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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Non-iterative beamforming based on Huygens principle for multistatic ultrawide band radar: application to breast imaging
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Non-iterative beamforming based on Huygens principle for multistatic ultrawide band radar: application to breast imaging

机译:基于惠更斯原理的多迭代超宽带雷达非迭代波束成形:在乳腺成像中的应用

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摘要

This study examines the performance of a simple microwave beamforming method using the Huygens scattering principle (called here the Huygens principle method) for detecting breast lesions. The beamforming method is similar to non-iterative time reversal in that the wave received is propagated back into the material, although differs in its treatment of attenuation. The single pass algorithm does not require a solution to an inverse model, making it computationally efficient and so able to offer a throughput appropriate for clinical use. Its performance is compared with time-delay beamforming, which may be implemented with similar computational complexity, on a set of phantoms, including a lossy medium, mimicking breast tissue. The method was used to image a commercially fabricated anatomically shaped breast phantom with multiple hidden inclusions mimicking tumours. The procedure was able to identify and localise significant scatterers inside the volume, with only approximate a-priori knowledge of the dielectric properties of the target object, in spite of its underlying assumption of a single scatterer model.
机译:这项研究探讨了使用惠更斯散射原理(在此称为惠更斯原理方法)检测乳房病变的简单微波波束形成方法的性能。波束成形方法与非迭代时间反转类似,尽管所处理的衰减有所不同,但接收到的波会传播回材料中。单遍算法不需要求解逆模型,从而使其计算效率高,因此能够提供适合临床使用的吞吐量。将其性能与时延波束成形(可以以类似的计算复杂度实现)在一组幻像上进行比较,其中包括人体模型,模拟有损乳房组织。该方法用于对商业制造的解剖学形状的乳房幻影进行成像,该幻影具有模仿肿瘤的多个隐藏内含物。尽管仅假设了单个散射体模型,但该过程仍能够识别和定位体积内的重要散射体,而只需大致了解目标物体的介电特性。

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