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Three-dimensional FDTD analysis of an ultrawideband antenna-array element for confocal microwave imaging of nonpalpable breast tumors

机译:超耐乳腺肿瘤共聚焦微波成像超携带乳房肿瘤的三维FDTD分析

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We are developing a confocal microwave imaging system for the detection of early-stage breast cancer. Our proposed microwave sensor represents a novel adaptation and application of the principles of ultrawideband radar technology and confocaloptical microscopy. The sensor is comprised of an electronically switched monostatic antenna array that synthetically focuses a low-power pulsed microwave signal at a focal point within the breast and collects the backscattered signal. Malignant tumorshave a significant scattering radar cross section due to the large dielectric contrast between malignant tumors and adjacent normal breast tissue. Therefore, the intensity of the backscattered signal increases dramatically when the focuses transmittedsignal encounters a malignant tumor.Two key performance specifications for the microwave sensor are the signal-to-clutter (S/C) ratio, defined as the ratio of the peak backscatter return from a tumor to the peak backscatter return from clutter, and the system dynamic range, defined as theratio of the peak pulse power of the source to the system noise floor due to reverberations and thermal noise. Our two-dimensional FDTD simulations involving the computation of S/C ratios [1,2] have demonstrated the feasibility of detecting lesions assmall as lmm in diameter. In this paper, we highlight the results of our three-dimensional simulations of an antenna-array element placed at the surface of a breast tissue half-space.
机译:我们正在开发一种用于检测早期乳腺癌的共聚焦微波成像系统。我们所提出的微波传感器代表了超法带雷达技术原理和共聚焦显微镜的新颖适应性和应用。传感器包括电子切换的单体天线阵列,其合成在乳房内的焦点处的低功率脉冲微波信号聚焦并收集反向散射信号。由于恶性肿瘤和相邻的正常乳房组织之间的介电对比,恶性肿瘤具有显着的散射雷达横截面。因此,当聚焦传递次数遇到恶性肿瘤时,反向散射信号的强度显着增加。微波传感器的关键性能规范是信号到杂波(S / C)比,定义为峰值反向散射返回的比率从肿瘤到峰值反向散射从杂波返回,并且系统动态范围,定义为源的峰值脉冲功率,由于混响和热噪声。我们的二维FDTD模拟涉及S / C比率的计算[1,2]已经证明了检测病变ASSMALL直径为LMM的可行性。在本文中,我们突出了放置在乳房组织半空间表面的天线阵列元件的三维模拟的结果。

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