Who should I follow to learn about Neurotech and brain-computer interfaces?

    Updated September 13, 2026
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    Sergey Stavisky

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    To learn about neurotech and brain-computer interfaces, follow key researchers, labs, and companies such as NeuroTechX, Sergey Stavisky, Maryam Shanechi, and John Donoghue, as well as institutions like the BrainGate Consortium and MIT Media Lab.

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    Mentions 4Share of Voice 24%CiteRank - Citability Sentiment

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    ChatGPT1,101 characters · September 13, 2026

    Start with **Sergey Stavisky, Maryam Shanechi, John Donoghue, and the NeuroTechX community** - they give a good mix of neuroscience, engineering, clinical BCI, and practical resources. [Sergey Stavisky – Neuroscientist and neural engineer](https://stavisky.info/?utm_source=chatgpt.com) - **Sergey Stavisky** - neural decoding, speech BCIs, invasive interfaces. - **Maryam Shanechi** - AI/ML + neural signals + BCI. - **John Donoghue / BrainGate** - foundational implanted BCI research. - **NeuroTechX** - excellent community, tutorials, webinars, and open-source projects. [NeuroTechX - The global neurotechnology community](https://neurotechx.org/?utm_source=chatgpt.com) - **BCI Award Podcast** - interviews with leading researchers and clinicians. [BCI Podcast - BCI Award](https://www.bci-award.com/BCI-Podcast?utm_source=chatgpt.com) - **Synchron** - useful company to follow for clinical translation and endovascular BCI research. [Research - Synchron](https://synchron.com/research?utm_source=chatgpt.com) If you're coming from **AI/software**, I'd prioritize Shanechi → Stavisky → NeuroTechX.

