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A study of the dielectric properties of biological tissues: Ex-vivo vs preserved samples

机译:生物组织介电特性的研究:离体与保存样本

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Dielectric properties are the most important parameters determining energy deposition when biological tissues are exposed to microwave fields. Energy absorption is determined by the specific absorption rate (SAR), which distributions can be computed accurately only if the complex relative permittivity of the target tissue is known to a sufficiently high accuracy. Presently there is a lack of data on the dielectric properties of biological tissues at high frequencies. This work describes in detail the measurements of ex-vivo dielectric properties of fat tissue and their correlation to preserved samples. In addition, the temperature variability of fat tissue dielectric properties is shown. Measurements were conducted using an open-ended reflection technique and the frequency band considered for this study ranged from 1 GHz up to 20 GHz. The measurement system was controlled via a PC and the complex reflection coefficient was recorded for a given number of frequencies. The complex reflection coefficient (S11parameter) was converted to complex permittivity (ε) utilizing the Agilent software 85070E. A one-pole Cole-Cole model was used to fit the measured data as a function of frequency and the dispersion parameters.
机译:当生物组织暴露于微波场时,介电特性是决定能量沉积的最重要参数。能量吸收是由比吸收率(SAR)确定的,只有知道目标组织的复数相对介电常数达到足够高的准确度时,才可以准确地计算其分布。当前,缺乏关于生物组织在高频下的介电特性的数据。这项工作详细描述了脂肪组织的离体介电特性的测量及其与保存样品的相关性。另外,显示了脂肪组织介电性质的温度变化性。使用开放式反射技术进行测量,本研究考虑的频带范围为1 GHz至20 GHz。通过PC控制测量系统,并记录给定频率下的复反射系数。复数反射系数(S \ n 11 \ n参数)已使用安捷伦软件85070E转换为复介电常数(ε)。使用单极Cole-Cole模型拟合测量数据,作为频率和色散参数的函数。

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