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用于自主分离和维持最佳细胞外动作电位的半慢性电动微驱动及控制算法。

Semi-chronic motorized microdrive and control algorithm for autonomously isolating and maintaining optimal extracellular action potentials.

作者信息

Cham Jorge G, Branchaud Edward A, Nenadic Zoran, Greger Bradley, Andersen Richard A, Burdick Joel W

机构信息

Division of Engineering and Applied Science, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

J Neurophysiol. 2005 Jan;93(1):570-9. doi: 10.1152/jn.00369.2004. Epub 2004 Jun 30.

Abstract

A system was developed that can autonomously position recording electrodes to isolate and maintain optimal quality extracellular signals. The system consists of a novel motorized miniature recording microdrive and a control algorithm. The microdrive was designed for chronic operation and can independently position four glass-coated Pt-Ir electrodes with micrometer precision over a 5-mm range using small (3 mm diam) piezoelectric linear actuators. The autonomous positioning algorithm is designed to detect, align, and cluster action potentials and then command the microdrive to optimize and maintain the neural signal. This system is shown to be capable of autonomous operation in monkey cortical tissue.

摘要

开发了一种系统,该系统可以自动定位记录电极,以分离并维持最佳质量的细胞外信号。该系统由一个新型电动微型记录微驱动器和一个控制算法组成。微驱动器专为长期操作而设计,可使用小型(直径3毫米)压电线性致动器在5毫米范围内以微米精度独立定位四个玻璃涂层的铂铱电极。自主定位算法旨在检测、对齐和聚类动作电位,然后命令微驱动器优化并维持神经信号。该系统已证明能够在猴皮质组织中自主运行。

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