Department of Electronics and Communication Engineering, Istanbul Technical University, Istanbul 34469, Turkey.
Sensors (Basel). 2021 Feb 12;21(4):1319. doi: 10.3390/s21041319.
Dielectric properties of biological tissues are traditionally measured with open-ended coaxial probes. Despite being commercially available for laboratory use, the technique suffers from high measurement error. This prevents the practical applications of the open-ended coaxial probes. One such application is the utilization of the technique for skin cancer detection. To enable a diagnostic tool, there is a need to address the error sources. Among others, tissue heterogeneity is a major contributor to measurement error. The effect of tissue heterogeneity on measurement accuracy can be decreased by quantifying the probe sensing depth. To this end, this work (1) investigates the sensing depth of the 2.2 mm-diameter open-ended coaxial probe for skin mimicking material and (2) offers a simple experimental setup and protocol for sensing depth characterization of open-ended coaxial probes. The sensing depth characterized through simulation and experiments using two double-layered configurations composed to mimic the skin tissue heterogeneity. Three thresholds in percent increase of dielectric property measurements were chosen to determine the sensing depth. Based on the experiment results, it was concluded that the sensing depth was effected by the dielectric property contrast between the layers. That is, high contrast results in rapid change whereas low contrast results in a slower change in measured dielectric properties. It was also concluded that the sensing depth was independent of frequency between 0.5 to 6 GHz and was mostly determined by the material located immediately at the aperture of the probe.
生物组织的介电特性传统上使用开放式同轴探头进行测量。尽管该技术在商业上可用于实验室使用,但由于测量误差较高,其实际应用受到限制。其中一个应用是利用该技术进行皮肤癌检测。为了实现诊断工具,需要解决误差源。组织异质性是测量误差的主要原因之一。通过量化探头感应深度,可以降低组织异质性对测量精度的影响。为此,这项工作(1)研究了 2.2 毫米直径开放式同轴探头在皮肤模拟材料中的感应深度,(2)提供了一种简单的实验设置和协议,用于表征开放式同轴探头的感应深度。通过使用两种双层配置进行模拟和实验来表征感应深度,这两种配置模拟了皮肤组织的异质性。选择了三个百分比增加的介电特性测量的阈值来确定感应深度。根据实验结果,得出结论:感应深度受层间介电特性对比度的影响。也就是说,高对比度会导致测量介电特性的快速变化,而低对比度会导致较慢的变化。还得出结论,感应深度与 0.5 至 6GHz 之间的频率无关,主要由探头孔口处的材料决定。