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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Joint Subarray Coherence and Minimum Variance Beamformer for Multitransmission Ultrasound Imaging Modalities
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Joint Subarray Coherence and Minimum Variance Beamformer for Multitransmission Ultrasound Imaging Modalities

机译:联合子阵列相干性和最小方差波束形成器用于多传输超声成像模式

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摘要

Multitransmission modalities, such as plane wave compounding and synthetic aperture imaging, are promising techniques for ultrafast ultrasound imaging. Adaptive beamformers have been proposed to improve the imaging quality. Two common categories of adaptive beamformers are the minimum variance (MV)-based beamformers and the coherence factor (CF)-based beamformers. The MV can significantly improve the resolution while lacking robustness. It is also computationally expensive for multitransmission modalities. The CF can increase the contrast while over-suppressing some desired signals. In this paper, we propose a novel beamformer for better imaging quality in multitransmission ultrasound modalities. Specifically, the MV weighting process is applied to the receiving and transmitting beamforming. The spatial smoothing technique is modified for both dimensions to enhance the robustness. Then, the CF-based weights are calculated using the MV beamformed output. The submatrix technique is also used in the CF process to avoid over-suppression. Simulations and experiments are conducted to evaluate the performance of the proposed method. The results show that it can preserve the high resolution of MV and the high contrast of CF. Compared with the traditional compounding method, the full-width at half-maximum is smaller and the contrast ratio is significantly increased. Anatomic structures of annin vivonhuman carotid artery are more distinguishable. Because of the spatial smoothing in both dimensions, the proposed beamformer also has high robustness against the channel noise and sound velocity errors.
机译:诸如平面波复合和合成孔径成像之类的多传输模式是用于超快超声成像的有前途的技术。已经提出了自适应波束形成器以提高成像质量。自适应波束形成器的两种常见类别是基于最小方差(MV)的波束形成器和基于相干因子(CF)的波束形成器。 MV可以显着提高分辨率,同时缺乏鲁棒性。对于多传输模式,它在计算上也很昂贵。 CF可以增加对比度,同时过分抑制某些所需信号。在本文中,我们提出了一种新型的波束形成器,以在多传输超声模式中提供更好的成像质量。具体地,MV加权处理被应用于接收和发送波束成形。对两个维度都修改了空间平滑技术,以增强鲁棒性。然后,使用MV波束成形的输出来计算基于CF的权重。在CF过程中还使用了子矩阵技术来避免过度抑制。仿真和实验进行了评估该方法的性能。结果表明,它可以保持MV的高分辨率和CF的高对比度。与传统的复合方法相比,半最大宽度要小得多,对比度也要明显提高。 ann 体内< / italic>人类的颈动脉更容易区分。由于在两个维度上都具有空间平滑性,因此所提出的波束形成器还具有抵抗信道噪声和声速误差的高鲁棒性。

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