학술논문

The Argo: a high channel count recording system for neural recording in vivo
Document Type
article
Source
Journal of Neural Engineering. 18(1)
Subject
Bioengineering
Neurosciences
Neurological
Amplifiers
Electronic
Animals
Electrodes
Implanted
Microelectrodes
Neurons
Rats
Sheep
microelectrode array
microwires
auditory cortex
brain–
computer interface
electrophysiology
sheep
rats
Biomedical Engineering
Clinical Sciences
Language
Abstract
ObjectiveDecoding neural activity has been limited by the lack of tools available to record from large numbers of neurons across multiple cortical regions simultaneously with high temporal fidelity. To this end, we developed the Argo system to record cortical neural activity at high data rates.ApproachHere we demonstrate a massively parallel neural recording system based on platinum-iridium microwire electrode arrays bonded to a CMOS voltage amplifier array. The Argo system is the highest channel count in vivo neural recording system, supporting simultaneous recording from 65 536 channels, sampled at 32 kHz and 12-bit resolution. This system was designed for cortical recordings, compatible with both penetrating and surface microelectrodes.Main resultsWe validated this system through initial bench testing to determine specific gain and noise characteristics of bonded microwires, followed by in-vivo experiments in both rat and sheep cortex. We recorded spiking activity from 791 neurons in rats and surface local field potential activity from over 30 000 channels in sheep.SignificanceThese are the largest channel count microwire-based recordings in both rat and sheep. While currently adapted for head-fixed recording, the microwire-CMOS architecture is well suited for clinical translation. Thus, this demonstration helps pave the way for a future high data rate intracortical implant.