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Precision Open-Ended Coaxial Probes for In Vivo and Ex Vivo Dielectric Spectroscopy of Biological Tissues at Microwave Frequencies

机译:微波频率下生物组织体内和体外介电谱的精密开放式同轴探针

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摘要

Hermetic stainless-steel open-ended coaxial probes have been designed for precision dielectric spectroscopy of biological tissue, such as breast tissue, over the 0.5-20-GHz frequency range. Robust data-processing techniques have also been developed for extracting the unknown permittivity of the tissue under test from the reflection coefficient measured with the precision probe and a vector network analyzer. The first technique, referred to as a reflection-coefficient deembedding method, converts the reflection coefficient measured at the probe's calibration plane to the desired aperture-plane reflection coefficient. The second technique uses a rational function model to solve the inverse problem, i.e., to convert the aperture-plane reflection coefficient to the tissue permittivity. The results of the characterization and validation studies demonstrate that these precision probes, used with the prescribed measurement protocols and data-processing techniques, provide highly accurate and reliable in vivo and ex vivo biological tissue measurements, including breast tissue spectroscopy.
机译:封闭式不锈钢开放式同轴探头已设计用于0.5-20 GHz频率范围内的生物组织(如乳房组织)的精密介电谱。还开发了可靠的数据处理技术,用于从用精密探头和矢量网络分析仪测量的反射系数中提取被测组织的未知介电常数。第一种技术,称为反射系数去嵌入方法,将在探头校准平面上测得的反射系数转换为所需的孔径平面反射系数。第二种技术使用有理函数模型来解决反问题,即,将孔径平面反射系数转换为组织介电常数。表征和验证研究的结果表明,与规定的测量规程和数据处理技术配合使用的这些精密探头可提供高度准确且可靠的体内和离体生物组织测量,包括乳腺组织光谱学。

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