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A Robotic Neural Interface for Autonomous Positioning of Extracellular Recording Electrodes

Michael Wolf, Jorge Cham, Edward A. Branchaud, Grant H. Mulliken, Joel W. Burdick, Richard A. Andersen

Year
2009
Citations
15

Abstract

In this paper we describe a set of algorithms and a novel miniature device that together can autonomously position electrodes in neural tissue to obtain high-quality extracellular recordings. This robotic system moves each electrode to detect the signals of individual neurons, optimize the signal quality of a target neuron, and then maintain this signal over time. Such neuronal signals provide the key inputs for emerging neuroprosthetic medical devices and serve as the foundation of basic neuroscientific and medical research. Experimental results from extensive use of the robotic electrodes in macaque parietal cortex are presented to validate the method and to quantify its effectiveness.

Keywords

Computer scienceSIGNAL (programming language)Interface (matter)NeuroprostheticsBrain–computer interfaceArtificial intelligenceSet (abstract data type)ElectrodeArtificial neural networkComputer vision

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