论文标题

3D超分辨率超声,具有自适应重量的光束成形

3D Super-Resolution Ultrasound with Adaptive Weight-Based Beamforming

论文作者

Yan, Jipeng, Wang, Bingxue, Riemer, Kai, Hansen-Shearer, Joseph, Lerendegui, Marcelo, Toulemonde, Matthieu, Rowlands, Christopher J, Weinberg, Peter D., Tang, Meng-Xing

论文摘要

通过局部和跟踪稀疏微泡的超声超声(SRU)成像已被证明揭示了微血管结构,并且流动超出了波衍射极限。大多数SRUS研究都使用标准延迟和总和(DAS)波束形成,其中大的主叶和明显的侧叶可以使分布式气泡的分离和定位挑战,尤其是在3D中,由于矩阵阵列探针的孔通常很小。这项研究旨在通过基于通道信号方差以及其他两个基于自适应重量的相干波束形式来实现低成本3D相干波束形式来改善3D SRU:具有P-Th root压缩和相干因子的非线性光束形成。在计算机模拟,微流幻影和体内比较了3D相干波束形式,并在计算机模拟中比较。仿真结果表明,基于自适应重量的光束形成器可以显着缩小主叶,并抑制侧叶以获取适度的计算成本。通过基于自适应重量的光束形式获得了微流幻影和兔肾脏的3D SR图像。所提出的基于方差的波束形式在模拟和实验中表现最佳。

Super-resolution ultrasound (SRUS) imaging through localising and tracking sparse microbubbles has been shown to reveal microvascular structure and flow beyond the wave diffraction limit. Most SRUS studies use standard delay and sum (DAS) beamforming, where large main lobe and significant side lobes make separation and localisation of densely distributed bubbles challenging, particularly in 3D due to the typically small aperture of matrix array probes. This study aims to improve 3D SRUS by implementing a low-cost 3D coherence beamformer based on channel signal variance, as well as two other adaptive weight-based coherence beamformers: nonlinear beamforming with p-th root compression and coherence factor. The 3D coherence beamformers, together with DAS, are compared in computer simulation, on a microflow phantom, and in vivo. Simulation results demonstrate that the adaptive weight-based beamformers can significantly narrow the main lobe and suppress the side lobes for modest computational cost. Significantly improved 3D SR images of microflow phantom and a rabbit kidney are obtained through the adaptive weight-based beamformers. The proposed variance-based beamformer performs best in simulations and experiments.

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