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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >FDTD-Based Time Reversal for Microwave Breast Cancer Detection--Localization in Three Dimensions
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FDTD-Based Time Reversal for Microwave Breast Cancer Detection--Localization in Three Dimensions

机译:基于FDTD的微波乳腺癌时间逆转-三维定位

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摘要

In a previous study, a novel time-reversal (TR) algorithm based on the finite-difference time-domain (FDTD) method for ultra-wideband microwave breast cancer detection was presented. The system properties and performance were originally studied for two-dimensional (2-D) simplified models and geometries and, more recently, for a realistic breast model based on magnetic resonance imaging measured data. This paper extends this FDTD TR algorithm to a three-dimensional (3-D) case in order to study localization of the tumor target in 3-D. The FDTD TR algorithm solves the full 3-D wave equation and, thus, takes into account polarization effects. In order to compare the new images with previous results, we consider a 2-D planar receiver array, which is an extension of the line of receivers introduced in the 2-D model. A direct comparison from 3-D to 2-D reconstructions illustrates the advantages of using the fully 3-D algorithm, which counterbalances its additional computational cost.
机译:在先前的研究中,提出了一种基于时差有限域(FDTD)方法的超宽带微波乳腺癌检测新的时间逆转(TR)算法。系统性能和性能最初是针对二维(2-D)简化模型和几何形状进行研究的,最近针对基于磁共振成像测量数据的现实乳房模型进行了研究。本文将这种FDTD TR算法扩展到三维(3-D)案例,以研究3-D中肿瘤靶标的定位。 FDTD TR算法求解完整的3-D波动方程,因此考虑了极化效应。为了将新图像与以前的结果进行比较,我们考虑了二维平面接收器阵列,这是二维模型中引入的接收器系列的扩展。从3-D重建到2-D重建的直接比较说明了使用完全3-D算法的优势,该算法抵消了其额外的计算成本。

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