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用于记录清醒非人类灵长类动物多神经元活动的多通道微操纵器和腔室系统。

Multichannel micromanipulator and chamber system for recording multineuronal activity in alert, non-human primates.

作者信息

Gray Charles M, Goodell Baldwin, Lear Alex

机构信息

Center for Computational Biology, Montana State University, Bozeman, MT 59717, USA.

出版信息

J Neurophysiol. 2007 Jul;98(1):527-36. doi: 10.1152/jn.00259.2007. Epub 2007 May 9.

Abstract

We describe the design and performance of an electromechanical system for conducting multineuron recording experiments in alert non-human primates. The system is based on a simple design, consisting of a microdrive, control electronics, software, and a unique type of recording chamber. The microdrive consists of an aluminum frame, a set of eight linear actuators driven by computer-controlled miniature stepping motors, and two printed circuit boards (PCBs) that provide connectivity to the electrodes and the control electronics. The control circuitry is structured around an Atmel RISC-based microcontroller, which sends commands to as many as eight motor control cards, each capable of controlling eight motors. The microcontroller is programmed in C and uses serial communication to interface with a host computer. The graphical user interface for sending commands is written in C and runs on a conventional personal computer. The recording chamber is low in profile, mounts within a circular craniotomy, and incorporates a removable internal sleeve. A replaceable Sylastic membrane can be stretched across the bottom opening of the sleeve to provide a watertight seal between the cranial cavity and the external environment. This greatly reduces the susceptibility to infection, nearly eliminates the need for routine cleaning, and permits repeated introduction of electrodes into the brain at the same sites while maintaining the watertight seal. The system is reliable, easy to use, and has several advantages over other commercially available systems with similar capabilities.

摘要

我们描述了一种用于在清醒的非人类灵长类动物中进行多神经元记录实验的机电系统的设计与性能。该系统基于一种简单的设计,由一个微驱动器、控制电子设备、软件以及一种独特类型的记录室组成。微驱动器由一个铝制框架、一组由计算机控制的微型步进电机驱动的八个线性致动器,以及两块提供与电极和控制电子设备连接的印刷电路板(PCB)组成。控制电路围绕一个基于Atmel RISC的微控制器构建,该微控制器向多达八个电机控制卡发送命令,每个电机控制卡能够控制八个电机。微控制器用C语言编程,并使用串行通信与主机计算机接口。用于发送命令的图形用户界面用C语言编写,并在一台传统个人计算机上运行。记录室外形低矮,安装在圆形开颅术中,并包含一个可移除的内部套筒。一个可更换的硅橡胶膜可以横跨套筒的底部开口拉伸,以在颅腔和外部环境之间提供防水密封。这大大降低了感染的易感性,几乎消除了常规清洁的需要,并允许在保持防水密封的同时在相同部位将电极反复插入大脑。该系统可靠、易于使用,并且与其他具有类似功能的商业可用系统相比有几个优点。

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