The Argo: A 65,536 channel recording system for high density neural recording in vivo

Author:

Sahasrabuddhe Kunal,Khan Aamir A.,Singh Aditya P.,Stern Tyler M.,Ng Yeena,Tadić Aleksandar,Orel Peter,LaReau Chris,Pouzzner Daniel,Nishimura Kurtis,Boergens Kevin M.,Shivakumar Sashank,Hopper Matthew S.,Kerr Bryan,Hanna Mina-Elraheb S.,Edgington Robert J.,McNamara Ingrid,Fell Devin,Gao Peng,Babaie-Fishani Amir,Veijalainen Sampsa,Klekachev Alexander V.,Stuckey Alison M.,Luyssaert Bert,Kozai Takashi D. Y.ORCID,Xie Chong,Gilja Vikash,Dierickx Bart,Kong Yifan,Straka Malgorzata,Sohal Harbaljit S.,Angle Matthew R.

Abstract

AbstractHere we demonstrate the Argo System, 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 built to date, supporting simultaneous recording from 65,536 channels, sampled at over 32 kHz and 12-bit resolution. This system is designed for cortical recordings, compatible with both penetrating and surface microelectrodes. We have validated this system by recording spiking activity from 791 neurons in rats and cortical surface Local Field Potential (LFP) activity from over 30,000 channels in 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.

Publisher

Cold Spring Harbor Laboratory

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