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Electrorheological modeling of the permeabilization of the stratum corneum: theory and experiment.

机译:角质层通透性的电流变模型:理论和实验。

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摘要

Experimentally observed changes in the conductivity of skin under the influence of a pulsing electric field were theoretically analyzed on the basis of a proposed electrorheological model of the stratum corneum (SC). The dependence of relative changes in conductivity on the amplitude of electric field and timelike parameters of applied pulses or pulse trains have been mathematically described. Statistical characteristics of phenomena of transient and long-term electroporation of SC were taken into consideration. The time-dependent decreases of skin resistance depicted by the models were fitted to experimental data for transient and long-term skin permeabilization by electric pulses. The results show two characteristic times and two spectra of characteristic energies for transient and long-term permeabilizations. The rheological parameters derived from the fittings agreed with those reported elsewhere for biological membranes.
机译:在提出的角质层(SC)电流变模型的基础上,理论上分析了实验观察到的在脉冲电场作用下皮肤电导率的变化。已经用数学方法描述了电导率的相对变化对电场幅度和所施加的脉冲或脉冲序列的类似时间的参数的依赖性。考虑到SC的瞬时和长期电穿孔现象的统计特征。模型描述的随时间推移的皮肤抵抗力下降与通过电脉冲进行的瞬时和长期皮肤通透性的实验数据拟合。结果显示了瞬时和长期磁化的两个特征时间和两个特征能量谱。从配件获得的流变参数与其他地方关于生物膜的报道一致。

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