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使用硅多通道电极进行记录和标记。

Recording and marking with silicon multichannel electrodes.

作者信息

Townsend George, Peloquin Pascal, Kloosterman Fabian, Hetke Jamille F, Leung L Stan

机构信息

Department of Computer Science, Algoma University College, Sault Ste. Marie, Ontario, Canada.

出版信息

Brain Res Brain Res Protoc. 2002 Apr;9(2):122-9. doi: 10.1016/s1385-299x(02)00139-3.

Abstract

This protocol describes an implementation of recording and analysis of evoked potentials in the hippocampal cortex, combined with lesioning using multichannel silicon probes. Multichannel recording offers the advantage of capturing a potential field at one instant in time. The potentials are then subjected to current source density (CSD) analysis, to reveal the layer-by-layer current sources and sinks. Signals from each channel of a silicon probe (maximum 16 channels in this study) were amplified and digitized at up to 40 kHz after sample-and-hold circuits. A modular lesion circuit board could be inserted between the input preamplifiers and the silicon probe, such that any one of the 16 electrodes could be connected to a DC lesion current. By making a lesion at the electrode showing a physiological event of interest, the anatomical location of the event can be precisely identified, as shown for the distal dendritic current sink in CA1 following medial perforant path stimulation. Making two discrete lesions through the silicon probe is useful to indicate the degree of tissue shrinkage during histological procedures. In addition, potential/CSD profiles were stable following small movements of the silicon probe, suggesting that the probe did not cause excessive damage to the brain.

摘要

本方案描述了一种在海马体皮层中记录和分析诱发电位,并结合使用多通道硅探针进行损伤实验的方法。多通道记录的优势在于能够在某一时刻捕捉电位场。然后对这些电位进行电流源密度(CSD)分析,以揭示逐层的电流源和电流汇。硅探针各通道(本研究中最多16个通道)的信号在采样保持电路之后被放大,并以高达40kHz的频率数字化。一个模块化的损伤电路板可以插入到输入前置放大器和硅探针之间,这样16个电极中的任何一个都可以连接到直流损伤电流。通过在显示感兴趣生理事件的电极处制造损伤,可以精确识别该事件的解剖位置,如内侧穿通路径刺激后CA1区远端树突电流汇的情况。通过硅探针制造两个离散的损伤,有助于指示组织学过程中组织收缩的程度。此外,硅探针轻微移动后,电位/CSD图谱保持稳定,这表明该探针不会对大脑造成过度损伤。

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