DocumentCode :
1062660
Title :
Active Microelectronic Neurosensor Arrays for Implantable Brain Communication Interfaces
Author :
Song, Y.-K. ; Borton, D.A. ; Park, S. ; Patterson, W.R. ; Bull, C.W. ; Laiwalla, F. ; Mislow, J. ; Simeral, J.D. ; Donoghue, J.P. ; Nurmikko, A.V.
Author_Institution :
Div. of Eng., Brown Univ., Providence, RI, USA
Volume :
17
Issue :
4
fYear :
2009
Firstpage :
339
Lastpage :
345
Abstract :
We have built a wireless implantable microelectronic device for transmitting cortical signals transcutaneously. The device is aimed at interfacing a cortical microelectrode array to an external computer for neural control applications. Our implantable microsystem enables 16-channel broadband neural recording in a nonhuman primate brain by converting these signals to a digital stream of infrared light pulses for transmission through the skin. The implantable unit employs a flexible polymer substrate onto which we have integrated ultra-low power amplification with analog multiplexing, an analog-to-digital converter, a low power digital controller chip, and infrared telemetry. The scalable 16-channel microsystem can employ any of several modalities of power supply, including radio frequency by induction, or infrared light via photovoltaic conversion. As of the time of this report, the implant has been tested as a subchronic unit in nonhuman primates (~ 1 month), yielding robust spike and broadband neural data on all available channels.
Keywords :
analogue-digital conversion; bioelectric potentials; biomedical electronics; biomedical telemetry; brain; digital control; low-power electronics; neural chips; prosthetics; sensor arrays; 16-channel broadband neural recording; action potentials; active microelectronic neurosensor arrays; analog multiplexing; analog-to-digital converter; brain communication interfaces; cortical microelectrode array; flexible polymer substrate; infrared telemetry; integrated ultra-low power amplification; low power digital controller chip; neural control; nonhuman primate brain; photovoltaic conversion; skin; wireless implantable microelectronic device; Application software; Communication system control; Computer interfaces; Digital recording; Microelectrodes; Microelectronics; Polymers; Pulse amplifiers; Pulsed power supplies; Skin; Brain–computer interface; neural interface; neural prosthesis; Action Potentials; Amplifiers, Electronic; Animals; Brain; Communication Aids for Disabled; Electrodes, Implanted; Electroencephalography; Equipment Design; Equipment Failure Analysis; Male; Miniaturization; Nerve Net; Pattern Recognition, Automated; Rats; Rats, Sprague-Dawley; Reproducibility of Results; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Telemetry; Transducers; User-Computer Interface;
fLanguage :
English
Journal_Title :
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
1534-4320
Type :
jour
DOI :
10.1109/TNSRE.2009.2024310
Filename :
5067358
Link To Document :
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