Structural analysis of electrical properties of cells and tissues.

Critical reviews in bioengineering Pub Date : 1980-01-01
R S Eisenberg, R T Mathias
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Abstract

Most cells and tissues have electrical properties relevant to their natural function. Most cells and tissues have rather complex structure, consisting of folding and invaginating membranes and specialized connections and organelles. The localization of electrical properties is particularly important, since each of the complex structures must be expected to have a specific role in the electrical function of the tissue. The structural analysis of electrical properties consists then in the measurements of the electrical properties of the individual components of the tissue or cell. The structural analysis proceeds by a qualitative analysis of the topology of the preparation, followed by quantitative measurements of the morphometric parameters, the surface, and volume of the relevant structures. A theoretical analysis is performed to determine the electrical properties expected from such a structure. Measurements of natural and induced electrical properties are then made. Comparison of the observed electrical properties with those predicted allows determination of the properties of individual components of the tissue. In this manner the role of individual membrane systems in the function of both skeletal muscle and the lens of the eye has been determined.

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细胞和组织电学特性的结构分析。
大多数细胞和组织都具有与其自然功能相关的电特性。大多数细胞和组织具有相当复杂的结构,包括折叠和内陷膜以及专门的连接和细胞器。电学性质的定位是特别重要的,因为每一个复杂的结构都必须在组织的电学功能中有一个特定的作用。电性能的结构分析包括测量组织或细胞的各个组成部分的电性能。结构分析通过对制备的拓扑结构进行定性分析,然后对相关结构的形貌参数、表面和体积进行定量测量。进行了理论分析,以确定这种结构所期望的电性能。然后进行自然和感应电性能的测量。将观察到的电学性质与预测的电学性质进行比较,可以确定组织中各个成分的性质。通过这种方式,单个膜系统在骨骼肌和眼睛晶状体功能中的作用已经确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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