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Combined Sign Coherent Factor and Delay Multiply and Sum Beamformer for Plane Wave Imaging

机译:平面波成像的组合标志相干因子与延迟乘法和总和波束形成器

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摘要

Plane wave imaging is a relatively new technique in ultrasound imaging. However, in traditional methods, the coherent information of different emissions and different elements are not considered. In fact, the sign coherent factor (SCF) can improve the lateral resolution of the imaging greatly. In addition, the delay multiply and sum (DMAS) beamformer is mainly based on the spatial correlation of background scattering signals, it has higher contrast and resolution, but suffers from energy loss at great depths. In this paper, combining the advantages of SCF and DMAS, the sign coherent factor delay multiply and sum (SCF-DMAS) beamformer for plane wave imaging is proposed. Unlike the traditional plane wave imaging, the proposed SCF-DMAS beamformer is based on the 2-D echo data set, which improves the imaging speed greatly. Finally, we simulated the point targets and the cyst phantom to evaluate the performance of proposed method. Compared with the traditional plane wave imaging, the lateral resolution of SCF-DMAS beamformer improves greatly for the point targets, and for the cyst phantom the contrast ratio (CR) and contrast-to-noise ratio (CNR) increased by 96.97 and by 79.98% respectively without reducing the frame rate.
机译:平面波成像是超声成像中的相对较新的技术。然而,在传统方法中,不考虑不同排放和不同元素的相干信息。实际上,标志相干因子(SCF)可以大大提高成像的横向分辨率。另外,延迟乘法和总和(DMA)波束形成器主要基于背景散射信号的空间相关性,它具有更高的对比度和分辨率,但是遭受了很大的深度能量损失。在本文中,提出了组合SCF和DMA的优点,提出了用于平面波成像的标志相干因子延迟倍增和和(SCF-DMA)波束形成器。与传统的平面波成像不同,所提出的SCF-DMA波束形成器基于2-D回波数据集,这大大提高了成像速度。最后,我们模拟了点目标和囊肿幻象来评估所提出的方法的性能。与传统的平面波成像相比,SCF-DMAS波束形成器的横向分辨率为点靶标而改善,并且对于囊肿的囊体,对比度(CR)和对比度 - 噪声比(CNR)增加了96.97和79.98 %分别不降低帧速率。

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