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负责组织和细胞悬液电特性的机制。

Mechanisms responsible for electrical properties of tissues and cell suspensions.

作者信息

Schwan H P

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia 19104.

出版信息

Med Prog Technol. 1993;19(4):163-5.

PMID:8052170
Abstract

The electrical properties of tissues and cell suspensions are most unusual. They change with frequency in three distinct steps and their dielectric constants reach enormous values at low frequencies. We shall concentrate on the 'linear' properties as observed with applied fields less than 1 V/cm. The linear properties of interest include the dielectric constant epsilon and conductivity kappa. Extensive measurements have been carried out over a broad frequency range extending from less than 1 Hz to many GHz. Observed frequency changes of these properties obey causality, i.e., the Kramers-Kronig relationships which relate changes of dielectric constants with conductivity changes. A number of mechanisms have been identified which explain the observed data. These mechanisms reflect the various compartments of the biological material. These include membranes and their properties, biological macromolecules and fluid compartments inside and outside membranes. We summarize the mechanisms which contribute to the total frequency response.

摘要

组织和细胞悬液的电学特性极为独特。它们随频率呈三个明显阶段变化,且其介电常数在低频时会达到极大值。我们将专注于在小于1 V/cm的外加电场下所观察到的“线性”特性。感兴趣的线性特性包括介电常数ε和电导率κ。在从小于1 Hz到许多GHz的宽广频率范围内已进行了广泛测量。这些特性所观察到的频率变化遵循因果律,即克莱默斯-克勒尼希关系,该关系将介电常数的变化与电导率的变化联系起来。已确定了多种机制来解释所观察到的数据。这些机制反映了生物材料的各个组成部分。其中包括膜及其特性、生物大分子以及膜内外的流体组成部分。我们总结了对总频率响应有贡献的机制。

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