</a></p></li><li><p><strong>Science Corp Lands Big Funding Round to Advance BCI Technology: </strong>Science Corporation, founded by Neuralink co-founder Max Hodak, is advancing neural engineering devices to support vision, communication, and cognition. Its PRIMA retinal implant system&#8212;featuring a wireless sub-retinal device paired with specialized glasses and a pocket processor&#8212;has shown encouraging results in restoring vision for patients with advanced age-related macular degeneration (AMD). Clinical trials report restored abilities to read and recognize faces, and the technology is now progressing toward regulatory approval in Europe.. (<a href="https://longevity.technology/news/science-corp-lands-big-funding-round-to-advance-bci-technology/">Read more</a>)</p></li><li><p><strong>Inner Cosmos: A Minimalist Brain Implant for Depression Treatment: </strong>Inner Cosmos is developing a neural implant the size of a penny, placed under the skin (not in the brain), designed to treat depression by delivering precise electrical stimulation to the left dorsolateral prefrontal cortex. Unlike companies like Neuralink that require invasive procedures, Inner Cosmos is focused on minimalism and accessibility, prioritizing ease of use, ethical foresight, and scalability. Their approach mimics the simplicity of iOS, aiming to abstract away complex BCI functions so users can focus on outcomes. While still in early stages, Inner Cosmos has received FDA Breakthrough Device Designation and completed initial human trials, with plans to expand into broader mental health applications. <a href="https://www.forbes.com/sites/naveenrao/2025/04/02/inner-cosmos-outer-expansion-psychiatric-bci-gears-up-for-prime-time/">(Read more)</a></p></li><li><p><strong>Sound Waves That Bend Like Rainbows: A Breakthrough for Brain Health: </strong>Researchers at Washington University, led by Dr. Hong Chen, have developed a technique called <em>Airy-beam holographic sonogenetics</em>&#8212;a method that uses curved ultrasound waves to activate specific neurons, without the need for implants or surgery. In experiments with mice, the approach restored motor function by precisely targeting brain areas associated with movement disorders like Parkinson&#8217;s. The technique uses a harmless virus to make select neurons sensitive to sound and activates them using a wearable device that emits &#8220;rainbow-shaped&#8221; sound beams. This breakthrough could eventually lead to wearable, non-invasive alternatives to deep brain stimulation for neurological and even metabolic disorders. Though human trials are still ahead, the method represents a significant step toward precision medicine using sound.<a href="https://www.musumeci.online/sound-waves-that-bend-like-rainbows-a-breakthrough-for-brain-health/"> (Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>Neural Interfaces 2025</strong><br>&#128197; <strong>Date:</strong> June 12&#8211;14, 2025 | Crystal Gateway Marriott, Arlington, VA<br><strong>Why Attend the Event?</strong><br>Join Neural Interfaces 2025, the premier conference on neurotechnology, BCIs, and neuromodulation, bringing together scientists, engineers, clinicians, and industry leaders to advance the field.<br><em><strong>Link to register</strong></em><strong>:</strong> <a href="https://www.neuromodulation.org/neuralinterfaces.html?utm_campaign=NI+2025+Link&amp;utm_source=linkedin&amp;utm_medium=social&amp;utm_term=&amp;utm_content=&amp;cpn_id=67b781120a3cc5615d1c20f9&amp;e_id=67b780a30a3cc5615d1c20e2">Register here</a></p></li><li><p><strong>NeuroNext 2025: Neurotech, Networking, and Innovation</strong><br>&#128197; <strong>Date:</strong> Thursday, May 8, 2025 | UCL Roberts Building, London WC1E 7JE<br>&#128341; <strong>Time:</strong> 6:00 PM &#8211; 9:00 PM (GMT+1)</p><p><strong>Why Attend?</strong><br>Join NeuroNext 2025 for an evening of innovation, keynote talks, startup showcases, and networking with leading researchers, founders, and investors in the neurotech space. <a href="https://www.eventbrite.co.uk/e/neuronext-tickets-1279289442159">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: Flow Neuroscience &#8211; A Smarter Way to Treat Depression at Home</strong></p><p>In this edition&#8217;s case study spotlight, we explore <strong>Flow Neuroscience</strong>, a leading healthtech company redefining how depression is treated. With its clinically validated brain stimulation headset and companion therapy app, Flow brings neuroscience-driven treatment into the home, making it more accessible and personalized. Founded in 2016, Flow is at the forefront of non-invasive mental health care solutions, offering a unique approach to managing <strong>Major Depressive Disorder (MDD)</strong> by combining <strong>tDCS (transcranial direct current stimulation)</strong> and digital behavioral therapy.</p><p><strong>Overview: </strong>Flow Neuroscience offers a <strong>non-invasive brain stimulation headset</strong> that targets brain regions associated with mood regulation, specifically the dorsolateral prefrontal cortex. The headset is paired with a therapy app rooted in behavioral science, designed to help users adopt healthier habits alongside their stimulation sessions. Used both privately and within UK health services, including the <strong>NHS</strong>, Flow has shown promise as a complementary or standalone treatment for individuals suffering from depression, especially those for whom traditional medication has not worked.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!0D0N!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!0D0N!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 424w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 848w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 1272w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!0D0N!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp" width="1357" height="900" 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srcset="https://substackcdn.com/image/fetch/$s_!0D0N!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 424w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 848w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 1272w, https://substackcdn.com/image/fetch/$s_!0D0N!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F80ebf350-7f6d-4cc1-a93e-3df0192a5563_1357x900.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>Brain Stimulation Meets Behavior Change: </strong>Flow delivers gentle electrical pulses to mood-regulating areas of the brain using tDCS, addressing regions typically underactive in individuals with depression. Backed by neuroscience research, this brain stimulation is reinforced by the Flow app&#8217;s cognitive-behavioral techniques, helping users build sustainable mental health habits over time.</p></li><li><p><strong>NHS-backed Implementation: </strong>Flow is in active use by NHS services in West London, Northamptonshire, and Leicestershire. As reported by NHS teams using Flow, one crisis team reported up to a 75% reduction in thoughts of self-harm and suicide. Clinicians also observed positive results in cases of treatment-resistant and postnatal depression, with NHS Practitioner Health staff also adopting the tool.</p></li><li><p><strong>Clinical Evidence of Efficacy: </strong>A 2024 clinical trial published in <em>Nature Medicine</em> reported that 57% of Flow users reached full remission within 10 weeks. Additionally, 64% experienced a 50% or greater reduction in symptoms, with no serious side effects documented throughout the study.</p></li><li><p><strong>At-Home Accessibility: </strong>The Flow solution enables patients to manage their mental health from the comfort of home. Daily sessions, guided routines, and personalized behavioral goals offer an experience that blends science with everyday usability, empowering users and reducing barriers to care.</p></li></ul><p><strong>Target Audience:</strong> Flow is designed for use by:-</p><ul><li><p>Individuals diagnosed with <strong>Major Depressive Disorder</strong>, including those who prefer or require non-pharmaceutical treatment options</p></li><li><p><strong>Clinicians</strong> seeking adjunctive therapies for their patients</p></li><li><p><strong>Healthcare systems</strong> exploring scalable, tech-enabled solutions for mental health</p></li><li><p><strong>Mental health professionals</strong> looking to complement traditional therapies with neuroscience-based tools</p></li></ul><p><strong>Key Partnerships: </strong>Flow Neuroscience collaborates with renowned academic institutions, healthcare providers, and mental health services to support the ongoing validation and development of its treatment. These partnerships ensure that the Flow solution remains rooted in clinical research and continues to evolve in alignment with the latest findings in neuroscience and mental health care. Through these collaborations, Flow strengthens its commitment to delivering safe, effective, and accessible treatment options for depression..</p><p><strong>Leadership Team: </strong>The vision behind Flow Neuroscience comes from its co-founders, Daniel M&#229;nsson, a clinical psychologist, and Erik Rehn, an engineer with a background in neuroscience. Their combined expertise in mental health and technology laid the foundation for Flow&#8217;s unique approach to treating depression. Under the leadership of CEO Erin Lee, who brings experience from global tech and health platforms, the team continues to blend clinical insight with user-focused innovation. Supported by seasoned professionals in psychiatry and research, Flow maintains a strong commitment to evidence-based care and mental health advancement.