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Capon beamforming and moving objects-an analysis of lateral shift-invariance

机译:Capon波束成形和移动物体-横向位移不变性分析

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摘要

If an ultrasound imaging system provides a presentation of a moving object which is sensitive to small spatial shifts, the system is said to be locally spatially shift-variant. This can happen, for instance, if the axial or lateral sampling is insufficient. The Capon beamformer has been shown to provide increased lateral resolution in ultrasound images. Increased lateral resolution should demand denser lateral sampling. However, in previous literature on Capon beamforming for medical ultrasound imaging, only single-frame scenarios have been simulated. Temporal behavior and effects caused by the increased resolution and lack of oversampling have therefore been neglected. In this paper, we analyze the local lateral shift-invariance of the Capon beamformer when imaging moving objects. We show that insufficient lateral sampling makes an imaging system based on the Capon beamformer laterally shift-variant. Different methods for oversampling on transmit and receive are then discussed and investigated to improve on the Capon beamformer. It is shown that lateral shift-invariance can be improved by oversampling based on phase rotation on receive without affecting the acquisition frame rate and with a minor change in processing complexity.
机译:如果超声成像系统提供对小空间偏移敏感的运动对象的表示,则该系统被称为局部空间偏移。例如,如果轴向或横向采样不足,则会发生这种情况。 Capon波束形成器已经显示出可以在超声图像中提供更高的横向分辨率。横向分辨率的提高应要求更密集的横向采样。但是,在先前有关用于医学超声成像的Capon波束成形的文献中,仅模拟了单帧场景。因此,由分辨率提高和过度采样不足引起的时间行为和影响已被忽略。在本文中,我们分析了在成像运动物体时Capon波束形成器的局部横向位移不变性。我们表明,横向采样不足使基于Capon波束形成器的成像系统发生了横向偏移。然后讨论并研究了不同的发送和接收过采样方法,以改进Capon波束形成器。结果表明,可以通过在接收时基于相位旋转进行过采样来改善横向移位不变性,而不会影响采集帧速率,并且处理复杂性的变化很小。

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