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一种用于慢性神经记录的三维微电极阵列。

A three-dimensional microelectrode array for chronic neural recording.

作者信息

Hoogerwerf A C, Wise K D

机构信息

Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor 48109-2122.

出版信息

IEEE Trans Biomed Eng. 1994 Dec;41(12):1136-46. doi: 10.1109/10.335862.

Abstract

This paper describes a 3-D microelectrode array for the chronic recording of single-unit activity in the central nervous system. The array is formed by a microassembly of planar silicon multishank microprobes, which are precisely positioned in a micromachined platform that resides on the surface of the cortex. Interconnects between the probes and the platform are formed using electroplated nickel lead transfers, implemented using automated computer control. All dimensions are controlled to +/- 1 micron and sank/probe separations as small as 100 microns are possible. Four-probe 16-shank prototype arrays have been tested chronically in guinea pig cortex. After three months in vivo, no significant tissue reaction has been observed surrounding these structures when they remain free to move with the brain, with normal appearing tissue between shanks spaced at 150 microns to 200 microns intervals. The array structure is compatible with the use of signal processing circuitry both on the probes and on the platform. A platform-based signal processing system has been designed to interface with several active probes, providing direct analog access to the recording sites, performing on-chip analog-to-digital conversion of neural activity, and providing simple binary-output recognition of single-unit spike events using a user-input threshold voltage.

摘要

本文描述了一种用于慢性记录中枢神经系统中单个神经元活动的三维微电极阵列。该阵列由平面硅多杆微探针的微组件构成,这些微探针精确地定位在位于皮质表面的微加工平台上。探针与平台之间的互连通过电镀镍引线转移形成,采用自动计算机控制实现。所有尺寸控制在±1微米以内,电极/探针间距小至100微米也是可能的。四探针16杆原型阵列已在豚鼠皮质中进行了长期测试。在体内放置三个月后,当这些结构能够随大脑自由移动时,在其周围未观察到明显的组织反应,电极杆之间间隔150微米至200微米的组织外观正常。该阵列结构与探针和平台上的信号处理电路的使用兼容。基于平台的信号处理系统已被设计用于与多个有源探针接口,提供对记录位点的直接模拟访问,对神经活动进行片上模数转换,并使用用户输入的阈值电压对单个神经元尖峰事件进行简单的二进制输出识别。

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