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Neurophysiology / Electrophysiology / Microtechnology / Semiconductor device fabrication / Computational neuroscience / Single-unit recording / Multielectrode array / Polyimide / Deep reactive-ion etching / Neuroscience / Biology / Science


INTRACELLULAR NEURONAL RECORDING WITH FLEXIBLE MICRO-MACHINED PROBE IMPLANTS Anupama V. Govindarajan1, Tai C. Chen1, Russell C. Wyeth2, A. O. Dennis Willows2 and Karl F. Böhringer1 1 Department of Electrical Engineering
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Document Date: 2004-03-15 18:16:55


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City

Madison / Kyoto / Munich / Linz / Boston / /

Company

Cultured Neural Networks / Clariant / A. O. D. Willows D. D. / T. Daniel D.D. / P. Luecke D. D. / Wyeth / A-M Systems / /

Country

Germany / Japan / Austria / /

Facility

Linz Institute / Johannes Kepler University of Linz / University of Washington Seattle Washington / /

IndustryTerm

oil layer / silicon probe device / metal layer / silicon needle device / implantable silicon probe device / neuronal recording tools / implantable silicon probe devices / sub-micron silicon probe device / submicron silicon probe devices / implantable sub-micron silicon probe device / implantable devices / electronics / on-chip electronics / oil / needle device / needle devices / individual devices / detachable device / mineral oil / implantable device / /

Organization

Johannes Kepler University of Linz / Linz Institute for Plastic Solar Cells / Transducers Research Foundation / Department of Zoology / Lucile Packard Foundation / Department of Electrical Engineering / University of Washington Seattle Washington / /

Person

Al-Pi Interconnect Figure / Giles Dennler / Spike / Al Polyimide / Al Pad / /

Product

S-90 / /

ProvinceOrState

Wisconsin / /

Technology

laser / Microelectromechanical Systems / MEMS / Probe Array / DSP / 3g / /

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