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Electrical properties of skin at moderate voltages: contribution of appendageal macropores.

机译:中等电压下皮肤的电特性:阑尾大孔的贡献。

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摘要

The electrical properties of human skin in the range of the applied voltages between 0.2 and 60 V are modeled theoretically and measured experimentally. Two parallel electric current pathways are considered: one crossing lipid-corneocyte matrix and the other going through skin appendages. The appendageal ducts are modeled as long tubes with distributed electrical parameters. For both transport systems, equations taking into account the electroporation of lipid lamella in the case the lipid-corneocyte matrix or the walls of the appendageal ducts in the case of the skin appendages are derived. Numerical solutions of these nonlinear equations are compared with published data and the results of our own experiments. The current-time response of the skin during the application of rectangular pulses of different voltage amplitudes show a profound similarity with the same characteristics in model and plasma membrane electroporation. A comparison of the theory and the experiment shows that a significant (up to three orders of magnitude) drop of skin resistance due to electrotreatment can be explained by electroporation of different substructures of stratum corneum. At relatively low voltages (U < 30 V) this drop of skin resistance can be attributed to electroporation of the appendageal ducts. At higher voltages (U > 30 V), electroporation of the lipid-corneocyte matrix leads to an additional drop of skin resistance. These theoretical findings are in a good agreement with the experimental results and literature data.
机译:理论上建模并通过实验测量了施加电压在0.2到60 V之间范围内的人体皮肤的电学特性。考虑了两个平行的电流路径:一个穿过脂质-角质形成细胞基质,另一个穿过皮肤附属物。附属导管被建模为具有分布电参数的长管。对于这两种运输系统,推导了在脂质-角质形成细胞基质或在皮肤附件的情况下,考虑到脂质薄片的电穿孔的方程式。将这些非线性方程的数值解与已发布的数据以及我们自己的实验结果进行了比较。在施加不同电压幅度的矩形脉冲期间,皮肤的电流-时间响应在模型和质膜电穿孔中显示出与特征相同的深远相似性。理论与实验的比较表明,由于电处理引起的皮肤电阻显着(最多三个数量级)下降可以通过对角质层不同亚结构的电穿孔来解释。在相对较低的电压(U <30 V)下,皮肤电阻的这种下降可归因于附件导管的电穿孔。在较高的电压(U> 30 V)下,脂质-角质形成细胞基质的电穿孔会导致皮肤抵抗力下降。这些理论发现与实验结果和文献数据非常吻合。

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