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Microwave imaging via space-time beamforming for early detection of breast cancer: Beamformer design in the frequency domain

机译:时空波束形成的微波成像技术可用于乳腺癌的早期检测:频域上的波束形成器设计

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Microwave imaging via space-time beamforming has been proposed recently for early-stage breast cancer detection. In this paper we present an efficient frequency-domain approach to designing the beamformers. The low-power signal sequentially transmitted into the breast by each antenna in an array may be either an ultrawideband pulse or a sequence of sinusoidal signals with carrier frequencies corresponding to the discrete design frequencies. Backscattered waveforms collected at each transmitting antenna are processed in the frequency domain using beamformers designed to compensate for frequency-dependent propagation effects in normal breast tissue. Backscattered signal energy is computed and imaged as a function of location. We demonstrate the capability of this method to detect millimeter-sized tumors using representative backscattered waveforms computed from a two-dimensional anatomically realistic FDTD breast model. These simulation results show that localized regions of high energy levels in the images consistently correspond to small malignant tumors present in the breast. [References: 22]
机译:最近提出了通过时空波束形成的微波成像技术,用于早期乳腺癌的检测。在本文中,我们提出了一种有效的频域方法来设计波束形成器。由阵列中的每个天线顺序发射到乳房中的低功率信号可以是超宽带脉冲,也可以是具有与离散设计频率相对应的载波频率的正弦信号序列。使用波束形成器在频域中处理在每个发射天线处收集的反向散射波形,波束形成器旨在补偿正常乳腺组织中与频率相关的传播效应。计算反向散射的信号能量,并将其成像为位置的函数。我们展示了这种方法使用从二维解剖现实FDTD乳房模型计算出的代表性反向散射波形检测毫米大小肿瘤的能力。这些模拟结果表明,图像中高能级的局部区域始终对应于乳房中存在的小恶性肿瘤。 [参考:22]

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