EngineeringMedicineMaterials Science

Vijay Viswam, Jelena Dragas, A. Shadmani, Yihui Chen, A. Stettler, Jan Mueller, Andreas Hierlemann

2016.2.25Digest of Technical Papers - IEEE International Solid-State Circuits Conference

DOI: 10.1109/isscc.2016.7418073

tlooto Summary

Various CMOS-based micro-electrode arrays (MEAs) have been developed in recent years for extracellular electrophysiological recording/stimulation of electrogenic cells, and mostly two approaches have been used.

Abstract

Various CMOS-based micro-electrode arrays (MEAs) have been developed in recent years for extracellular electrophysiological recording/stimulation of electrogenic cells [1-5]. Mostly two approaches have been used: (i) the active-pixel approach (APS) [2-4], which features simultaneous readout of all electrodes, however, at the expense of a comparably high noise level, and (ii) the switch-matrix (SM) approach, which yields better noise performance, whereas only a subset of electrodes (e.g.,1024) is simultaneously read out [5]. All systems feature, at most, voltage recording and/or voltage/current stimulation functionalities.

Citation format

VISWAM, Vijay, et al. 22.8 multi-functional microelectrode array system featuring 59,760 electrodes, 2048 electrophysiology channels, impedance and neurotransmitter measurement units. Digest of Technical Papers - IEEE International Solid-State Circuits Conference, 2016, 2016: 394–396.