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Thermal analysis of multiple-antenna-excited breast model for breast cancer detection

机译:多天线激发乳腺癌模型的热分析

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Infrared thermography (IRT), or thermal imaging has long been proposed as a novel method in early detection of breast cancer. Most of the work done was through the detection of abnormal hotspot, or asymmetries in a thermal texture map. However, the surface temperature may not appear symmetric even for a healthy breast because of variations in blood supply and individual differences. In this paper, a method that is independent of the aforementioned symmetry is proposed. The breast under detection is initially excited by a group of patch antennas. Because of the differences in electromagnetic and thermal properties, the temperature increase will be different for healthy and abnormal tissues. Through the analysis of the temperature changing behavior, comparison of the temperature under each antenna with its vicinity point is done to determine whether cancerous tissue is present or not and further to detect its approximate location. A three-dimensional (3-D) finite-element method (FEM) has been used to simulate the thermal behavior of breast tissue exposed to antenna excitations.
机译:长期以来,红外热成像(IRT)或热成像已被提议作为乳腺癌早期检测的一种新方法。完成的大部分工作是通过检测异常热点或热纹理图中的不对称性来完成的。但是,由于血液供应的变化和个体差异,即使对于健康的乳房,表面温度也可能看起来不对称。在本文中,提出了一种独立于上述对称性的方法。被检测的乳房最初是由一组贴片天线激发的。由于电磁和热特性的差异,健康组织和异常组织的温度升高将有所不同。通过温度变化行为的分析,比较每个天线下的温度及其附近点,以确定是否存在癌组织,并进一步检测其大概位置。三维(3-D)有限元方法(FEM)已用于模拟暴露于天线激励的乳房组织的热行为。

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