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用于在水迷宫中同时进行神经刺激和记录的高性价比前置放大器的设计与构建。

Design and construction of a cost effective headstage for simultaneous neural stimulation and recording in the water maze.

作者信息

Shirvalkar Prasad R, Shapiro Mathew L

机构信息

Department of Neuroscience, Friedman Brain Institute, Mount Sinai School of Medicine.

出版信息

J Vis Exp. 2010 Oct 13(44):2155. doi: 10.3791/2155.

Abstract

Headstage preamplifiers and source followers are commonly used to study neural activity in behavioral neurophysiology experiments. Available commercial products are often expensive, not easily customized, and not submersible. Here we describe a method to design and build a customized, integrated circuit headstage for simultaneous 4-channel neural recording and 2-channel simulation in awake, behaving animals. The headstage is designed using a free, commercially available CAD-type design package, and can be modified easily to accommodate different scales (e.g. to add channels). A customized printed circuit board is built using surface mount resistors, capacitors and operational amplifiers to construct the unity gain source follower circuit. The headstage is made water-proof with a combination of epoxy, parafilm and a synthetic rubber putty. We have successfully used this device to record local field potentials and stimulate different brain regions simultaneously via independent channels in rats swimming in a water maze. The total cost is < $30/unit and can be manufactured readily.

摘要

前置放大器和源极跟随器常用于行为神经生理学实验中研究神经活动。现有的商业产品通常价格昂贵,不易定制,且不可潜水。在此,我们描述一种用于设计和构建定制集成电路前置放大器的方法,该前置放大器可在清醒、行为活动的动物中同时进行4通道神经记录和2通道模拟。该前置放大器使用免费的、可商购的CAD类型设计软件包进行设计,并且可以轻松修改以适应不同规模(例如增加通道)。使用表面贴装电阻器、电容器和运算放大器构建定制印刷电路板,以构建单位增益源极跟随器电路。通过环氧树脂、石蜡膜和合成橡胶腻子的组合使前置放大器防水。我们已成功使用该设备在水迷宫中游泳的大鼠中通过独立通道同时记录局部场电位并刺激不同脑区。总成本低于30美元/单位,且易于制造。

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