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Frequency-domain penalized least-squares beamformer design for early detection of breast cancer via microwave imaging

机译:频率域受到通过微波成像的用于早期检测乳腺癌的最小平方米的光束形成器设计

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摘要

Microwave imaging has been recently proposed as an alternative to X-ray mammography for early-stage breast cancer detection. In this paper we investigate a method of microwave imaging via space-time (MIST) beamforming for detecting backscattered energy from small malignant breast tumors. The beamformer weights are designed to optimally compensate for frequency-dependent propagation effects and minimize clutter by solving a set of penalized least-squares problems that are formulated in the frequency domain. We demonstrate the efficacy of our space-time beamforming approach using backscatter data acquired from two types of breast phantoms: a realistic numerical breast model and a simple experimental breast phantom. The numerical model is derived from a magnetic resonance image of the breast and the backscatter waveforms are computed using the finite-difference time-domain method for solving Maxwell's equations. The experimental phantom consists of a synthetic tumor suspended in a homogeneous liquid. The dielectric-properties contrast between the liquid and synthetic tumor is similar to the contrast between normal and malignant breast tissue. Our images exhibit high signal-to-clutter ratios and good tumor localization even under various challenging conditions.
机译:微波成像最近已经提出作为替代透视乳腺摄影对于早期乳腺癌的检测。在本文中,我们调查了从小型恶性乳腺肿瘤检测的反向散射能量通过空间 - 时间(雾)的波束形成微波成像的方法。该波束形成器权被设计成最佳地补偿频率相关的传播效应和通过求解一组在频域配制惩罚最小二乘问题最小化的杂波。我们证明了我们使用来自两个类型的乳腺癌幻影收购后向散射数据时空波束形成方法的有效性:一个现实的数值模型乳房和一个简单的实验假乳房。数值模型是从乳房的磁共振图像导出和反向散射波形使用用于求解麦克斯韦方程的时域有限差分计算。实验幻象由合成肿瘤悬浮于均质液体。液体和合成的肿瘤之间的介电性能的对比类似于正常和恶性乳腺组织之间的对比度。我们的图像表现出即使在各种挑战性的条件的高的信号与杂波比和良好的肿瘤定位。

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