</p><p>For more information about <strong>Flow Neuroscience</strong> and its home-based depression treatment system, visit <a href="https://www.flowneuroscience.com">www.flowneuroscience.com</a>.</p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><ul><li><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></li></ul></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br></em></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p><p></p></div>]]></content:encoded></item><item><title><![CDATA[Europe’s Deep Tech Bet: AI, Neurotech, and the Future of Brain Interfaces- Issue #17]]></title><description><![CDATA[Welcome to Neurotech Pulse - Issue #17!]]></description><link>https://neurotechpulse.substack.com/p/europes-deep-tech-bet-ai-neurotech</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/europes-deep-tech-bet-ai-neurotech</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Mon, 31 Mar 2025 15:01:45 GMT</pubDate><enclosure url="https://substack-post-media.s3.amazonaws.com/public/images/6c354176-6177-45af-9799-406aeaa5d25a_2240x1680.webp" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>Welcome to Neurotech Pulse - Issue #17! In this edition, we explore the latest advancements shaping neurotechnology. Europe is doubling down on deep tech to strengthen its technological autonomy, while Synchron&#8217;s partnership with Nvidia drives AI-driven BCI control, Paradromics&#8217; Connexus BCI is advancing speech restoration, and innovative research at the intersection of AI and neuroscience is transforming how we decode speech and motor functions.</p><p>This issue&#8217;s Case Study Spotlight features Muse S Athena, a groundbreaking wearable that integrates EEG and fNIRS for real-time cognitive training and brain health optimization. Developed by Interaxon, Muse S Athena represents a major leap in consumer neurotechnology, providing AI-driven neurofeedback for focus enhancement, sleep optimization, and workplace performance. Beyond that, we cover Subsense&#8217;s $17M raise for non-surgical BCIs, Vivani&#8217;s strategic spin-off, and new research on wrist-movement decoding for more precise brain-controlled prosthetics. Join us as we explore these breakthroughs, funding updates, and thought-provoking insights shaping the future of neurotech!</p><div><hr></div><h3>&#9889;&#65039;Neurotech Newsflash</h3><ul><li><p><strong>Deep Tech: Europe's Strategic Bet for Technological Autonomy: </strong>A report by Lakestar and partners reveals that deep tech now accounts for nearly a third of European VC investments (&#8364;15B in 2024). However, reliance on U.S. funding raises concerns about long-term autonomy. Stronger domestic support is needed to maximize breakthroughs in BCIs, neuroimaging, and computational neuroscience. <a href="https://techcrunch.com/2025/03/13/could-europes-16b-deeptech-bet-be-a-path-to-autonomy-from-the-us/?guccounter=1&amp;guce_referrer=aHR0cHM6Ly90LmNvLw&amp;guce_referrer_sig=AQAAAGqIyM91pih-spT3j-feThNZY5AkgCStJtXx9pHzoB7xOTixs_TcLtnAdZA_nkRNqIJ_pplBcYD7F4F_mJ_ApO0zbiKZACai9StEThmWZteG_csvELLrDdX0Q4VKL1IziEF_YTXbBXH655REmk-bENsF6KFKr4ES-2BbAMLj3Smj">(Read more)</a></p></li><li><p><strong>NeuroPace Secures $65M to Expand Brain-Responsive Neuromodulation for Epilepsy:</strong> NeuroPace has announced a $65M public offering to advance its FDA-approved RNS system, a brain-responsive neurostimulation technology designed to detect and prevent seizures in real time. <a href="https://www.massdevice.com/neuropace-announces-65m-offering-neuromod/">(Read more)</a></p></li><li><p><strong>Real vs. Imagined Navigation: How the Brain Maps Both: </strong>A <em>Nature</em> study reveals that the brain encodes real and imagined navigation similarly, using hippocampal theta oscillations. This suggests memory and imagination share a neural foundation, advancing BCIs for assistive navigation, VR training, and rehabilitation. <a href="https://www.nature.com/articles/s41562-025-02119-3">(Read more)</a></p></li><li><p><strong>Vivani to Spin Off Neurostimulation Business, Focus on GLP-1 Implants: </strong>Vivani Medical (Nasdaq: VANI) is spinning off Cortigent, its neurostimulation division, to focus solely on GLP-1-delivering implants. Cortigent will continue developing brain implants for restoring body functions, while Vivani advances its NanoPortal drug implants. The spin-off will be executed through a Form 10 registration, allowing Vivani shareholders to participate in Cortigent&#8217;s future. <a href="https://www.massdevice.com/vivani-to-spin-out-neurostim-business-focus-on-glp-1-implant/">(Read more)</a></p></li><li><p><strong>Synchron Integrates Nvidia&#8217;s AI for BCI Control: </strong>Synchron has integrated Nvidia&#8217;s AI into its brain-computer interface, enabling users with paralysis to control their environment using only their thoughts. Unveiled at Nvidia GTC, this advancement leverages Holoscan for faster, more accurate brain signal decoding. As "cognitive AI" advances, ethical concerns around privacy and autonomy arise. <strong>(</strong><a href="https://www.wired.com/story/synchrons-brain-computer-interface-now-has-nvidias-ai/">Read more</a><strong>)</strong></p><div><hr></div></li></ul><h3>&#128176;Notable Funding</h3><ul><li><p>Subsense Raises $17M to Develop Non-Surgical Nanoparticle-Based BCI<strong>:</strong> Emerging from stealth, Subsense is pioneering a bidirectional brain-computer interface that enhances brain connectivity without surgery. <a href="https://www.businesswire.com/news/home/20250218878648/en/Subsense-Emerges-from-Stealth-with-%2417M-in-Seed-Funding-for-a-Non-Surgical-Brain-Computer-Interface">(Read more)</a></p></li><li><p>Brain.Space raises $11M in Series A to advance brain data-driven mental modeling and neurotech innovation. <a href="https://www.prnewswire.com/news-releases/brainspace-announces-11m-series-a-funding-round-to-accelerate-design-of-brain-data-driven-mental-modeling-302404529.html">(Read more)</a></p></li><li><p>Piramidal (YC W24) secures investment to advance AI-driven EEG analysis for enhanced neurological care. <a href="https://www.linkedin.com/posts/nicholbradford_neuroscience-artificialintelligence-healthtech-activity-7298326676369809408-uDXb/">(Read more)</a></p></li><li><p>Motif Neurotech picks up grant to develop brain-computer interface (<a href="https://www.massdevice.com/motif-neurotech-grant-develop-bci-tech/">Read More</a>)</p></li></ul><div><hr></div><h3>&#129504; Neurotech Trends:</h3><ol><li><p><strong>Decoding Wrist Movements for More Accurate BCIs:</strong> A study published in <em>Biomimetics</em> has improved BCI accuracy by decoding wrist flexion and extension movements using EEG data from multiple brain regions. Researchers achieved 90.68% accuracy in classifying bilateral wrist movements, which could significantly enhance brain-controlled prosthetics and neuromorphic computing. This breakthrough underscores the importance of analyzing diverse brain frequency bands for more precise neural interfaces. <a href="https://neuromorphiccore.ai/wrist-signals-decoded-a-brain-controlled-leap-for-neuromorphic-models/">(Read more)</a></p></li><li><p><strong>GPUs Go Biological: The Rise of Living Neuron Compute: </strong>Biological Black Box (BBB) has emerged from stealth with Bionode, a computing platform that integrates lab-grown neurons with traditional processors. By leveraging neurons&#8217; natural adaptability, BBB aims to create a low-power, self-optimizing alternative to GPUs, reducing AI training energy costs and improving efficiency. The company, backed by Nvidia&#8217;s Inception incubator, is already using its neural chips to enhance computer vision and large language models (LLMs). While still in early stages, biological computing could reshape AI hardware, offering a hybrid ecosystem alongside silicon and quantum computing. (<a href="https://venturebeat.com/ai/gpus-go-biological-bbb-unveils-bionode-lab-grown-living-neuron-compute-for-ai-applications/?utm_source=www.theneurondaily.com&amp;utm_medium=newsletter&amp;utm_campaign=ai-s-moore-s-law-is-insane&amp;_bhlid=32bcdac2aa61f0dac930934823c1679f08ecb299">Read more</a>)</p></li><li><p><strong>Restoring Speech with Brain Implants &#8211; Paradromics' Connexus BCI</strong></p><p>Paradromics, an Austin-based neurotech company, is at the forefront of speech restoration for paralyzed individuals with its Connexus BCI. This BCI, implanted under the skull, uses 421 micro-wires to detect neuron activity and translate it into digital speech. The system aims to help individuals who have lost their ability to speak due to paralysis, allowing them to communicate through a computer in real-time. With the Connexus BCI Clinical Study set to begin in late 2025, Paradromics envisions a broader future for BCI technology, potentially addressing mental health disorders and neurological conditions like Parkinson&#8217;s disease. The company&#8217;s approach underscores a growing shift in neurotech&#8212;where biological challenges are met with engineering-driven solutions to improve quality of life. <a href="https://cbsaustin.com/news/local/paradromics-brain-implant-targets-speech-restoration">(Read more)</a></p></li><li><p><strong>AI-Powered Speech Mapping for Real-Time Conversations: </strong>Researchers