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多电极:用于大规模多单元记录的高密度硅电极阵列。

Polytrodes: high-density silicon electrode arrays for large-scale multiunit recording.

作者信息

Blanche Timothy J, Spacek Martin A, Hetke Jamille F, Swindale Nicholas V

机构信息

Department of Ophthalmology and Visual Sciences, University of British Columbia, 2550 Willow St., Vancouver, BC V5Z 3N9, Canada.

出版信息

J Neurophysiol. 2005 May;93(5):2987-3000. doi: 10.1152/jn.01023.2004. Epub 2004 Nov 17.

Abstract

We developed a variety of 54-channel high-density silicon electrode arrays (polytrodes) designed to record from large numbers of neurons spanning millimeters of brain. In cat visual cortex, it was possible to make simultaneous recordings from >100 well-isolated neurons. Using standard clustering methods, polytrodes provide a quality of single-unit isolation that surpasses that attainable with tetrodes. Guidelines for successful in vivo recording and precise electrode positioning are described. We also describe a high-bandwidth continuous data-acquisition system designed specifically for polytrodes and an automated impedance meter for testing polytrode site integrity. Despite having smaller interconnect pitches than earlier silicon-based electrodes of this type, these polytrodes have negligible channel crosstalk, comparable reliability, and low site impedances and are capable of making high-fidelity multiunit recordings with minimal tissue damage. The relatively benign nature of planar electrode arrays is evident both histologically and in experiments where the polytrode was repeatedly advanced and retracted hundreds of microns over periods of many hours. It was possible to maintain stable recordings from active neurons adjacent to the polytrode without change in their absolute positions, neurophysiological or receptive field properties.

摘要

我们开发了多种54通道的高密度硅电极阵列(多电极),用于记录跨越数毫米脑区的大量神经元活动。在猫的视觉皮层中,能够同时记录超过100个分离良好的神经元。使用标准的聚类方法,多电极提供的单单元分离质量超过了四电极所能达到的水平。文中描述了成功进行体内记录和精确电极定位的指导原则。我们还介绍了一种专门为多电极设计的高带宽连续数据采集系统以及用于测试多电极位点完整性的自动阻抗计。尽管这些多电极的互连间距比早期此类硅基电极更小,但它们的通道串扰可忽略不计,可靠性相当,位点阻抗低,并且能够在对组织损伤最小的情况下进行高保真多单元记录。平面电极阵列相对温和的特性在组织学以及多电极在数小时内反复前进和后退数百微米的实验中都很明显。能够在多电极附近的活跃神经元上保持稳定记录,而其绝对位置、神经生理学或感受野特性均无变化。

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