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MEMS 驱动碳纤维微电极用于神经记录。

MEMS-Actuated Carbon Fiber Microelectrode for Neural Recording.

出版信息

IEEE Trans Nanobioscience. 2019 Apr;18(2):234-239. doi: 10.1109/TNB.2019.2905505. Epub 2019 Mar 15.

Abstract

Microwire and microelectrode arrays used for cortical neural recording typically consist of tens to hundreds of recording sites, but often only a fraction of these sites are in close enough proximity to firing neurons to record single-unit activity. Recent work has demonstrated precise, depth-controllable mechanisms for the insertion of single neural recording electrodes, but these methods are mostly only capable of inserting electrodes which elicit an adverse biological response. We present an electrostatic-based actuator capable of inserting individual carbon fiber microelectrodes which elicit minimal to no adverse biological response. The device is shown to insert a carbon fiber recording electrode into an agar brain phantom and can record an artificial neural signal in saline. This technique provides a platform generalizable to many microwire-style recording electrodes.

摘要

用于皮质神经记录的微丝和微电极阵列通常由数十到数百个记录位点组成,但通常只有一小部分记录位点与发射神经元足够接近以记录单个单元的活动。最近的工作已经证明了用于插入单个神经记录电极的精确、深度可控的机制,但这些方法大多只能插入会引起不良生物反应的电极。我们提出了一种基于静电的执行器,能够插入单个碳纤维微电极,这些电极只会引起最小至无不良生物反应。该装置被证明可以将碳纤维记录电极插入琼脂脑模型中,并可以在盐水中记录人工神经信号。这项技术为许多微丝式记录电极提供了一个可推广的平台。

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