from the Hebrew University of Jerusalem, in collaboration with Princeton Neuroscience Institute and NYU Langone, have developed a computational framework that deciphers how the brain processes speech in real-world conversations. Using electrocorticography (ECoG) and AI speech models, the study tracked over 100 hours of brain activity, revealing how different brain regions process sounds, speech patterns, and word meanings in sequence. This model outperforms previous approaches in predicting neural responses during natural dialogue. The findings could enhance speech recognition technology and aid individuals with communication disorders. <em><a href="https://neurosciencenews.com/speech-processing-auditory-neuroscience-28472/">(</a></em><a href="https://neurosciencenews.com/speech-processing-auditory-neuroscience-28472/">Read more</a><em><a href="https://neurosciencenews.com/speech-processing-auditory-neuroscience-28472/">)</a></em></p></li></ol><div><hr></div><h3>&#128216; Neurotech Articles:</h3><ol><li><p><strong>AI-Enhanced BCI Helps Paralyzed Man Control Robotic Arm for Months</strong><br>Researchers at UC San Francisco have developed a brain-computer interface (BCI) that allowed a paralyzed man to control a robotic arm using only his thoughts&#8212;and it remained functional for seven months without major recalibration. Traditional BCIs typically work for only a few days before needing adjustments. This breakthrough was made possible by an AI model that adapts to shifts in brain activity, improving precision over time. By first training on a virtual robotic arm, the participant refined his movements before transitioning to the real robotic arm, where he successfully picked up and moved objects, opened a cabinet, and even held a cup under a water dispenser. The study, published in <em>Cell</em>, marks a significant step toward real-world applications of BCIs to enhance independence for people with paralysis. Researchers now aim to improve the system&#8217;s speed and test it in home environments. <a href="https://www.ucsf.edu/news/2025/03/429561/how-paralyzed-man-moved-robotic-arm-his-thoughts">(Read more)</a></p></li><li><p><strong>Cognixion's Axon-R: AI-Powered AR Headset for Locked-In Syndrome Patients</strong></p><p>Cognixion has launched clinical trials for Axon-R, a non-invasive BCI headset designed to help individuals with locked-in syndrome communicate. Unlike invasive BCIs like Neuralink, Axon-R uses EEG to detect brain activity through the skull, eliminating the need for surgery. The headset integrates AI, machine learning, and AR, displaying a floating UI that refines user choices based on brain responses. It personalizes communication, preserving users' conversational styles and enabling even those who cannot move their eyes to interact. This marks a breakthrough in accessible neurotechnology, offering new hope for individuals with severe paralysis. <a href="https://www.pcgamer.com/hardware/new-headset-reads-minds-and-uses-ar-ai-and-machine-learning-to-help-people-with-locked-in-syndrome-communicate-with-loved-ones-again/">(Read more)</a></p></li><li><p><strong>Robotics and Spinal Stimulation Restore Movement in Paralysis: </strong>Scientists at <em>NeuroRestore</em> (EPFL/CHUV/UNIL) have developed an approach that combines rehabilitation robotics with spinal cord stimulation to restore movement in people with spinal cord injuries. Led by Gr&#233;goire Courtine and Jocelyne Bloch, the team integrated an implanted spinal cord neuroprosthesis with robotic rehabilitation devices, delivering precise electrical pulses that synchronize with movement. In a study with five participants, the system enabled sustained muscle activation, even improving voluntary movement after stimulation was turned off. The technology was successfully tested with treadmills, exoskeletons, and stationary bikes, demonstrating seamless integration with widely used rehabilitation systems. Beyond clinical trials, participants used the system to walk with a rollator and cycle outdoors, highlighting its real-world impact. This innovation presents a more dynamic, engaging approach to recovery and could redefine mobility restoration after paralysis. <a href="https://actu.epfl.ch/news/robotics-and-spinal-stimulation-restore-movement-i/">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><strong>Virtual BR41N.IO Designers' Hackathon (Online)</strong><br>&#128197; Date: May 3&#8211;4, 2025</p><p><strong>Why Attend the Event?</strong><br>Join the BR41N.IO Designers' Hackathon, a hands-on competition where developers, engineers, students, artists, and scientists collaborate to create Brain-Computer Interface (BCI) applications. </p><p><em><strong>Link to register</strong></em><strong>:</strong> <a href="https://www.br41n.io/Spring-School-2025">Register here</a></p></li><li><p><strong>Neural Interfaces 2025</strong><br>&#128197; <strong>June 12&#8211;14, 2025</strong> | Crystal Gateway Marriott, Arlington, VA<br><strong>Why Attend the Event?</strong></p><p>Join Neural Interfaces 2025, the premier conference on neurotechnology, BCIs, and neuromodulation, bringing together scientists, engineers, clinicians, and industry leaders to advance the field.</p><p><em><strong>Link to register</strong></em><strong>:</strong> <a href="https://www.neuromodulation.org/neuralinterfaces.html">Register here</a></p><div><hr></div></li></ol><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: Muse S Athena &#8211; Advancing Cognitive Fitness with EEG and fNIRS</strong></p><p>In this edition's case study spotlight, we examine the Muse S Athena, a brain-sensing wearable that combines <strong>Electroencephalogram</strong> (EEG) and <strong>Functional Near-Infrared Spectroscopy (fNIRS)</strong> to provide real-time cognitive insights and training. Developed by Interaxon, Muse S Athena represents a significant evolution in consumer neurotechnology, bridging the gap between brain research and everyday cognitive fitness.</p><p><strong>Overview:</strong> Muse S Athena is the <strong>first consumer wearable</strong> to integrate EEG and fNIRS technology, enabling users to measure brain activity and cerebral blood oxygenation in real-time. This dual-sensor system offers a deeper understanding of cognitive effort, focus, and mental resilience, empowering users to optimize their brain health. By leveraging AI-driven neurofeedback and insights from Muse&#8217;s Foundational Brain Model (FBM)&#8212;trained on over <strong>80,000 EEG sessions</strong>&#8212;Athena personalizes brain training experiences, making advanced neuroscience accessible for everyday cognitive fitness, sleep optimization, and mental endurance development.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!c8zP!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!c8zP!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 424w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 848w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 1272w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!c8zP!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp" width="1456" height="778" 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srcset="https://substackcdn.com/image/fetch/$s_!c8zP!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 424w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 848w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 1272w, https://substackcdn.com/image/fetch/$s_!c8zP!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F0c4060b2-e492-45b3-829d-7f1d0f8e5254_1764x942.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><p><strong>AI-Powered Cognitive Training: </strong>Muse S Athena transforms cognitive fitness by providing real-time neurofeedback using EEG and fNIRS. This combination enables precise monitoring of brain function, guiding users to enhance their focus, resilience, and endurance. A key feature is the interactive neurofeedback game, where users control an owl&#8217;s flight using only mental effort, reinforcing engagement and cognitive control.</p><p><strong>Enhancing Focus and Mental Endurance: </strong>EEG technology in Athena tracks neural oscillations, helping users maintain prolonged concentration. Meanwhile, fNIRS monitors prefrontal cortex oxygenation, providing insights into mental workload and cognitive fatigue. This synergy allows users to develop stronger attention spans and reduce distractions over time.</p><p><strong>Sleep Optimization and Recovery: </strong>Beyond cognitive training, Muse S Athena functions as an advanced sleep tracker. By integrating EEG and SpO&#8322; monitoring, it delivers precise sleep insights and detects early signs of sleep disorders like apnea. The Digital Sleeping Pills feature aids in deeper rest, promoting overall brain recovery and long-term cognitive health.</p><p><strong>Workplace Performance and Neuroergonomics: </strong>Athena supports professionals in high-stress environments by tracking cognitive load, helping optimize productivity and prevent burnout. By offering personalized insights into mental strain, the device aids in improving workplace efficiency and decision-making.</p><p><strong>Cognitive Aging and Neuroplasticity Research: </strong>With the growing prevalence of neurodegenerative conditions, Athena serves as a proactive tool for cognitive health. Its fNIRS capabilities help track brain vascular changes, supporting interventions for age-related cognitive decline.