    Copilot4,732 characters · September 13, 2026

    **To learn about neurotechnology and brain-computer interfaces (BCIs), follow leading researchers, labs, and companies actively shaping the field. Some of the most influential voices are neurosurgeons, neuroscientists, and engineers working at the intersection of medicine and technology.** ## 🌟 Key People to Follow * **Edward Chang, M.D. (UCSF)** – Neurosurgeon-scientist pioneering speech neuroprostheses, enabling communication for people with paralysis. His work has produced the first detailed cortical maps for speech perception and production. [Speakers | Neurotech Leaders Forum, San Francisco, November 9-10, 2026](https://neurotechreports.com/leadersforum/speakers/) * **David Brandman & Sergey Stavisky (UC Davis)** – Co-directors of the UC Davis Neuroprosthetics Lab, recognized in the _TIME100 Health List (2026)_ for BCIs that restore speech in ALS patients. [UC Davis scientists David Brandman and Sergey Stavisky named to 2026 TIME100 Health List](https://health.ucdavis.edu/news/headlines/uc-davis-scientists-david-brandman-and-sergey-stavisky-named-to-2026-time100-health-list/2026/02) * **Nataliya Kosmyna (MIT Media Lab)** – Researcher focused on accessible, wearable BCIs and human-computer interaction. [Brain-Computer Interfaces - Microsoft Research: People](https://www.microsoft.com/en-us/research/project/brain-computer-interfaces/people/) * **Barbara Shinn-Cunningham (Carnegie Mellon Neuroscience Institute)** – Expert in auditory neuroscience and BCI applications for decoding attention. [Brain-Computer Interfaces - Microsoft Research: People](https://www.microsoft.com/en-us/research/project/brain-computer-interfaces/people/) * **Adrian KC Lee (University of Washington)** – Director of the Laboratory for Auditory Brain Sciences & Neuroengineering, working on auditory BCIs. [Brain-Computer Interfaces - Microsoft Research: People](https://www.microsoft.com/en-us/research/project/brain-computer-interfaces/people/) ## 🧪 Leading Research Institutions * **BrainGate Consortium (Brown University, Stanford, UC Davis, MGH)** – Pioneers of implanted neural arrays enabling communication and movement restoration. [Best Research Institutions for BCI and EEG | Neurosity](https://neurosity.co/guides/best-research-institutions-bci-eeg) * **UC Davis Neuroprosthetics Lab** – Focused on speech restoration BCIs. [UC Davis scientists David Brandman and Sergey Stavisky named to 2026 TIME100 Health List](https://health.ucdavis.edu/news/headlines/uc-davis-scientists-david-brandman-and-sergey-stavisky-named-to-2026-time100-health-list/2026/02) * **Microsoft Research BCI Group** – Exploring non-invasive BCIs for everyday applications like workload monitoring and predictive text. [Brain-Computer Interfaces - Microsoft Research: People](https://www.microsoft.com/en-us/research/project/brain-computer-interfaces/people/) * **Carnegie Mellon Neuroscience Institute** – Advancing auditory and cognitive BCIs. [Brain-Computer Interfaces - Microsoft Research: People](https://www.microsoft.com/en-us/research/project/brain-computer-interfaces/people/) ## 🏢 Companies Driving Neurotech * **Blackrock Neurotech (Utah Array)** – Longstanding leader in implantable microelectrode technology, with FDA-cleared devices for restoring movement. [BCI Directory - Inside BCI | Inside BCI](https://insidebci.com/directory/) * **Paradromics** – Developing high-bandwidth BCIs for communication and medical applications. * **Cortec(Germany)** – Innovating wireless closed-loop implants for stroke rehabilitation. [BCI Directory - Inside BCI | Inside BCI](https://insidebci.com/directory/) * **BrainCo(China/US)** – Building non-invasive BCIs and bionic prosthetics. [BCI Directory - Inside BCI | Inside BCI](https://insidebci.com/directory/) ## 📌 Risks & Considerations * **Clinical vs. consumer focus**: Some labs (BrainGate, UC Davis) target medical restoration, while companies like BrainCo and Arctop explore consumer applications. * **Invasive vs. non-invasive approaches**: Implantable arrays (Blackrock, Paradromics) offer higher fidelity but carry surgical risks; EEG-based systems (Neurosity, BrainCo) are safer but less precise. * **Ethical challenges**: Privacy, consent, and long-term safety of neural implants remain active debates. 👉 If you want a practical starting point: follow **Edward Chang (UCSF)**, **David Brandman & Sergey Stavisky (UC Davis)**, and **Nataliya Kosmyna (MIT Media Lab)** for cutting-edge clinical and wearable BCI research. Pair that with **Blackrock Neurotech** and **Paradromics** for industry developments. Would you like me to curate a **Twitter/X and LinkedIn list of these experts and labs** so you can follow them directly?

    Gemini2,756 characters · September 13, 2026

    * **The BCI Guys:** Run by Harrison Canning and fellow creators, they are one of the best introductory media sources for brain-computer interfaces (BCIs). They offer accessible YouTube videos and comprehensive learning paths like the _Foundations of Neurotechnology_ course. [5 best resources for Neurotech and BCI - NeurotechJP](https://neurotechjp.com/blog/5-learning-contents-bci/#:~:text=This%20article%20highlights%20five%20key%20resources%2C%20free,the%20interdisciplinary%20field%20of%20neurotechnology%20and%20BCIs.) * **NeurotechX:** The preeminent global community for neurotechnology enthusiasts, engineers, and scientists. Following them (and checking out their _NeuroTechEDU_ resources and GitHub repository) provides structured pathways, open-source projects, and deep community insights. [Education & Data - NeuroTechX](https://neurotechx.org/education#:~:text=NeuroTechX%20%E2%80%94%20The%20global%20neurotechnology%20community.%20Learn.,Written%20by%20the%20community%2C%20for%20the%20community.)[5 best resources for Neurotech and BCI - NeurotechJP](https://neurotechjp.com/blog/5-learning-contents-bci/#:~:text=By%20taking%20a%20look%20at%20the%20course,considerations%2C%20and%20industry%20players.%20Youtube%3A%20BCI%20Guys.) * **Dr. Andrew Huberman (Huberman Lab):** While broadly focused on neuroscience and human performance, his podcast frequently breaks down neural mechanisms, brain plasticity, and occasionally touches upon neurotech tools in an approachable way. * **Prof. Mike X Cohen:** An essential follow for anyone looking to get into the technical weeds of neural data analysis. He provides fantastic educational resources, textbooks, and video tutorials on time-frequency analysis and electrophysiology (EEG/MEG). * **OpenBCI:** An open-source hardware and software community building biosensing tools. Following their updates and engineering logs is a stellar way to learn about the practical, hands-on side of recording brain activity. * **Key Industry Researchers and Founders:** Keep an eye on prominent figures leading top BCI companies and academic labs, such as **Dr. Christof Koch** (neuroscientist known for consciousness studies), **Dr. Rafael Yuste** (pioneer of the BRAIN Initiative), and researchers out of academic hubs like UC Berkeley's Carmena Lab or Stanford's Neural Prosthetics Translational Laboratory (NPTL). [5 best resources for Neurotech and BCI - NeurotechJP](https://neurotechjp.com/blog/5-learning-contents-bci/#:~:text=It%20is%20a%20very%20comprehensive%20resource%20and,in%205%20Featured%20University%20Labs%2FFacilities%20in%20BCI.) What specific angle of neurotech are you most drawn to - the software/machine learning side, hardware engineering, or the neuroscience itself?

