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Improved microwave biosensor for non-invasive dielectric characterization of biological tissues

机译:改进的微波生物传感器,用于生物组织的非侵入性介电表征

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摘要

Microwave planar sensors have a great interest in the medical environment due to their ability to measure the bulk dielectric parameters of biological tissues through non-invasive and contact-less sensing properties. Changes of these parameters, which are frequency dependent, can be representative of the pathological state of biological tissues. In this work, an improved prototype of planar sensor based on a microwave ring resonator operating at 1 GHz for the fundamental mode is presented. The objective is to obtain a better sensitivity for measuring high complex permittivity values of materials such as biological tissues, and to obtain higher precision in parameters determination. The performances of two sensors optimized on two different substrates were measured in a frequency range 1-10 GHz; an accurate equivalent electrical model is proposed to reproduce the frequency dependence of the resonators. Characterization of liquids and ex-vivo animal tissues is achieved to evaluate the effectiveness and the performances of the resonator sensor, and results are compared with electromagnetic simulations.
机译:微波平面传感器由于能够通过非侵入式和非接触式传感特性来测量生物组织的整体介电参数,因此在医学环境中引起了极大的兴趣。这些与频率有关的参数的变化可以代表生物组织的病理状态。在这项工作中,提出了一种基于微波环形谐振器的,针对基本模式工作的平面传感器的改进原型。目的是获得用于测量诸如生物组织的材料的高复介电常数值的更好的灵敏度,并且在参数确定中获得更高的精度。在1-10 GHz频率范围内测量了在两个不同基板上优化的两个传感器的性能。提出了一个精确的等效电模型来重现谐振器的频率依赖性。实现了液体和离体动物组织的表征,以评估谐振器传感器的有效性和性能,并将结果与​​电磁仿真进行了比较。

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