</p><p><strong>Target Audience:</strong> Muse S Athena is designed for a wide range of users, including</p><ul><li><p><strong>Cognitive fitness enthusiasts</strong> looking to enhance focus, resilience, and mental endurance.</p></li><li><p><strong>Researchers and clinicians</strong> utilizing EEG and fNIRS for neurotechnology studies and mental health assessments.</p></li><li><p><strong>Professionals in high-performance fields</strong> seeking cognitive load optimization and stress management tools.</p></li><li><p><strong>Individuals interested in proactive brain health</strong>, including those aiming to mitigate cognitive decline through targeted interventions.</p></li></ul><p><strong>Key Partnerships:</strong> Muse collaborates with leading research institutions such as MIT, Harvard, and the Mayo Clinic to advance neurotechnology applications. With over 200 third-party research studies validating its efficacy, Muse has built one of the largest EEG databases, driving the evolution of brain health solutions.</p><p><strong>Leadership Team:</strong> Interaxon, the company behind Muse, is spearheaded by CEO Jean-Michel Fournier. Under his leadership, Muse has evolved from a meditation-focused product to a full-spectrum cognitive fitness platform, redefining brain health through AI-powered insights and dual-sensor neurofeedback technology.</p><p>For more information about Muse S Athena and how it is shaping the future of cognitive fitness, visit <a href="https://www.choosemuse.com">Muse by Interaxon</a>.</p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><ul><li><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></li></ul></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.</em></p><p></p><p><em>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p></div><p></p><p></p><p></p><p></p><p></p>]]></content:encoded></item><item><title><![CDATA[CES 2025: Where Technology Meets Humanity 💡- Issue #15 ]]></title><description><![CDATA[As we kick off 2025, we are excited to bring you the latest edition of Neurotech Pulse, diving into the most remarkable moments from CES 2025, the world&#8217;s premier tech event.]]></description><link>https://neurotechpulse.substack.com/p/ces-2025-where-technology-meets-humanity</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/ces-2025-where-technology-meets-humanity</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Fri, 31 Jan 2025 15:01:41 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!quuZ!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>As we kick off 2025, we are excited to bring you the latest edition of <strong>Neurotech Pulse</strong>, diving into the most remarkable moments from CES 2025, the world&#8217;s premier tech event. This year&#8217;s showcase was nothing short of extraordinary, featuring transformative innovations in neurotechnology and brain-computer interfaces. From game-changing product launches to groundbreaking collaborations, CES 2025 illuminated the future of technology, focusing on how these advancements are reshaping industries, improving lives, and inspiring a better tomorrow.</p><p>We&#8217;re also excited to highlight key moments and companies that stood out, from thought leaders in brain-sensing technologies to revolutionary startups pushing the boundaries of what&#8217;s possible. As we move forward into the year, we invite you to join us in exploring how these innovations are paving the way for the next generation of neurotech solutions.</p><div><hr></div><h3><strong>The Evolution of Neurotech at CES</strong></h3><p>At CES 2025, neurotechnology emerged as a mainstream industry, with BCIs and wearable devices transforming areas like health diagnostics, productivity, and entertainment. Exhibitors showcased the growing adoption of brain-driven technologies across industries, offering insights into applications in cognitive health, smart devices, and neural augmentation. This marks an exciting time for neurotech, as it becomes integral to sectors such as healthcare, gaming, and wellness.</p><p>The event emphasized the important role of AI in advancing neurotechnology, highlighting its potential for widespread adoption. Innovations in AI, quantum computing, and digital health are driving rapid advancements, making BCIs more powerful, efficient, and accessible. These developments signal a future where neurotechnology seamlessly integrates with daily life, reshaping how we interact with technology and enhancing human potential.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!quuZ!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!quuZ!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 424w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 848w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!quuZ!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg" width="1280" height="720" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:720,&quot;width&quot;:1280,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:129588,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/jpeg&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:false,&quot;topImage&quot;:true,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!quuZ!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 424w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 848w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!quuZ!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1146a50a-d484-4e39-a843-e51399f81995_1280x720.jpeg 1456w" sizes="100vw" fetchpriority="high"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><div><hr></div><h3><strong>&#128640; Innovations at CES 2025</strong></h3><p>As CES 2025 showcased groundbreaking innovations, several products stood out for their intersection with neurotechnology. Here are some highlights:</p><ul><li><p><strong>Tone Buds : Brain-Sensing Earbuds</strong><br><em>Tone Buds are brain-sensing earbuds that utilize EEG technology to monitor brain activity in real-time, offering personalized soundscapes designed to improve sleep quality. As per the company these earbuds adjust sound patterns based on brainwave feedback, creating an environment conducive to better sleep and mental wellness. The combination of neurofeedback and sleep enhancement positions Tone Buds as an exciting development for those looking to leverage neurotechnology for wellness.  <a href="https://mytone.io/">(Know more)</a></em></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!7FYV!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!7FYV!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 424w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 848w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!7FYV!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg" width="866" height="481" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/ae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:481,&quot;width&quot;:866,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:null,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!7FYV!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 424w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 848w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!7FYV!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fae2bf79c-9363-4f4a-a62e-b884f90639e4_866x481.jpeg 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p></p></li><li><p><strong>Omi: AI Companion</strong></p><p><em>Based Hardware, a San Francisco startup, unveiled its latest innovation, Omi, at CES 2025, an AI device designed to boost productivity through innovation. Omi AI companion functions as a regular AI device, similar to the Limitless Pendant, Humane AI Pin, and Friend. It can summarize meetings, answer queries, search the web for real-time information, and perform other AI chatbot tasks per the company.</em> <a href="https://www.omi.me/">(Know more)</a></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!lJI3!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!lJI3!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 424w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 848w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 1272w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!lJI3!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png" width="696" height="389.5915279878971" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:false,&quot;imageSize&quot;:&quot;normal&quot;,&quot;height&quot;:740,&quot;width&quot;:1322,&quot;resizeWidth&quot;:696,&quot;bytes&quot;:345145,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/png&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!lJI3!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 424w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 848w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 1272w, https://substackcdn.com/image/fetch/$s_!lJI3!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F48d8da19-71b7-49c9-80ab-b21702f1794c_1322x740.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p></p></li><li><p><strong>Mudra Link : Neural Wristband</strong><br><em>The Mudra Link uses a neural wristband to capture wrist movements and hand gestures, allowing users to control devices hands-free. As per the company, this AI-powered technology facilitates seamless interaction with devices in a way they describe as intuitive and brainwave-like, with potential applications spanning VR/AR and neurotech-inspired control systems. <a href="https://mudra-band.com/">(Know more)</a></em></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!Nuv1!