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用于小动物慢性神经记录的微型电动微驱动和换向器系统。

Miniature motorized microdrive and commutator system for chronic neural recording in small animals.

作者信息

Fee M S, Leonardo A

机构信息

Biological Computation Research Department, Bell Laboratories, Rm 1C-463, 600 Mountain Avenue, Murray Hill, NJ 07974, USA.

出版信息

J Neurosci Methods. 2001 Dec 15;112(2):83-94. doi: 10.1016/s0165-0270(01)00426-5.

Abstract

The use of chronically implanted electrodes for neural recordings in small, freely behaving animals poses several unique technical challenges. Because of the need for an extremely lightweight apparatus, chronic recording technology has been limited to manually operated microdrives, despite the advantage of motorized manipulators for positioning electrodes. Here we describe a motorized, miniature chronically implantable microdrive for independently positioning three electrodes in the brain. The electrodes are controlled remotely, avoiding the need to disturb the animal during electrode positioning. The microdrive is approximately 6 mm in diameter, 17 mm high and weighs only 1.5 g, including the headstage preamplifier. Use of the motorized microdrive has produced a ten-fold increase in our data yield compared to those experiments done using a manually operated drive. In addition, we are able to record from multiple single neurons in the behaving animal with signal quality comparable to that seen in a head-fixed anesthetized animal. We also describe a motorized commutator that actively tracks animal rotation based on a measurement of torque in the tether.

摘要

在小型自由活动动物中使用长期植入电极进行神经记录面临着一些独特的技术挑战。由于需要极其轻便的设备,长期记录技术一直局限于手动操作的微驱动器,尽管电动操纵器在电极定位方面具有优势。在此,我们描述一种电动微型长期可植入微驱动器,用于在大脑中独立定位三个电极。电极通过远程控制,避免了在电极定位过程中干扰动物。该微驱动器直径约6毫米,高17毫米,仅重1.5克,包括前置放大器头端。与使用手动驱动进行的实验相比,使用电动微驱动器使我们的数据产量提高了十倍。此外,我们能够在行为动物中记录多个单个神经元,信号质量与头部固定麻醉动物相当。我们还描述了一种电动换向器,它基于系绳中的扭矩测量主动跟踪动物的旋转。

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