Wireless integrated circuit for 100-channel neural stimulation

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Publication Type Journal Article
School or College College of Engineering
Department Electrical & Computer Engineering
Creator Harrison, Reid R.
Other Author Thurgood, B. K.; Ledbetter, N. M.; Warren, D. J.; Clark, G. A.
Title Wireless integrated circuit for 100-channel neural stimulation
Date 2008-11
Description We present the design of an integrated circuit for wireless neural stimulation, along with bench-top and in-vivo experimental results. The chip has the ability to drive 100 individual stimulation electrodes with constant-current pulses of varying amplitude, duration, interphasic delay, and repetition rate. The stimulation is done using a biphasic (cathodic and anodic) current source, injecting and retracting charge from the nervous system. Wireless communication and power are achieved over a 2.765-MHz inductive link. Only two off-chip components are needed to operate the stimulator: a 10-nF capacitor to aid in power supply regulation and a coil for power and command reception. The chip was fabricated in a commercially available 0.6-μm 2P3M BiCMOS process. The chip was able to activate motor fibers to produce muscle twitches via a Utah Slanted Electrode Array implanted in cat sciatic nerve, and to activate sensory fibers to recruit evoked potentials in somatosensory cortex.
Type Text
Publisher Institute of Electrical and Electronics Engineers (IEEE)
First Page 129
Last Page 132
DOI 10.1109/BIOCAS.2008.4696891
Subject Wireless; Integrated Neural Interface; Neural recording; Telemetry
Subject LCSH Integrated circuits; Microelectrodes; Implants, Artificial; Biotelemetry; Neural stimulation; Cats as laboratory animals; Animal models in research
Language eng
Conference Title 2008 IEEE Biomedical Circuits and Systems Conference; ; Baltimore, MD, USA
Bibliographic Citation Thurgood, B. K., Ledbetter, N. M., Warren, D. J., Clark, G. A., & Harrison, R. R. (2008). Wireless integrated circuit for 100- channel neural stimulation. Proceedings of the 2008 IEEE Biomedical Circuits and Systems Conference (BioCAS 2008), 129-32.
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Format Medium application/pdf
Format Extent 461,657 bytes
Identifier ir-main,14024
ARK ark:/87278/s68d0dtv
Setname ir_uspace
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Reference URL https://collections.lib.utah.edu/ark:/87278/s68d0dtv
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