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!Nuv1!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 424w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 848w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 1272w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!Nuv1!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp" width="688" height="387" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/c94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:360,&quot;width&quot;:640,&quot;resizeWidth&quot;:688,&quot;bytes&quot;:21158,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/webp&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!Nuv1!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 424w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 848w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 1272w, https://substackcdn.com/image/fetch/$s_!Nuv1!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc94e681d-2e87-44e0-9ae9-7bf633bd730b_640x360.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p></p></li><li><p><strong>EvieAI : Wellness Assistant</strong><br><em>Movano Health's EvieAI, integrated into their wellness app, offers personalized health insights based on an extensive database of over 100,000 medical journal articles as per the company. Trained to address various health queries, this AI assistant shows great promise in integrating neurotech for accurate, brain-related health advice. <a href="https://movanohealth.com/">(Know more)</a></em></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!FpzO!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!FpzO!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 424w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 848w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 1272w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!FpzO!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp" width="1280" height="821" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:821,&quot;width&quot;:1280,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:30594,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/webp&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!FpzO!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 424w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 848w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 1272w, https://substackcdn.com/image/fetch/$s_!FpzO!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F37dfdc79-2fef-4031-b64a-24f4691bad55_1280x821.webp 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p></p></li></ul><ul><li><p><strong>myWaves : Sleep Solution Kit</strong><br><em>The myWaves Sleep Solution Kit claims to use a unique approach by capturing the brain&#8217;s delta waves and creating personalized soundscapes to improve sleep quality. By targeting brainwave patterns directly, the device exemplifies the role of neurotech in enhancing sleep and wellness through non-invasive methods. <a href="https://mywaves.tech/">(Know more)</a></em></p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!sk8u!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!sk8u!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 424w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 848w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!sk8u!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg" width="678" height="452" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:380,&quot;width&quot;:570,&quot;resizeWidth&quot;:678,&quot;bytes&quot;:null,&quot;alt&quot;:&quot;A promo image of a person wearing a myWaves device while sleeping in a bed.&quot;,&quot;title&quot;:null,&quot;type&quot;:null,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="A promo image of a person wearing a myWaves device while sleeping in a bed." title="A promo image of a person wearing a myWaves device while sleeping in a bed." srcset="https://substackcdn.com/image/fetch/$s_!sk8u!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 424w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 848w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!sk8u!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F1cedd72a-7e48-49d5-89dd-f08caa8ca28f_570x380.jpeg 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p></p></li><li><p><strong>CosmoRobotics : Neuro Exoskeletons</strong><br><em>CosmoRobotics&#8217; exoskeletons offer a unique application of neurotechnology for individuals with mobility impairments. As per the company, these wearable devices provide biomechanical support to assist with walking and rehabilitation, particularly for those with conditions like hemiplegia or muscle weakness. The exoskeletons aim to enhance mobility and improve rehabilitation outcomes by integrating neuro-driven technology. This serves as a powerful example of how neurotechnology can aid in mobility and support recovery. <a href="https://www.cosmo-robotics.com/eng/about/about.php">(Know more)</a></em></p></li></ul><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!-Xpb!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!-Xpb!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 424w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 848w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 1272w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!-Xpb!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png" width="408" height="568.8175182481751" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/c11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:1146,&quot;width&quot;:822,&quot;resizeWidth&quot;:408,&quot;bytes&quot;:573345,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/png&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!-Xpb!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 424w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 848w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 1272w, https://substackcdn.com/image/fetch/$s_!-Xpb!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2Fc11eb40b-5b8e-49eb-a3c2-3b5fe10ef40a_822x1146.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" 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y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><div><hr></div><h3>Humanoid Robotics at CES 2025: Realbotix's Melody and the Future of Human-Robot Interaction</h3><p>At <strong>CES 2025</strong>, Realbotix unveiled their latest humanoid robot, <strong>Melody</strong>, a game-changing example of how <strong>robotics, AI, and human interaction</strong> are rapidly evolving. Melody&#8217;s advanced features represent a leap forward in creating robots that aren&#8217;t just functional but also capable of meaningful interaction and adaptability in various settings, from healthcare to entertainment.</p><p><strong>Key Features and Neurotech Potential</strong>:</p><ul><li><p><strong>Eye Tracking &amp; Object Recognition</strong>: Melody&#8217;s ability to track movement and maintain eye contact through integrated micro-cameras offers a human-like interaction experience. This eye tracking could play a significant role in neurofeedback systems, aiding in applications related to cognitive training or mental health by providing real-time responses to user behavior.</p></li><li><p><strong>Modular Design</strong>: With interchangeable parts, Melody can be customized for various tasks, such as in patient care, where adaptable robots can assist in personalized Neurotherapy or help monitor patient conditions over time. The flexibility of modular design could also enhance the user experience in BCI interfaces, allowing for robots that dynamically respond to brain signals and modify their behavior accordingly.</p></li><li><p><strong>Open-Source AI Integration</strong>: The robot&#8217;s open-source platform enables integration with third-party AI platforms, such as ChatGPT, and can easily be adapted for neurotech applications. This could open doors for the use of humanoid robots in neurotechnology settings, where robots assist in training, research, or personalized therapeutic services by engaging directly with brain-computer interface systems.</p></li><li><p><strong>Advanced Mobility</strong>: With enhanced movement capabilities, Melody's fluid motions could be used in environments where interaction with BCIs or neurofeedback systems is necessary, creating new possibilities for immersive neurotech applications.</p></li></ul><p>As the humanoid robot market continues to expand, Melody&#8217;s blend of mobility, interactivity, and AI integration could pave the way for next-gen neurotech solutions, merging the fields of robotics, AI, and brain-computer interfaces. Melody is an exciting example of how these technologies could evolve to create more responsive, intuitive, and impactful applications in the world of neurotechnology.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!aALC!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!aALC!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 424w, https://substackcdn.com/image/fetch/$s_!aALC!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 848w, https://substackcdn.com/image/fetch/$s_!aALC!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!aALC!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!aALC!