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Open-Ended Coaxial Probe Technique for Dielectric Measurement of Biological Tissues: Challenges and Common Practices

机译:用于生物组织介电测量的开放式同轴探针技术:挑战和通用实践

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摘要

Electromagnetic (EM) medical technologies are rapidly expanding worldwide for both diagnostics and therapeutics. As these technologies are low-cost and minimally invasive, they have been the focus of significant research efforts in recent years. Such technologies are often based on the assumption that there is a contrast in the dielectric properties of different tissue types or that the properties of particular tissues fall within a defined range. Thus, accurate knowledge of the dielectric properties of biological tissues is fundamental to EM medical technologies. Over the past decades, numerous studies were conducted to expand the dielectric repository of biological tissues. However, dielectric data is not yet available for every tissue type and at every temperature and frequency. For this reason, dielectric measurements may be performed by researchers who are not specialists in the acquisition of tissue dielectric properties. To this end, this paper reviews the tissue dielectric measurement process performed with an open-ended coaxial probe. Given the high number of factors, including equipment- and tissue-related confounders, that can increase the measurement uncertainty or introduce errors into the tissue dielectric data, this work discusses each step of the coaxial probe measurement procedure, highlighting common practices, challenges, and techniques for controlling and compensating for confounders.
机译:电磁(EM)医疗技术在诊断和治疗领域正在全球范围内迅速发展。由于这些技术是低成本且微创的,因此它们已成为近年来重大研究工作的重点。此类技术通常基于以下假设:不同组织类型的介电特性存在对比,或者特定组织的特性落在定义的范围内。因此,准确了解生物组织的介电特性是EM医疗技术的基础。在过去的几十年中,进行了许多研究来扩大生物组织的电介质库。但是,尚不能提供每种组织类型以及每种温度和频率下的电介质数据。由于这个原因,介电质测量可能由不是组织介电质获取专家的研究人员执行。为此,本文回顾了使用开放式同轴探头执行的组织介电测量过程。考虑到许多因素(包括与设备和组织相关的混杂因素)会增加测量不确定度或将误差引入组织电介质数据中,因此本文将讨论同轴探针测量过程的每个步骤,重点介绍常见做法,挑战和控制和补偿混杂因素的技术。

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