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1
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1942532451
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Ph.D. dissertation, Stanford Univ., Stanford, CA
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K. D. Wise, "A multi-channel microprobe for biopotential recording," Ph.D. dissertation, Stanford Univ., Stanford, CA, 1969.
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A Multi-channel Microprobe for Biopotential Recording
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Wise, K.D.1
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2
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0022104731
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Micro-power high-performance SC building block for integrated low-level signal processing
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A micro-power CMOS instrumentation amplifier
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June
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Degrauwe, M.1
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A monolithic signal processor for a neurophysiological telemetry system
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Dorman, M.G.1
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5
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An implantable CMOS circuit interface for multiplexed microelectrode recording arrays
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Mar.
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J. Ji and K. D. Wise, "An implantable CMOS circuit interface for multiplexed microelectrode recording arrays," IEEE J. Solid-State Circuits, vol. 27, pp. 433-443, Mar. 1992.
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Ji, J.1
Wise, K.D.2
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6
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0022087780
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A high-yield IC-compatible multi-channel recording array
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July
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K. Najafi, K. D. Wise, and T. Mochizuki, "A high-yield IC-compatible multi-channel recording array," IEEE Trans. Electron Devices, vol. ED-32, pp. 1206-1211, July 1985.
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IEEE Trans. Electron Devices
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Najafi, K.1
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7
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0031673232
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A wireless implantable multichannel digital neural recording system for a micro-machined sieve electrode
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Akin, T.1
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A micro-power low-noise monolithic instrumentation amplifier for medical purposes
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Martins, R.1
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0032532153
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Description and demonstration of a CMOS amplifier-based-system with measurement and stimulation capability for bioelectrical signal transduction
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October
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J. J. Pancrazio, P. P. Bey Jr., A. Loloee, S. Manne, H. C. Chao, L. L. Howard, W. M. Gosney, D. A. Borkholder, G. T. A. Kovacs, P. Manos, D. S. Cuttino, and D. A. Stenger, "Description and demonstration of a CMOS amplifier-based-system with measurement and stimulation capability for bioelectrical signal transduction," Biosensors Bioelectron., vol. 13, pp. 971-979, October 1998.
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11
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Two multichannel integrated circuits for neural recording and signal processing
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Feb.
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12
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84942564288
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A fully integrated bandpass amplifier for extracellular neural recording
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Capri Island, Italy, Mar. 20-22
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R. H. Olsson III, M. N. Gulari, and K. D. Wise, "A fully integrated bandpass amplifier for extracellular neural recording," in Proc. 1st Int. IEEE-EMBS Conf. Neural Engineering, Capri Island, Italy, Mar. 20-22, 2003, pp. 165-168.
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Proc. 1st Int. IEEE-EMBS Conf. Neural Engineering
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Olsson III, R.H.1
Gulari, M.N.2
Wise, K.D.3
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13
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0038718680
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A low-power low-noise CMOS amplifier for neural recording applications
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June
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R. R. Harrison and C. Charles, "A low-power low-noise CMOS amplifier for neural recording applications," IEEE J. Solid-State Circuits, vol. 38, pp. 958-965, June 2003.
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Harrison, R.R.1
Charles, C.2
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14
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0016499925
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A low-capacitance multi-electrode probe for use in extracellular neurophysiology
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May
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K. D. Wise and J. B. Angell, "A low-capacitance multi-electrode probe for use in extracellular neurophysiology," IEEE Trans. Biomed. Eng., vol. BME-22, pp. 212-219, May 1975.
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Wise, K.D.1
Angell, J.B.2
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15
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0035781687
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A multi-channel chopper-modulated neural recording system
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Istanbul, Turkey, Oct. 25-28
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M. Dagtekin, W. Liu, and R. Bashirullah, "A multi-channel chopper-modulated neural recording system," in Proc. 23rd Annu. IEEE/EMBS Conf., Istanbul, Turkey, Oct. 25-28, 2001, pp. 757-760.
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Dagtekin, M.1
Liu, W.2
Bashirullah, R.3
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16
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0033322519
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A new DC baseline stabilization scheme for neural recording microprobes
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Atlanta, GA, Oct. 13-16
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A. P. Chandran, K. Najafi, and K. D. Wise, "A new DC baseline stabilization scheme for neural recording microprobes," in Proc. 1st Joint EMBS/BMES Conf., Atlanta, GA, Oct. 13-16, 1999, p. 386.
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Proc. 1st Joint EMBS/BMES Conf.
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Chandran, A.P.1
Najafi, K.2
Wise, K.D.3
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17
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0036911386
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A low-power fully-integrated bandpass operational amplifier for biomedical neural recording applications
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Houston, TX, Oct. 23-26
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P. Mohseni and K. Najafi, "A low-power fully-integrated bandpass operational amplifier for biomedical neural recording applications," in Proc. 2nd Joint EMBS/BMES Conf., Houston, TX, Oct. 23-26, 2002, pp. 2111-2112.
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Proc. 2nd Joint EMBS/BMES Conf.
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Mohseni, P.1
Najafi, K.2
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18
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0022863439
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An implantable multi-electrode array with on-chip signal processing
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Dec.
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K. Najafi and K. D. Wise, "An implantable multi-electrode array with on-chip signal processing," IEEE J. Solid-State Circuits, vol. SC-21, pp. 1035-1044, Dec. 1986.
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IEEE J. Solid-State Circuits
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Najafi, K.1
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Subthreshold analysis of a MOS analog switch
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Passive Multi-Channel Recording and Stimulating Electrode Arrays: A Catalog of Available Designs, The University of Michigan, Center for Neural Communication Technology, Ann Arbor, MI, Mar. 1999, pp. 1-6.
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