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg" width="686" height="386" data-attrs="{&quot;src&quot;:&quot;https://substack-post-media.s3.amazonaws.com/public/images/7342322a-5874-4802-b045-ffe440691587_686x386.jpeg&quot;,&quot;srcNoWatermark&quot;:null,&quot;fullscreen&quot;:null,&quot;imageSize&quot;:null,&quot;height&quot;:386,&quot;width&quot;:686,&quot;resizeWidth&quot;:null,&quot;bytes&quot;:47661,&quot;alt&quot;:null,&quot;title&quot;:null,&quot;type&quot;:&quot;image/jpeg&quot;,&quot;href&quot;:null,&quot;belowTheFold&quot;:true,&quot;topImage&quot;:false,&quot;internalRedirect&quot;:null,&quot;isProcessing&quot;:false,&quot;align&quot;:null,&quot;offset&quot;:false}" class="sizing-normal" alt="" srcset="https://substackcdn.com/image/fetch/$s_!aALC!,w_424,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 424w, https://substackcdn.com/image/fetch/$s_!aALC!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 848w, https://substackcdn.com/image/fetch/$s_!aALC!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 1272w, https://substackcdn.com/image/fetch/$s_!aALC!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F7342322a-5874-4802-b045-ffe440691587_686x386.jpeg 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><div><hr></div><h4><strong>NeuroTech 2025: The Future of Neurotechnology &#8211; Insights from CES</strong></h4><p>The Neurotech panel discussion at CES 2025 highlighted the transformative potential of neurotechnology across healthcare, mental health, and education. Applications such as rehabilitation, prosthetics, and personalized treatments are set to redefine the quality of life. However, the panelists stressed the need to address public misconceptions, fears around data privacy, and skepticism stemming from past failures. Technical challenges, including the robustness of devices, lengthy development cycles, and the integration of AI, remain hurdles to widespread adoption. Despite these obstacles, innovations such as closed-loop systems, miniaturized non-invasive devices, and data-driven medicine are paving the way for impactful solutions in neurotechnology.</p><p>Looking ahead, neurotechnology shows promise in addressing chronic conditions, improving mental health care, and supporting patients with neurological disorders. The panel emphasized the importance of public education to dispel myths and foster acceptance. Ethical concerns, inclusivity, and collaboration between stakeholders were identified as critical to ensuring responsible development. With breakthroughs in minimally invasive implants and AI-driven systems, neurotechnology is set to transform medicine and redefine how humans interact with technology, paving the way for a promising future.</p><div id="youtube2-h16NKXlyRCw" class="youtube-wrap" data-attrs="{&quot;videoId&quot;:&quot;h16NKXlyRCw&quot;,&quot;startTime&quot;:null,&quot;endTime&quot;:null}" data-component-name="Youtube2ToDOM"><div class="youtube-inner"><iframe src="https://www.youtube-nocookie.com/embed/h16NKXlyRCw?rel=0&amp;autoplay=0&amp;showinfo=0&amp;enablejsapi=0" frameborder="0" loading="lazy" gesture="media" allow="autoplay; fullscreen" allowautoplay="true" allowfullscreen="true" width="728" height="409"></iframe></div></div><div><hr></div><h3><strong>&#128302;Looking Ahead: The Future of BCI and Neurotech Innovation</strong></h3><p>CES 2025 demonstrated that the future of neurotechnology is bright, with rapid advancements in digital health and computing technologies, the future of BCI promises even more seamless integration with daily life, from healthcare to smart environments. As BCIs become more advanced, we expect to see even more significant changes in how we interact with technology and enhance human potential. </p><p>As we move into 2025, we will continue to watch closely as the neurotech ecosystem grows, and we look forward to collaborating with innovators and thought leaders at the forefront of BCI and neurotechnology.<br></p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><ul><li><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></li></ul></blockquote><div><hr></div><h3><strong>&#128161;Question:</strong></h3><div class="poll-embed" data-attrs="{&quot;id&quot;:258649}" data-component-name="PollToDOM"></div><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br><br><br><br>Thanks for reading Neurotech Pulse! Subscribe for free to receive new posts.</em></p><p class="button-wrapper" data-attrs="{&quot;url&quot;:&quot;https://neurotechpulse.substack.com/subscribe?&quot;,&quot;text&quot;:&quot;Subscribe now&quot;,&quot;action&quot;:null,&quot;class&quot;:null}" data-component-name="ButtonCreateButton"><a class="button primary" href="https://neurotechpulse.substack.com/subscribe?"><span>Subscribe now</span></a></p><p></p></div>]]></content:encoded></item><item><title><![CDATA[Mapping the Mind: Paving the Way for Smarter Neurotech Solutions in 2025- Issue #14]]></title><description><![CDATA[As we step into 2025, we&#8217;re excited to present the 14th edition of Neurotech Pulse, showcasing groundbreaking innovations and remarkable milestones in the world of neurotechnology.]]></description><link>https://neurotechpulse.substack.com/p/mapping-the-mind-paving-the-way-for</link><guid isPermaLink="false">https://neurotechpulse.substack.com/p/mapping-the-mind-paving-the-way-for</guid><dc:creator><![CDATA[Pulse Writer]]></dc:creator><pubDate>Thu, 09 Jan 2025 15:00:43 GMT</pubDate><enclosure url="https://substackcdn.com/image/fetch/$s_!AYMB!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png" length="0" type="image/jpeg"/><content:encoded><![CDATA[<p>As we step into 2025, we&#8217;re excited to present the <strong>14th edition of </strong><em><strong>Neurotech Pulse</strong></em>, showcasing groundbreaking innovations and remarkable milestones in the world of neurotechnology. This issue highlights extraordinary achievements, including Mount Sinai's record-setting brain mapping project, China&#8217;s pioneering work in thought-to-text communication through brain-computer interfaces, and exciting new collaborations in neurology and psychiatry. From brain-sensing earbuds to muscle implants enabling mind-controlled prosthetics, these advancements are unlocking new possibilities in healthcare.</p><p>We&#8217;re also thrilled to feature G.Tec&#8217;s revolutionary g.Pangolin system in our case study, which is raising the bar in brain mapping. As we move into a new year, we invite you to dive into these exciting stories and join us in shaping the future of neurotechnology.</p><p>Wishing you a Happy New Year, and thank you for being an integral part of our journey into the neurotech future. &#129346;</p><div><hr></div><h3>&#9889;&#65039;Neurotech Newsflash</h3><ul><li><p><strong>China Achieves Milestones in BCI, Enabling Thought-to-Text Communication: </strong>A Chinese research team has achieved a breakthrough in brain-computer interface (BCI) technology, allowing patients to convert thoughts into Chinese text for communication. This achievement, marking the world's first-ever New Year&#8217;s greeting delivered via thought, was made possible by the collaboration between NeuroXess, Huashan Hospital, and the Tianqiao and Chrissy Chen Institute. <a href="https://www.globaltimes.cn/page/202501/1326287.shtml">(Read more)</a></p></li><li><p><strong>Neuroelectrics and Neuronostics Partner to Advance EEG Solutions in Clinical Trials:</strong> Neuroelectrics and Neuronostics have joined forces to deliver a seamless integrated EEG solution for clinical trials. Combining Neuroelectrics&#8217; wireless EEG systems with Neuronostics&#8217; advanced analytics, this partnership optimizes participant selection, streamlines trial protocols, and enhances data insights, paving the way for breakthroughs in neurology and psychiatry. <a href="https://www.med-technews.com/news/latest-medtech-news/neuroelectrics-and-neuronostics-partner-to-deliver-integrated-eeg-solutions-for-clinical-trials/">(Read more)</a></p></li><li><p><strong>Mount Sinai Pioneers New Frontiers in Brain Mapping and Neurological Care:</strong> In collaboration with companies like Precision Neuroscience and Synchron, Mount Sinai is exploring new frontiers in stroke rehabilitation, ALS treatment, and intraoperative brain mapping. The health system&#8217;s latest work includes successfully deploying a record-breaking 4,096 electrodes to map brain functions in unprecedented detail, further pushing the boundaries of neurological care. (<a href="https://reports.mountsinai.org/article/fbifall2024-06-rapoport">Read more</a>)</p></li><li><p><strong>Noninvasive Brain Training: Scientists Develop Technique to 'Write' Skills Directly into the Brain: </strong>Researchers from the University of Rochester, Yale, and Princeton have developed a groundbreaking technique that induces learning by directly manipulating brain activity patterns using real-time fMRI and neurofeedback. This method allows individuals to "learn" new skills without conscious effort, opening doors to revolutionary applications in education, rehabilitation, and mental health treatments. <a href="https://www.yahoo.com/news/scientists-matrix-style-learning-write-124135969.html?guccounter=1&amp;guce_referrer=aHR0cHM6Ly93d3cuZ29vZ2xlLmNvbS8&amp;guce_referrer_sig=AQAAAA4AJuKO9VlFH8MbVr7X2Tmim04eVu_MWUPngIEqKQdbk2nPS4ZJEwxBhR2P4WLuGJAfnbiDJEB2dAbVmEgQ4hqyElLdsCYb-49QrZVGscXXDLkZIj0aTa4fSNQUsHT2S2DD5Cx631POc_pMXZYlMLYaojs_LNnKryOjVF0hCS3f">(Read more)</a></p></li><li><p><strong>MW75 Neuro Featured in Popular Science&#8217;s Top 50 Innovations of 2024</strong><br>The MW75 Neuro has been recognized as one of Popular Science's Top 50 Innovations of 2024, joining industry leaders like Apple, Samsung, and Oura. This recognition highlights its significant impact in the neurotechnology field. (<a href="https://www.popsci.com/technology/best-of-whats-new-2024/">Read more)</a></p></li><li><p><strong>IDUN Technologies Partners with Analog Devices for Brain-Sensing Earbuds at CES 2025: </strong>IDUN Technologies has partnered with Analog Devices to launch next-generation brain-sensing earbuds at CES 2025. The collaboration integrates ADI&#8217;s technology to create compact, efficient hearables with advanced brain-sensing capabilities.