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Sensing Radius of an Open-Ended Coaxial Probe for Dielectric Measurement of Tissues: Calculation with Relative Permittivity versus Conductivity

机译:用于介电测量组织的开放式同轴探针的传感半径:相对介电常数与电导率的计算

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The dielectric properties of biological tissues are important parameters used in the design and optimisation of electromagnetic-based medical technologies. Typically, these parameters are measured ex-vivo using the open-ended coaxial probe technique. However, the accuracy of such reported dielectric data can be impacted by confounders in the measurement process. Strategies are needed to control and compensate for these confounders, which could contribute to uncertainty or error in dielectric measurements, especially for complex heterogeneous tissues. Therefore, this work examines a key source of error in the interpretation of dielectric properties. Specifically, this work investigates the sensing radius of a coaxial probe in the context of heterogeneous tissue measurements. The sensing radius is calculated for different simulated heterogeneous breast tissue samples, and the impact of using relative permittivity in the calculation of the sensing radius versus using conductivity is examined.
机译:生物组织的介电性能是用于电磁基医学技术的设计和优化的重要参数。通常,使用开放式同轴探针技术来测量这些参数的ex-Vivo。然而,这种报道的介电数据的准确性可能受到测量过程中的混血器的影响。需要策略来控制和弥补这些混乱,这可能导致介电测量中的不确定度或误差,特别是对于复杂的异质组织。因此,这项工作检查了介电特性的解释中的误差源。具体地,在异构组织测量的背景下,研究了同轴探针的感测半径。检查了对不同模拟的异质乳房组织样本计算的传感半径,并检查使用电导率计算传感半径与传感半径相比的相对介电常数的影响。

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