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首页> 外文期刊>Physics in medicine and biology. >Penetration of electromagnetic fields of an open-ended coaxial probe between 1 MHz and 1 GHz in dielectric skin measurements.
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Penetration of electromagnetic fields of an open-ended coaxial probe between 1 MHz and 1 GHz in dielectric skin measurements.

机译:在介电蒙皮测量中,开放式同轴探头的电磁场在1 MHz至1 GHz之间的穿透率。

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摘要

An open-ended coaxial probe is often used for investigating the dielectric properties of biological tissues. The present study indicates that in addition to the probe size, the penetration of the electromagnetic (EM) fields of an open-ended coaxial probe in contact with the skin is dependent on the applied frequency between 1 MHz and 1 GHz. At high frequencies, above 100 MHz, the measured dielectric parameters are functions of the dielectric properties of different cutaneous layers and subcutaneous fat. At lower frequencies, less than 10 MHz, the measurement is mainly dependent on the dielectric properties of superficial structures of the skin. The reason for this is that the probe, the surface of the skin, mainly stratum corneum, and underlying skin form a capacitance where the stratum corneum with low water content lies between the well-conducting dermis and the probe. The situation is equivalent to the frequency-dependent Maxwell-Wagner interfacial polarization. This result is verified by experimental dielectric measurements and with human skin in vivo.
机译:开放式同轴探针通常用于研究生物组织的介电性能。本研究表明,除了探头尺寸外,与皮肤接触的开放式同轴探头的电磁(EM)场的穿透程度还取决于所施加的1 MHz至1 GHz之间的频率。在高于100 MHz的高频下,测得的介电参数是不同皮肤层和皮下脂肪的介电特性的函数。在低于10 MHz的较低频率下,测量主要取决于皮肤表层结构的介电特性。这是因为探针,皮肤表面(主要是角质层)和下面的皮肤形成了电容,在其中含水量低的角质层位于导电性良好的真皮和探针之间。这种情况等同于依赖于频率的麦克斯韦-瓦格纳界面极化。该结果通过实验性介电测量和体内人体皮肤得到验证。

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