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用于电化学记录的陶瓷基多部位微电极。

Ceramic-based multisite microelectrodes for electrochemical recordings.

作者信息

Burmeister J J, Moxon K, Gerhardt G A

机构信息

Department of Anatomy, University of Kentucky, Chandler Medical Center, Lexington 40536-0098, USA.

出版信息

Anal Chem. 2000 Jan 1;72(1):187-92. doi: 10.1021/ac9907991.

Abstract

This paper describes the development and characterization of ceramic-based multisite arrays for electrochemical recordings in biological systems. These electrodes represent a parallel technology to the design of microelectrodes using silicon substrates. The ceramic substrates are stronger than silicon and are nonconducting, which makes them better suited for in vivo electrochemical measurements. The current designs are based on formation of four-site (50 x 50 microns with 200 microns spacing) electrodes on ceramic wafers using photolithography. The recording sites and connecting lines are made of Pt with a polyimide coating to insulate the connecting lines. The resulting electrodes are cut from the wafers producing a 1 cm length microelectrode that tapers to a approximately 2-5 microns tip. Electrochemical measures of dopamine and hydrogen peroxide support that the sensitivity, selectivity, and response characteristics of the electrodes exceed those of previously published silicon substrate-based microelectrodes. This is the first demonstration of microarrays formed from ceramic substrates, and the data presented support the hypothesis that these microelectrodes may be useful for a variety of neurochemical and electrophysiological applications. Preliminary in vivo electrochemical recordings are presented.

摘要

本文描述了用于生物系统电化学记录的陶瓷基多部位阵列的开发与特性。这些电极代表了一种与使用硅基片设计微电极并行的技术。陶瓷基片比硅更坚固且不导电,这使其更适合用于体内电化学测量。当前的设计基于使用光刻技术在陶瓷晶片上形成四部位(50×50微米,间距200微米)电极。记录部位和连接线由铂制成,并带有聚酰亚胺涂层以绝缘连接线。将所得电极从晶片上切割下来,制成1厘米长的微电极,其尖端逐渐变细至约2 - 5微米。多巴胺和过氧化氢的电化学测量结果表明,这些电极的灵敏度、选择性和响应特性超过了先前发表的基于硅基片的微电极。这是首次展示由陶瓷基片形成的微阵列,所呈现的数据支持了这些微电极可能适用于多种神经化学和电生理应用的假设。文中还展示了初步的体内电化学记录。

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