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FDTD based EM modeling and analysis for microwave imaging of biological tissues

机译:基于FDTD的生物组织微波成像电磁建模与分析

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Breast cancer affects many women and early detection is important. The microwave imaging technique can play a vital role in the detection of breast tumor than X-ray mammography and other techniques. The basis of the microwave imaging technique for breast cancer detection and location is the significant contrast in the scattered electromagnetic signals that depends on the dielectric properties of normal and malignant tissues at microwave frequencies. Malignant tissues exhibit higher dielectric properties than normal breast tissues, especially at high frequencies. We have conducted a simulation study to find out the resolution of the microwave imaging using FDTD technique. In this paper, a Finite Difference Time Domain method is applied to investigate the presence and location of the buried object in a phantom material. The investigation considers a phantom formed by a spherical container filled with material whose permittivity and conductivity are similar to those of normal and abnormal tissues. The study shows that the E field variation in different dielectric mediums can be used for the detection of abnormality.
机译:乳腺癌影响许多女性和早期检测很重要。微波成像技术可以在乳腺肿瘤的检测中发挥至关重要的作用,而不是X射线乳房X线摄影和其他技术。用于乳腺癌检测和位置的微波成像技术的基础是散射电磁信号中的显着对比,这取决于微波频率的正常和恶性组织的介电性质。恶性组织表现出比正常乳腺组织更高的介电性质,特别是在高频下。我们已经进行了一种模拟研究,可以使用FDTD技术找出微波成像的分辨率。在本文中,应用有限差分时间域方法来研究埋地物体在幻像材料中的存在和位置。该研究考虑了由填充有介电常数和电导率与正常和异常组织的材料相似的材料形成的幻影。该研究表明,不同介电介质中的E场变化可用于检测异常。

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