
The Field Keeps Moving. So Do We.
Frontier R&D programs that open up research approaches. Steady improvements to the platforms that labs use every day.
Two decades of neural interfacing.
The trajectory
3-D, high-fidelity turnkey ephys system for closed-loop, multi-modal recording and stimulation.
Full-stack software release — extending from acquisition into analysis and the data layer, with Vantage live monitoring of most DAQs
Comprehensive Neuropixel support for acquisition, live-stream monitoring, and analysis (via XDAQ and Radiens).
New version of Vector, with up to 128 sites and ruggedized packaging to increase re-usability
SiNAPS active-silicon probes in the technology base — active electronics on the shank.
Z-Coat™ electrode site coating, our proprietary PEDOT coating for low-impedance, increased charge capacity, decreased noise
What you can do now that you couldn't before
The platform most labs rely on, continually widened — each release extends what you can reach and measure.
Record wider and deeper in one subject
Up to 1,024+ channels across cortical, deep-brain, and surface targets in a single preparation.
Measure organoids at in-vivo-grade fidelity
3-D recording matched to organoid geometry — the dish, instrumented like the brain.
Combine modalities on one probe
Electrical, optical, and chemical interfaces integrated in a single device.
Build the probe your experiment needs
Custom geometry, materials, and packaging — anything you can draw, fabricated to spec.
Take it from recording to result
Radiens carries acquisition through analysis and curation, with your data staying local.
A capability counts when the field can run it.
A frontier result is only half the work. The other half is turning it into something a lab can actually do — so each of these arrives as a catalog item: documented, supported, and priced for a real budget. That is why a new capability reaches a thousand labs, not one.
Radiens has its own home.
Radiens — our electrophysiology software line — just had a major release, adding the Radiens Compute engine and Radiens Web and extending from acquisition into analysis and the data layer. Explore it, compare editions, and download it on the dedicated Radiens site.
The engine behind it
Why the boundary keeps moving — NIH-supported programs with peer-level partners, translating research into products.
Silicon probes
It began with the commercial translation of silicon probes, with the University of Michigan.
Deep-brain stimulation (DBS)
Segmented, multi-contact DBS leads and deep-brain mapping, with Philips Research and Mayo Clinic.
Next-generation probes
Next-generation probe technologies, with Purdue University and others.
Organoid electrophysiology
3-D, high-fidelity, scalable in-vitro recording systems, with Harvard University.
Where we're taking the field next
Direction and conviction. Specifics arrive as they ship.
Toward whole-circuit measurement
Scaling channel count and integration to capture more of the system at once.
In vitro at the scale of in vivo
Verticalizing organoid electrophysiology for higher-throughput, deeper in-vitro studies.
Closing the loop to the clinic
Translating recording and stimulation into clinical neuro-monitoring.
Working at the frontier?
Tell us about your program and an Application Scientist will help you scope it.