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Microwave dielectric analysis of human stratum corneum in vivo

机译:体内人角质层的微波介电分析

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The dielectric properties of the human skin stratum corneum (SC) in the frequency range higher than 10~7 Hz are not well understood because of the difficulty in selective scanning of the SC area in vivo. The present study was carried out to make clear factors responsible for the dielectric properties using a measuring system specially developed for the study of SC [S. Naito, M. Hoshi, S. Mashimo, Anal. Biochem. 251 (1997) 163-172]. We found that the dielectric properties of SC can be expressed by the linear combination of two relaxation processes and d.c. conduction. The faster relaxation is that of free water. The slower relaxation and d.c. conduction were analyzed using a model assuming interfacial polarization between dissimilar materials. We concluded that the polarization is the origin of the slower relaxation process because the experimental data could be well interpreted according to the above mechanism. We also concluded that the polarization of swelled SC locates at the interface between SC cells and the intercellular lipid layer, or at the interface between the lipophilic and the hydrophilic part of the lamellar structured intercellular lipid layer.
机译:由于在体内选择性扫描SC区域的困难,所以人们对在高于10〜7Hz的频率范围内的人皮肤角质层(SC)的介电特性还没有很好的了解。进行本研究是为了使用专门为研究SC [S.内藤,星志,S。Mashimo,肛门。生化。 251(1997)163-172]。我们发现,SC的介电特性可以通过两个弛豫过程和d.c的线性组合来表示。传导。更快的放松是自由水的放松。缓慢的放松和直流电使用假设不同材料之间的界面极化的模型对传导进行了分析。我们得出结论,极化是慢弛豫过程的起源,因为根据上述机理可以很好地解释实验数据。我们还得出结论,溶胀的SC的极化位于SC细胞与细胞间脂质层之间的界面,或层状结构化细胞间脂质层的亲脂性和亲水性部分之间的界面。

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