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GPU-based Green’s function simulations of shear waves generated by an applied acoustic radiation force in elastic and viscoelastic models

机译:在弹性和粘弹性模型中基于GPU的格林对剪切波的函数模拟该剪切波是由施加的声辐射力生成的

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摘要

Shear wave calculations induced by an acoustic radiation force are very time-consuming on desktop computers, and high-performance graphics processing units (GPUs) achieve dramatic reductions in the computation time for these simulations. The acoustic radiation force is calculated using the fast near field method (FNM) and the angular spectrum approach (ASA), and then the shear waves are calculated in parallel with Green’s functions on a GPU. This combination enables rapid evaluation of shear waves for push beams with different spatial samplings and for apertures with different f/#. Relative to shear wave simulations that evaluate the same algorithm on an Intel i7 desktop computer, a high performance nVidia GPU reduces the time required for these calculations by a factor of 45 and 700 when applied to elastic and viscoelastic shear wave simulation models, respectively. These GPU-accelerated simulations also compared to measurements in different viscoelastic phantoms, and the results are similar. For parametric evaluations and for comparisons with measured shear wave data, shear wave simulations with the Green’s function approach are ideally suited for high-performance GPUs.
机译:由声辐射力引起的剪切波计算在台式计算机上非常耗时,而高性能图形处理单元(GPU)大大减少了这些模拟的计算时间。使用快速近场方法(FNM)和角谱方法(ASA)计算声辐射力,然后在GPU上与格林函数并行计算剪切波。这种组合可以快速评估具有不同空间采样的推力梁和具有不同f /#的孔径的剪切波。相对于在Intel i7台式计算机上评估相同算法的剪切波仿真,高性能nVidia GPU分别应用于弹性和粘弹性剪切波仿真模型时,可将这些计算所需的时间减少45倍和700倍。这些GPU加速的模拟还与不同粘弹性体模中的测量结果进行了比较,结果相似。对于参数评估以及与测得的剪切波数据进行比较,采用格林函数方法的剪切波模拟非常适合高性能GPU。

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