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皮肤电学特性与结构及生理状态的关系。

Relation of electrical properties of skin to structure and physiologic state.

作者信息

Edelberg R

出版信息

J Invest Dermatol. 1977 Sep;69(3):324-7. doi: 10.1111/1523-1747.ep12507771.

Abstract

Interpretation of cutaneous electrical measurements in terms of structure or function requires special techniques for identifying the separate contributions of the various elements. Resistance measures have different implications depending upon whether the subject is sweating and whether the electrode preparation is wet or dry. Microelectrode measurement indicates that the stratum corneum and other epidermal layers represent a significant pathway for ion conductance. Impedance measurement allows estimation of skin capacitance and of the thickness of the capacitative element. When applied to data on excised stratum corneum, this analysis indicates the presence of a relatively impermeable layer less than 2 microns thick, a conclusion subject to some doubt because of uncertainty over the dielectric constant of wet keratin. The use of impedance measurement with closely spaced electrodes gives an indication of the hydration of the superficial horny layer and also demonstrates reabsorption of sweat from this region. Potential measurement at the surface reflects the relative internal resistance of two parallel sources, the sweat glands and an "epidermal generator."

摘要

根据结构或功能来解释皮肤电测量结果需要特殊技术,以识别各种元件的单独贡献。电阻测量的含义因受试者是否出汗以及电极准备是湿还是干而有所不同。微电极测量表明,角质层和其他表皮层代表了离子传导的重要途径。阻抗测量可以估计皮肤电容和电容元件的厚度。当应用于切除的角质层数据时,该分析表明存在一层厚度小于2微米的相对不透水层,由于湿角蛋白介电常数的不确定性,这一结论存在一些疑问。使用间距很近的电极进行阻抗测量可以表明浅表角质层的水合作用,还可以证明该区域对汗液的重吸收。表面电位测量反映了两个平行源(汗腺和“表皮发生器”)的相对内阻。

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