The same multimodal device behind our published double-blind RCTs — combining taVNS, GVS, and music-driven CNS activation — now available with full SDK access, academic pricing, setup support, and co-authorship opportunities.
BrainPatch combines three complementary non-invasive stimulation pathways in a single headset — the same triple-modality stack behind our peer-reviewed RCT outcomes. Each modality is individually controllable via SDK.
Postauricular electrodes target the auricular branch of the vagus nerve (ABVN) — driving parasympathetic activation and HRV shifts.
Target: ABVN · tympanomastoid fissure
Mastoid electrodes deliver galvanic stimulation to vestibular nuclei — modulating autonomic, cognitive, and mood-relevant pathways.
Target: Vestibular nuclei · NTS
Audio component delivers calibrated auditory stimulation co-timed with electrical stim — leveraging music-driven central nervous system effects.
Target: Cortical entrainment · meditation-like EEG state
Each pillar maps to a distinct part of our research taxonomy and matches different lab profiles. We adapt the program — devices, SDK access, study design, co-authorship terms — to your direction.
HRV, RMSSD, HF power, parasympathetic dynamics, recovery slope after stress
taVNS, ABVN, postauricular, GVS, music-driven CNS — factorial design support
Meditation-like EEG state, alpha / theta / frontal asymmetry, comparator studies
Sensory-threshold, intensity titration, dose-response, responder profiling
Real-time biosignal streams, adaptive protocols, brain-state classification
Burnout, occupational stress, healthcare worker wellbeing — corporate RCTs
Cognitive fatigue recovery, mental workload, attention restoration
Emotional processing, ERP, frontal asymmetry, threat-bias paradigms
Independent tolerability assessments, longitudinal home-use safety studies
Not a discount-only program. We pair commercial access with the engineering, data, and authorship support labs actually need.
Substantial discount on BrainPatch devices for labs. Volume pricing for multi-device studies. Net-30 terms available for institutions.
Real-time HRV and EEG streams, programmable stimulation parameters (intensity, frequency, pulse, ramp), Lab Streaming Layer compatibility. Bindings: Python, MATLAB, R, C++.
Direct contact with our research engineering team for protocol calibration, hardware troubleshooting, data export, and integration with PsychoPy, OpenSesame, BIDS pipelines.
Active product since 2024. Sales in 10+ countries (B2B and B2C). CE and EAC certified. Devices available for your study this month — not future.
Imperial College London, Tel Aviv University, NHS, Cerebra, Kaztelecom, Warner Music — and growing. We can introduce existing collaborators in your pillar.
Joint publication opportunities on protocol design, data analysis, and resulting papers. We participate as collaborators, not as gatekeepers.
Completed randomised placebo-controlled trial in office workers (n=56, double-blind), 5-day repeated stimulation. Outcomes published in IEEE EUSIPCO 2024 and SPSympo 2023 proceedings.
vs −8% in placebo group
higher than placebo group
vs −30% in control group
Lower LF/HF indicates a healthier sympathetic/parasympathetic balance — less stress, more calm. Full study details and methodology on the Science page.
Every stimulation parameter is exposed through our SDK — no firmware contact required. Researchers can implement custom titration protocols, closed-loop adaptive logic, or non-standard stim profiles directly from their experiment code.
# Sensory-threshold titration for a taVNS-like protocol
from brainpatch import Device
device = Device.connect()
threshold = device.find_sensory_threshold(method="staircase")
device.set_intensity(threshold * 0.8)
device.set_frequency(hz=25)
with device.stream("hrv") as stream:
device.start_session(duration_min=20)
for sample in stream:
if sample.rmssd > target_recovery:
device.stop_session()
break
I've worked with galvanic vestibular stimulation for over 10 years, but BrainPatch headset is the most effective, versatile and well-packaged device I have seen.
Самый убедительный аргумент, который я когда-либо видел в пользу неинвазивных стимуляторов, имеющих быстрый биологический эффект.
Устройство BrainPatch намного эффективнее других устройств стимуляции мозга, которые я пробовал.
PhD-level scientists and engineers backed by world-class advisors — including Jamie Urquhart (Co-Founder, ARM), Prof. Paul Fitzgerald (Australian National University), Prof. Steve Potter (closed-loop stimulation pioneer), and Frank Zanow (CEO, ANT-Neuro).
Imperial College London · King's College London
Neuroscientist publishing in top-tier journals. Founded BrainPatch to make non-invasive stimulation accessible at scale.
University of Westminster
Business and investment background — former CEO of Centre for Trade Policy Development and Managing Director of Sovereign Wealth Fund of Kazakhstan.
Certified Agile Coach (ICP-ATF)
Lead architect of BrainPatch's software ecosystem and SDK. Develops the technology and is also its primary user.
We're actively shipping to research institutions, healthcare providers, and corporate wellbeing programs. Existing partners we can introduce you to:
Purchase completed
Research collaboration
Expression of interest
Purchase completed
Purchase completed
Successful pilot
Retail partner
Distribution
Peer-reviewed and conference publications spanning HRV dynamics, EEG state markers, burnout-related outcomes, and safety in healthy volunteers. Full BP1–BP10 list and 17 related references on the Science page.
Six clear steps with predictable timing. Most labs are running their first BrainPatch session within 3 weeks of applying.
5-minute form below. Tell us about your direction.
Day 0
Scoping questions, request for protocol draft.
Within 2 days
20 min with founder or research engineer. Tailored proposal.
Week 1
Standard config 5 business days; custom batches 2–3 weeks.
Week 2–3
Hands-on support, SDK onboarding, joint publication scoping.
Ongoing
Tell us about your research direction, protocol idea, or planned study. We respond within 2 business days with a tailored proposal — devices, SDK access, collaboration terms.
Academic pricing is significantly below retail. Final discount depends on study size and partnership scope; we share a tailored quote after the first 20-minute call.
Yes. Python and MATLAB bindings ship with full docs and tested example notebooks. R and C++ bindings are available on request. Lab Streaming Layer integration is plug-and-play.
Yes — every parameter (intensity, frequency, pulse width, duty cycle, ramp) is exposed via SDK with a ~50 ms control loop, suitable for closed-loop protocols driven by real-time HRV or EEG.
For protocol design, technical input, and data analysis contributions we expect to be listed as collaborators on the resulting publication. Authorship order is negotiated per project — typically PI/lead author from the partnering lab, BrainPatch team in mid or last-author technical positions.
Standard configurations ship within 5 business days from the UK or Ireland. Custom batches (>10 units) typically 2–3 weeks.
CE-marked in Europe and UK, EAC-certified. Sold as a non-medical wellness device under applicable consumer-electronics frameworks. For research use it falls under your IRB's risk classification — we provide a safety dossier and technical file on request for IRB submission.
For collaborating labs — yes. We have a curated dataset of synchronized EEG + HRV + stimulation labels under a research data-sharing agreement.
BrainPatch combines three modalities: transcutaneous auricular vagus nerve stimulation (taVNS) at the auricular branch (ABVN), galvanic vestibular stimulation (GVS), and music-driven CNS activation. 30+ patents filed across US, UK, and WIPO covering AI personalization, simultaneous recording + stimulation, stim circuitry, and electrode positioning.