</p></li><li><p><strong>g.tec medical engineering GmbH Introduces Unicorn Blondy Check</strong><br>Blondy Check is an innovative tool within the Unicorn Suite that leverages the P300 component of visually evoked potentials to categorize images based on user interest. (<a href="https://www.gtec.at/product/unicorn-hybrid-black/">Read more</a>)</p></li><li><p><strong>NeuroPace Completes Enrollment for Brain-Stimulation Epilepsy Study: </strong>NeuroPace, Inc. has completed enrollment and implant procedures in its NIH-funded feasibility study of the RNS&#174; System for treating Lennox-Gastaut Syndrome (LGS), a severe childhood-onset epilepsy. The study, backed by a $9.3 million grant from the NIH BRAIN Initiative, aims to evaluate the safety and effectiveness of brain-responsive neurostimulation in managing LGS seizures. This breakthrough technology could provide new hope for those with drug-resistant epilepsy. <a href="https://investors.neuropace.com/news-releases/news-release-details/neuropace-completes-enrollment-feasibility-study-rns-system">(Read more)</a></p><div><hr></div></li></ul><h3>&#128176;Notable Funding</h3><ul><li><p><a href="https://www.linkedin.com/company/precision-neuroscience-corporation/">Precision Neuroscience</a> Raises $102M in Series C Funding <a href="https://www.globenewswire.com/news-release/2024/12/16/2997364/0/en/Precision-Neuroscience-Raises-102-Million-to-Advance-AI-Powered-Brain-Implant.html">(Read More)</a></p></li><li><p><a href="https://www.nexstem.ai/">Nexstem</a> has secured $3.5 M in a funding round co-led by InfoEdge, Gruhas, Zupee, and Smile Group. (<a href="https://inc42.com/buzz/nexstem-pockets-3-5-mn-to-disrupt-neurotech-space/">Read more</a>)</p></li></ul><div><hr></div><h3>&#129504; Neurotech Trends:</h3><ol><li><p><strong>Temporary Tattoo Printed on the Scalp Provides a Convenient Solution for Measuring Brainwaves: </strong>Researchers from the University of Texas at Austin, led by Nanshu Lu and Jos&#233; Mill&#225;n, along with Ximin He from UCLA, have developed a liquid ink for printing electronic tattoos directly onto the scalp. This innovation simplifies the EEG process by replacing the cumbersome electrodes and wires with biocompatible e-tattoos that adhere even to hairy areas. These e-tattoos offer stable connectivity for over 24 hours, outperforming traditional setups. With potential applications in non-invasive brain-computer interfaces, this breakthrough could significantly enhance accessibility and ease of use for neurotech solutions. (<a href="https://www.sciencedaily.com/releases/2024/12/241202123531.htm">Learn more</a>)</p></li><li><p><strong>Revolutionary Muscle Implants Set to Enhance Mind-Controlled Prosthetics</strong>: Phantom Neuro is developing an under-skin muscle implant that enables amputees to control prosthetics with more precision and natural movement. This implant could replace myoelectric prosthetics, offering a smoother, more accurate control system. In a recent wearable trial, participants achieved high accuracy in robotic arm movements, and the company plans to start clinical trials for the implantable version in 2025. This innovation could improve the functionality of prosthetics and make them more accessible to users. <a href="https://www.wired.com/story/amputees-could-control-prosthetics-with-just-their-thoughts-no-brain-surgery-required-phantom-neuro/">(Learn more)</a></p></li><li><p><strong>Is Neuromodulation the Future of Neurotechnology in Healthcare: </strong>Neuromodulation, using brain stimulation to treat neurological disorders, is making a significant comeback. Once considered outdated, it's now offering hope for conditions like Alzheimer&#8217;s, depression, and chronic pain, where traditional drugs often fall short. Companies like Sinaptica Therapeutics and Flow Neuroscience are pioneering advancements in brain stimulation, showing improvements in patient symptoms. The neuromodulation market, valued at $4.51 billion in 2018, is projected to reach $16.25 billion by 2032, highlighting the growing interest in these targeted therapies.<a href="https://www.healthcare-brew.com/stories/2024/11/22/are-we-entering-neurotechnology-renaissance-healthcare">(Read more)</a></p></li></ol><div><hr></div><h3>&#128216; Neurotech Articles:</h3><ol><li><p><strong>Epiminder's Minder: A 5-Year Breakthrough in Continuous EEG Monitoring</strong><br>Epiminder Pty Ltd has achieved a groundbreaking milestone with its Minder&#174; device, which recorded five years of continuous EEG data in a participant of the UMPIRE study. This is the longest continuous EEG monitoring ever conducted in humans. The sub-scalp device offers long-term data collection, aiding drug-resistant epilepsy patients by enabling more informed treatment decisions. With epilepsy affecting 80 million people worldwide, Minder&#8217;s minimally invasive design provides actionable insights for managing seizure disorders and improving outcomes. This advancement could pave the way for seizure freedom in many patients. (<a href="https://epiminder.com/five-year-milestone/">Read more</a>)</p></li><li><p><strong>Health Rounds: Brain stimulation helps restore walking after paralysis in pilot study: </strong>A recent study published in Nature Medicine shows that deep brain stimulation applied to a new brain region helped two patients with severe spinal cord injuries regain lower limb movement, offering hope for spinal cord injury recovery. Another study presented at the Radiological Society of North America found that genicular artery embolization significantly alleviated knee pain and improved mobility in patients with osteoarthritis, potentially providing an alternative to knee replacement surgery. Additionally, researchers from the University of Texas have developed a new ink that can be sprayed onto the scalp to monitor brain activity, offering a non-invasive alternative to traditional EEG electrodes. The ink forms a thin-film sensor to pick up brainwaves, with stable connectivity for up to 24 hours, and could have wide applications in brain-computer interfaces for prosthetics and virtual reality. <a href="https://www.reuters.com/business/healthcare-pharmaceuticals/health-rounds-brain-stimulation-helps-restore-walking-after-paralysis-pilot-2024-12-04/">(Read more)</a></p></li><li><p><strong>Sculpting the Brain Without Surgery - A New Approach to Learning: </strong>Scientists from the University of Rochester, Yale, and Princeton have developed a novel technique to modify brain activity patterns, enabling individuals to learn without traditional teaching methods or invasive procedures. Using real-time fMRI neurofeedback, participants successfully adopted new visual object categories by adjusting their brain activity to match predesignated patterns. This groundbreaking method could lead to innovative treatments for conditions such as depression and autism by aligning patients' brain patterns with neurotypical models. Beyond clinical applications, the study opens doors to advancements in brain-computer interfaces, offering a glimpse into the future of noninvasive neurotechnology. <a href="https://www.rochester.edu/newscenter/neural-sculpting-brain-activity-patterns-630942/">(Read more)</a></p></li><li><p><strong>Tracking Neural Activity After Electrode Implantation - A Step Towards More Reliable Brain-Computer Interfaces:</strong> A new study published in <em>The Journal of Neural Engineering</em> explores how neural activity changes over time after electrode implantation. By using electrophysiological signals and widefield calcium imaging, researchers tracked these changes in awake mice. Key insights revealed that brain signals stabilized over time, with the quality of recordings remaining consistent. The findings also highlight the correlation between different neural signals, improving the understanding of electrode performance and laying the foundation for more reliable brain-computer interfaces. This research is a significant step forward in making neurotech devices more stable and long-lasting. <a href="https://iopscience.iop.org/article/10.1088/1741-2552/ada0eb#jneada0ebs5">(Read more)</a></p></li></ol><div><hr></div><h3><strong>&#127760; Neurotech Edu. and Events:</strong></h3><ol><li><p><em><strong>London Neurotech Hackathon (Entrepreneur First, Shoreditch, London)</strong></em></p><p><em><strong>Date</strong>:</em> January 25th, 2025, 10am (GMT) to January 26th, 2024, 5pm</p><p><em><strong>Why Attend the Event?</strong></em><br>This hackathon offers a unique opportunity to dive into neurotechnology innovation. Whether you're a beginner or a seasoned expert, you&#8217;ll have the chance to collaborate with like-minded innovators and participate in exciting challenges. From ideation and research to competing in computational neuroscience, this event is a must for anyone looking to make their mark in the neurotech space.