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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >Numerical Study of Microwave Scattering in Breast Tissue via Coupled Dielectric and Elastic Contrasts
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Numerical Study of Microwave Scattering in Breast Tissue via Coupled Dielectric and Elastic Contrasts

机译:介电和弹性耦合对微波在乳腺组织中散射的数值研究

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摘要

A computational investigation of microwave scattering in mechanically (or acoustically) excited breast tissue is conducted to explore the feasibility of combining dielectric and elastic properties contrasts to enhance breast cancer detection. The mechanical excitation induces tissue-dependent displacements in the heterogeneous breast interior, which modulate the scattered microwave signals. Sheet boundary conditions are implemented using the finite-difference time-domain (FDTD) method to efficiently compute the Doppler component of the scattered microwave signals. Simulation results for a 2D numerical phantom testbed demonstrate increased microwave scattering contrast between malignant and normal fibroglandular inclusions when elastic properties are exploited.
机译:进行了机械(或声学)激发的乳腺组织中微波散射的计算研究,以探索结合介电和弹性特性对比以增强乳腺癌检测的可行性。机械激发在异质乳房内部引起组织依赖性位移,从而调制散射的微波信号。使用有限差分时域(FDTD)方法实现薄片边界条件,以有效地计算散射微波信号的多普勒分量。二维数值幻象测试台的仿真结果表明,当利用弹性特性时,恶性和正常纤维腺夹杂物之间的微波散射对比度增加。

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