DocumentCode :
60988
Title :
An Implantable 455-Active-Electrode 52-Channel CMOS Neural Probe
Author :
Lopez, Carolina Mora ; Andrei, A. ; Mitra, Subhasish ; Welkenhuysen, M. ; Eberle, William ; Bartic, C. ; Puers, Robert ; Yazicioglu, Refet Firat ; Gielen, Georges G. E.
Author_Institution :
imec, Leuven, Belgium
Volume :
49
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
248
Lastpage :
261
Abstract :
Neural probes have become the most important tool for enabling neuroscientists to place microelectrode sensors close to individual neurons and to monitor their activity in vivo. With such devices, it is possible to perform acute or chronic extracellular recordings of electrical activity from a single neuron or from groups of neurons. After the many developments in neural implants, it has become clear that large arrays of electrodes are desirable to further investigate the activity performed by complex neural networks. Therefore, in this paper, we propose a CMOS neural probe containing 455 active electrodes in the probe shank (100 μm wide, 10 mm long, and 50 μm thick) and 52 simultaneous readout channels in the probe body (2.9 × 3.3 mm2). In situ amplification under each electrode enables low-impedance interconnection lines, regardless of the electrode impedance, with a residual crosstalk of -44.8 dB. This design has been implemented in a 0.18-μm standard CMOS technology, with additional CMOS-compatible post-processing performed at wafer level to define the electrodes and the probe outline. In this architecture, the analog front-end achieves an input-referred noise of 3.2 μVrms and an NEF of 3.08. The power consumption of the core circuit is 949.8 μW, while the total power consumption is 1.45 mW. The high-density active-electrode array in this neural probe allows for the massive recording of neural activity. In vivo measurements demonstrate successful simultaneous recordings from many individual cells.
Keywords :
CMOS integrated circuits; biomedical electrodes; crosstalk; integrated circuit interconnections; low-power electronics; microelectrodes; neurophysiology; probes; prosthetics; readout electronics; 52-channel CMOS neural probe; analog front-end; core circuit; electrode impedance; high-density active-electrode array; implantable 455-active-electrode; low-impedance interconnection lines; neural activity; power 1.45 mW; power consumption; probe shank; residual crosstalk; simultaneous readout channels; size 0.18 mum; wafer level; Crosstalk; Electrodes; Impedance; Metals; Neurons; Noise; Probes; Active neural probe; CMOS; biomedical sensor; brain–machine interface; implantable biomedical device; microelectrodes; multi-electrode arrays; neural amplifier; neural interface; neural probe; neural recording;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2013.2284347
Filename :
6642150
Link To Document :
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