生物工程中的金属电极。

Critical reviews in bioengineering Pub Date : 1981-01-01
W Greatbatch
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引用次数: 0

摘要

金属电极是测量或刺激装置与被测量或刺激实体之间的关键接口。电流通过电子流在导线中流动。它通过离子流在组织或液体中流动。要使电子产生离子,必须进行化学反应。这种反应发生在距离金属表面一微米的范围内。这是一个不同于阳极和阴极的反应。它通常更强烈地依赖于为电极选择的金属,而不是电极浸入的液体或组织电解质。在所有情况下,反应对都强烈依赖于系统的静态电压水平和在该水平附近的电压漂移的大小。本演讲将尝试从必须使用这种金属电极进行实际测量或必须将实际刺激装置连接到生物物理系统的研究人员/设计师的角度讨论上述要点。我们将讨论的跨学科领域是“生物物理电化学”,仔细检查这四个组成领域是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metal electrodes in bioengineering.

The metal electrode is the critical interface between a measuring or stimulating device and the entity to be measured or stimulated. Electricity flows through wires by electron flow. It flows through tissue or fluid by ion flow. To produce an ion from an electron, a chemical reaction is necessary. This reaction occurs within a micron of the metal surface. It is a different reaction for an anode than for a cathode. It usually depends much more strongly on the metal chosen for the electrode than on the fluid or tissue electrolyte in which the electrode is immersed. In all cases, the reaction pair is strongly dependent on the quiescent voltage level of the system and on the magnitude of the voltage excursions around that level. This presentation will attempt to discuss the above points from the viewpoint of the researcher/designer who must use such metal electrodes to make practical measurements or who must connect practical stimulating devices to biophysical systems. The interdisciplinary field we will be discussing is "biophysical electrochemistry", and careful examination of each of these four component fields is necessary.

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