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Adaptive beamforming in ultrasound imaging with plane wave compounding

机译:平面波合成在超声成像中的自适应波束形成

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Ultrasound plane-wave imaging can achieve the high frame rate but suffers from the image degradation since the beamforming process is restricted only in the receiving mode. Coherent compounding of multi-angle plane waves has been proposed to improve the image quality. It uses multiple plane waves steered at different angles to scan the tissue and then averages the images of different illuminations. If we use adaptive beamformers to get the single-angle image and then compound the images of different transmissions, we can get better results, but the computational cost may be too expensive even when the observation number is small. In this paper, we combine the compounding process with the estimation of the covariance matrix in adaptive beamforming to get a joint beamforming strategy. Results show that the proposed method can get almost the same result as multi-angle adaptive beamforming strategy, while it greatly reduces the computational amount. Thus, it's a more effective way to obtain ultrasound images by using multiple plane waves.
机译:超声波平面波成像可以实现高帧频,但由于仅在接收模式下限制了波束形成过程,因此图像质量会下降。已经提出了多角度平面波的相干合成以改善图像质量。它使用多个以不同角度操纵的平面波扫描组织,然后平均不同照明的图像。如果我们使用自适应波束形成器来获取单角度图像,然后对不同透射率的图像进行合成,则可以获得更好的结果,但是即使观察数很小,计算成本也可能太高。在本文中,我们将混合过程与自适应波束形成中协方差矩阵的估计相结合,以获得联合波束形成策略。结果表明,所提出的方法可以获得与多角度自适应波束形成策略几乎相同的结果,同时大大减少了计算量。因此,这是通过使用多个平面波来获取超声图像的更有效方法。

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