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Characterization of the complex permittivity of brain tissues up to 50 GHz utilizing a two-port microstrip test fixture

机译:使用两端口微带测试夹具表征高达50 GHz的脑组织的复介电常数

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Broad-band complex-permittivity values of biological tissues above 20 GHz obtained from direct measurements have not been reported in the literature. This paper presents for the first time the measurement results of complex permittivity of brain grey and white matters from 15 to 50 GHz utilizing a two-port microstrip test fixture. Test fixture S-parameters are simulated employing the finite-element method. To apply the data obtained from the simulation in complex-permittivity extraction, an efficient procedure, using the linear least square technique, is introduced to fit the modeling results to a rational function of complex permittivity, which is similar to the transfer function for a linear system. This fitting procedure is computationally more efficient than the previously developed fitting methods. Measurements are performed on slices of brain sample using a calibrated network analyzer utilizing custom designed through-reflect-line (TRL) calibration standards. The measurements are corrected for the residual errors observed in the measurement results due to the lack of performance repeatability of coaxial-to-microstrip launchers utilized in the TRL calibration standards. Finally, the measured results for brain matters are fitted to a single term Cole-Cole relation representing the dispersion characteristics of white and grey matters up to 50 GHz.
机译:通过直接测量获得的高于20 GHz的生物组织的宽带复介电常数值尚未在文献中报道。本文首次介绍了使用两端口微带测试夹具在15至50 GHz范围内对脑灰和白质的复介电常数的测量结果。使用有限元方法模拟了测试夹具的S参数。为了将从仿真中获得的数据应用到复介电常数提取中,引入了使用线性最小二乘技术的有效程序,以将建模结果拟合为复介电常数的有理函数,该函数类似于线性的传递函数。系统。该拟合过程在计算上比以前开发的拟合方法更有效。使用定制的直通反射线(TRL)校准标准品,使用经过校准的网络分析仪对大脑样本切片进行测量。由于TRL校准标准中使用的同轴转微带发射器缺乏性能可重复性,因此对测量结果中的残留误差进行了校正。最后,将脑物质的测量结果拟合为一个单项Cole-Cole关系,该关系表示高达50 GHz的白色和灰色物质的色散特性。

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