<br><em><strong>Link to register</strong></em><strong>:</strong> <a href="https://lu.ma/7b0z77bh">Register here</a></p></li><li><p><em><strong>BCI &amp; Neurotechnology Spring School 2025 (Online)</strong><br><strong>Date</strong>:</em> April 28 &#8211; May 7, 2025 (Vienna time)<br><em><strong>Why Attend the Event?</strong></em><br>Following the immense success of last year&#8217;s event, which saw over 82,000 participants from 118 countries and 511 BR41N.IO hackers in 68 teams, the BCI &amp; Neurotech Spring School 2025 is set to offer an even more immersive and enriching experience. Don't miss out on the opportunity to be part of this groundbreaking event in the neurotechnology space!</p><p><em><strong>Link to Register: </strong></em><a href="https://us02web.zoom.us/webinar/register/WN_dbatOwzzRqO-uf48TF1QGQ#/registration">Register here</a></p></li></ol><div><hr></div><h3><strong>&#127916;Case Studies</strong></h3><p>&#127916; <strong>Case Study Spotlight: G.Tec&#8217;s g.Pangolin &#8211; Revolutionizing Brain Mapping and Neurotechnology</strong></p><p>In this edition's case study spotlight, we explore <strong>G.Tec&#8217;s g.Pangolin</strong>, an advanced brain-computer interface (BCI) system that is transforming the way researchers and clinicians measure and analyze brain activity. Since its inception, G.Tec has been a pioneer in the development of high-resolution, high-density EEG technologies, with the g.Pangolin setting a new standard for brain mapping in both clinical and research applications.</p><p><strong>Overview:</strong> The <strong>g.Pangolin</strong> is a state-of-the-art BCI system that uses up to <strong>1,024 channels</strong> for EEG (electroencephalography), EMG (electromyography), and ECG (electrocardiogram) recordings, offering exceptional spatial resolution. This high-density electrode system is designed to measure and analyze brain activity with unprecedented accuracy, enabling precise brain mapping, motor cortex analysis, and neural signal localization. The g.Pangolin system is designed to be used in both invasive and non-invasive applications, making it ideal for advanced neuroscience research and clinical diagnostics.</p><div class="captioned-image-container"><figure><a class="image-link image2 is-viewable-img" target="_blank" href="https://substackcdn.com/image/fetch/$s_!AYMB!,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png" data-component-name="Image2ToDOM"><div class="image2-inset"><picture><source type="image/webp" srcset="https://substackcdn.com/image/fetch/$s_!AYMB!,w_424,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 424w, https://substackcdn.com/image/fetch/$s_!AYMB!,w_848,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 848w, https://substackcdn.com/image/fetch/$s_!AYMB!,w_1272,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 1272w, https://substackcdn.com/image/fetch/$s_!AYMB!,w_1456,c_limit,f_webp,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 1456w" sizes="100vw"><img src="https://substackcdn.com/image/fetch/$s_!AYMB!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png" width="1176" height="874" 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https://substackcdn.com/image/fetch/$s_!AYMB!,w_848,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 848w, https://substackcdn.com/image/fetch/$s_!AYMB!,w_1272,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 1272w, https://substackcdn.com/image/fetch/$s_!AYMB!,w_1456,c_limit,f_auto,q_auto:good,fl_progressive:steep/https%3A%2F%2Fsubstack-post-media.s3.amazonaws.com%2Fpublic%2Fimages%2F753aaf0c-87e4-42e7-97c6-558a0b847e16_1176x874.png 1456w" sizes="100vw" loading="lazy"></picture><div class="image-link-expand"><div class="pencraft pc-display-flex pc-gap-8 pc-reset"><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container restack-image"><svg aria-hidden="true" width="20" height="20" viewBox="0 0 20 20" fill="none" stroke-width="1.5" stroke="var(--color-fg-primary)" stroke-linecap="round" stroke-linejoin="round" xmlns="http://www.w3.org/2000/svg"><g><path d="M2.53001 7.81595C3.49179 4.73911 6.43281 2.5 9.91173 2.5C13.1684 2.5 15.9537 4.46214 17.0852 7.23684L17.6179 8.67647M17.6179 8.67647L18.5002 4.26471M17.6179 8.67647L13.6473 6.91176M17.4995 12.1841C16.5378 15.2609 13.5967 17.5 10.1178 17.5C6.86118 17.5 4.07589 15.5379 2.94432 12.7632L2.41165 11.3235M2.41165 11.3235L1.5293 15.7353M2.41165 11.3235L6.38224 13.0882"></path></g></svg></button><button tabindex="0" type="button" class="pencraft pc-reset pencraft icon-container view-image"><svg xmlns="http://www.w3.org/2000/svg" width="20" height="20" viewBox="0 0 24 24" fill="none" stroke="currentColor" stroke-width="2" stroke-linecap="round" stroke-linejoin="round" class="lucide lucide-maximize2 lucide-maximize-2"><polyline points="15 3 21 3 21 9"></polyline><polyline points="9 21 3 21 3 15"></polyline><line x1="21" x2="14" y1="3" y2="10"></line><line x1="3" x2="10" y1="21" y2="14"></line></svg></button></div></div></div></a></figure></div><p><strong>Use Case Highlights:</strong></p><ul><li><p><strong>High-Density Brain Mapping with g.Pangolin:</strong> The g.Pangolin is known for its ability to record up to 1,024 channels simultaneously, which provides an extraordinary level of spatial resolution compared to traditional EEG systems. This capability allows for more accurate localization of brain sources, providing deeper insights into brain activity and enhancing brain mapping studies. It is particularly valuable for <strong>epilepsy research</strong>, <strong>motor cortex analysis</strong>, and studies of <strong>neuroplasticity</strong>.</p></li><li><p><strong>Motor Cortex Research:</strong> One of the standout features of the g.Pangolin is its ability to detect fine motor movements with incredible precision. By placing electrode grids over the motor cortex, it allows researchers to distinguish between individual finger movements and other subtle brain signals, which has traditionally been possible only through more invasive techniques like ECoG implants. This non-invasive capability makes the g.Pangolin an invaluable tool in motor control research and clinical applications.</p></li><li><p><strong>Source Localization for Advanced Brain Research:</strong> The fixed electrode placement of the g.Pangolin, with electrode distances as small as <strong>8.6mm center-to-center</strong>, allows for accurate <strong>source localization</strong> of brain activity. This makes it possible to study cortical regions in detail, from sensory perception to motor control. Researchers can analyze brain networks with enhanced precision, which is essential for clinical applications like <strong>seizure source localization</strong> and <strong>neurofeedback therapies</strong>.</p></li><li><p><strong>Multimodal Capabilities:</strong> The system is not only limited to EEG but also records <strong>EMG</strong> and <strong>ECG</strong> signals, allowing for comprehensive physiological data collection. This makes the g.Pangolin versatile for studying a range of biological signals, whether it&#8217;s for diagnosing heart conditions, analyzing muscle activity, or conducting detailed brain studies.</p></li></ul><p><strong>Target Audience:</strong> The g.Pangolin system is designed for use by:</p><ul><li><p><strong>Neuroscientists and researchers</strong> conducting advanced brain mapping and motor cortex studies.</p></li><li><p><strong>Clinicians</strong> in need of high-resolution EEG systems for epilepsy research, neurofeedback therapies, and neurophysiological diagnostics.</p></li><li><p><strong>Neurotechnologists</strong> interested in developing innovative brain-computer interface solutions for healthcare or consumer applications.</p></li></ul><p><strong>Key Partnerships:</strong> G.Tec partners with leading academic institutions, hospitals, and research facilities around the world. These collaborations help advance the development of technologies like the g.Pangolin and ensure that they remain at the forefront of brain-computer interface innovations. Partnerships with universities and medical centers also allow G.Tec to integrate the latest scientific findings into the evolution of its products.</p><p><strong>Leadership Team:</strong> The vision behind G.Tec&#8217;s innovation comes from its co-founders, <strong>Dr. Christoph Guger</strong> and <strong>Dr. G&#252;nter Edlinger</strong>, whose expertise in neurotechnology has led to the creation of the g.Pangolin system. Their commitment to advancing brain-computer interface research and improving the understanding of brain activity has positioned G.Tec as a leader in the neurotechnology industry.</p><p>For more information about the <strong>g.Pangolin</strong> and how it is transforming brain mapping, visit <a href="https://www.gtec.at">G.Tec Medical Engineering GmbH</a>.</p><div><hr></div><h3><strong>&#127775; </strong><em><strong>Neurotech Pulse Special Edition: Call for Contributions!</strong></em></h3><blockquote><ul><li><p>Calling all researchers and writers! Want to showcase your work in our upcoming <em>Neurotech Insights</em> edition? Reach over 5,000+ neurotech enthusiasts by sharing your innovative research. Submit your details and work to saman.nawaz@nexstem.ai</p></li></ul></blockquote><div class="pullquote"><p><em>&#10084;&#65039; Join us on <a href="https://discord.gg/R7MzTQWPE7">Discord</a>.<br><br><br><br>Thanks for reading Neurotech Pulse! 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