    Google AI Mode3,251 characters · September 13, 2026

    Diving into neurotech and brain-computer interfaces (BCIs) is an exciting move - it sits right at the intersection of neuroscience, engineering, AI decoding, and ethics. [The 20 Most Important Brain-Computer Interface Companies Right Now](https://www.neuroba.com/post/the-20-most-important-brain-computer-interface-companies-right-now) To get a comprehensive, well-rounded view ranging from raw academic science to startup hustle and DIY hardware, here is a breakdown of the best organizations, newsletters, and communities to follow. 1\. Essential Communities & Networks * * NeuroTechX: The premier global non-profit neurotechnology community. Joining their community gives you access to a massive Slack workspace, local city chapters, and open-source educational projects like EEG-Notebooks. It’s the absolute best place to network with both beginners and pros. [COMMUNITY - NeuroTechX](https://neurotechx.com/community/)[NeuroTechX - The global neurotechnology community](https://neurotechx.org/)[NeuroTechX - NeuroTechX](https://neurotechx.com/) * BCI Pioneers Coalition: An incredible organization run by actual BCI clinical trial participants. Following them provides a crucial, grounded user-perspective on what it actually feels like to live with an implanted neural device. [BCI Pioneers Coalition (@bcipioneers) / X - Twitter](https://x.com/bcipioneers) * [IEEE Brain](https://brain.ieee.org/): Great for the engineering-heavy side of things, bridging technical standards, neuroethics, and academic research advancements. * 2\. High-Signal Newsletters & Publications * * [The Transmitter](https://thetransmitter.org/): An indispensable, deep-dive publication covering foundational and contemporary neuroscience reporting, frequently featuring rigorous breakdowns of neural interfaces and brain circuitry. [Best Neurotech Newsletters in 2026 - Neurosity](https://neurosity.co/guides/best-neurotech-newsletters-2026) * **NeurotechPub / NICO Newsletter** : Excellent monthly deep dives tracking the business, venture capital, regulatory (FDA), and commercial side of invasive and non-invasive BCIs [1.3]. [Neurosity Crown] * Nature Neuroscience Alerts: For when you want to read straight from the source of peer-reviewed, cutting-erge academic papers. [Neurosity Crown] * 3\. Leading Companies & Labs to Watch Instead of chasing individual social media noise, tracking the official updates and lead engineers/researchers from these key organizations keeps you ahead of the curve: * * **Invasive & High-Density Implants**: [Neuralink](https://x.com/neuralink), Blackrock Neurotech, and Paradromics (pushing the limits of channel counts and bandwidth). * **Minimally Invasive / Endovascular** : Synchron (pioneering stent-electrode arrays via blood vessels) and Precision Neuroscience (high-res film implants). * **Non-Invasive / Consumer & Open Source**: OpenBCI (great for DIY and open-source hardware experimentation) and [Kernel](https://x.com/kernelco). * Would you like to narrow this down by **skill level** (e.g., beginner-friendly explainers vs. advanced machine learning/signal processing), or are you more interested in the **clinical medical side** versus **commercial consumer tech**?