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基于波束空间自适应波束形成器和延迟相乘求和的平面波合成快速波束形成方法

Fast Beamforming Method for Plane Wave Compounding Based on Beamspace Adaptive Beamformer and Delay-Multiply-and-Sum.

作者信息

Sotoodeh Ziksari Mahsa, Asl Babak Mohammadzadeh

机构信息

Department of Biomedical Engineering, Tarbiat Modares University, Tehran, Iran; Department of Cardiovascular Sciences, KU Leuven, Leuven, Belgium.

Department of Biomedical Engineering, Tarbiat Modares University, Tehran, Iran.

出版信息

Ultrasound Med Biol. 2023 May;49(5):1164-1172. doi: 10.1016/j.ultrasmedbio.2023.01.001. Epub 2023 Feb 24.

Abstract

OBJECTIVE

Although the use of coherent plane wave compounding is a promising technique for enabling the attainment of very high frame rate imaging, it achieves relatively low image quality because of data-independent reconstruction. Adaptive beamformers rather than delay-and-sum (DAS) conventional techniques have been proposed to improve the imaging quality. The minimum variance (MV) and delay-multiply-and-sum (DMAS) beamformers have been validated as effective in improving image quality. The MV improves mainly the resolution of the image, while being computationally expensive and having little impact on contrast. The DMAS increases the contrast while over-suppressing the speckle region in the case of 2-D summation for multi-transmission applications.

METHODS

In a new approach, a beamformer based on MV and DMAS is proposed to enhance both spatial resolution and contrast in plane wave imaging. Prior to estimating the weight vector of MV, the backscattered echoes are decorrelated without any spatial smoothing. This enhances the robustness of MV without compromising the improvement in resolution. With a shift from element space to beamspace, MV weights are calculated using the spatial statistics of a set of orthogonal beams, which allows the high-complexity algorithm to be run faster. After that, the MV weights are applied to the DMAS output vector beamformed over different transmissions.

DISCUSSION AND CONCLUSION

The proposed method can result in better contrast resolution, thereby avoiding over-suppression. The complexity of the applied DMAS version is also similar to that of DAS. Imaging results reveal that the proposed method offers improvements over the traditional compounding method in terms of spatial and contrast resolution. It also can achieve a higher image quality compared with some existing adaptive methods applied in the literature.

摘要

目的

虽然使用相干平面波复合技术是实现非常高帧率成像的一种有前景的技术,但由于其与数据无关的重建方式,导致图像质量相对较低。为了提高成像质量,人们提出了自适应波束形成器而非传统的延迟求和(DAS)技术。最小方差(MV)和延迟相乘求和(DMAS)波束形成器已被证实能有效提高图像质量。MV主要提高图像分辨率,但计算成本高且对对比度影响较小。对于多发射应用的二维求和情况,DMAS在增加对比度的同时过度抑制了散斑区域。

方法

在一种新方法中,提出了一种基于MV和DMAS的波束形成器,以增强平面波成像中的空间分辨率和对比度。在估计MV的权重向量之前,对反向散射回波进行去相关处理,且不进行任何空间平滑。这增强了MV的鲁棒性,同时不影响分辨率的提高。随着从阵元空间转换到波束空间,利用一组正交波束的空间统计来计算MV权重,这使得高复杂度算法能够更快运行。之后,将MV权重应用于在不同发射上波束形成的DMAS输出向量。

讨论与结论

所提出的方法可产生更好的对比度分辨率,从而避免过度抑制。所应用的DMAS版本的复杂度也与DAS相似。成像结果表明,所提出的方法在空间和对比度分辨率方面比传统复合方法有改进。与文献中应用的一些现有自适应方法相比,它还能实现更高的图像质量。

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