Local field potential measurement with low-power analog integrated circuit

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Publication Type Journal Article
School or College College of Engineering
Department Electrical & Computer Engineering
Creator Harrison, Reid R.
Other Author Santhanam, Gopal; Shenoy, Krishna V.
Title Local field potential measurement with low-power analog integrated circuit
Date 2004-01-01
Description Local field potentials (LFPs) in the brain are an important source of information for basic research and clinical (i.e., neuroprosthetic) applications. The energy contained in certain bands of LFPs in the 10-100 Hz range has been shown to correlate with specific arm movement parameters in nonhuman primates. In the near future, implantable devices will need to transmit neural information from hundreds of microelectrodes, and transcutaneous data transfer will become a significant bottleneck. Here we present a low-power, fully integrated circuit that performs on-site data reduction by isolating LFPs and measuring their signal energy. The resulting analog VLSI circuit consumes 586 μm × 79 μm of silicon area and dissipates only 5 nanowatts of power. We show that the chip performs similarly to state-of-the-art signal processing algorithms.
Type Text
Publisher Institute of Electrical and Electronics Engineers (IEEE)
Journal Title IEEE Engineering in Medicine and Biology Society
First Page 4067
Last Page 70
Subject Local field potentials; Neural recording; Low-power circuit design; Neural prosthesis; VLSI
Subject LCSH Integrated circuits; Metal oxide semiconductors; Microelectrodes; Implants, Artificial; Implants, Artificial -- Power supply
Language eng
Bibliographic Citation Harrison, R. R., Santhanam, G., & Shenoy, K. V. (2004). Local field potential measurement with low-power analog integrated circuit. Proceedings of the 2004 International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2004), 4067-70.
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Format Medium application/pdf
Format Extent 793,170 bytes
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Reference URL https://collections.lib.utah.edu/ark:/87278/s6p84w4j
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