用伪谱方法量化经颅超声模拟中的数值误差

James Robertson, B. Cox, B. Treeby
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引用次数: 18

摘要

有效的经颅聚焦超声传输是各种治疗应用所需要的。基于超声传播数值模拟的时间反转聚焦可用于颅骨层像差的校正。对于弱异质介质,与TR中通常使用的有限差分时域(FDTD)方法相比,k空间和伪谱时域(PSTD)方法已被证明具有更高的准确性和效率。然而,它们对高度异质、经颅模拟的适用性尚不清楚。在这里,通过数值测试和与FDTD方案的比较,从空间和时间采样要求方面建立了这一点。与FDTD方案相比,PSTD方案在通过组织真实异质性建模传播方面具有相同或更好的精度,这与k空间校正获得的数值色散的减少相结合,推荐它们用于模拟TR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantifying numerical errors in the simulation of transcranial ultrasound using pseudospectral methods
Effective transcranial transmission of focused ultrasound is desirable for various therapeutic applications. Time-reversal (TR) focusing based on numerical simulations of ultrasound propagation can be used to correct for the aberrating skull layer. For weakly heterogeneous media, k-space and pseudospectral time domain (PSTD) methods have been shown to have increased accuracy and efficiency compared to the finite-difference time domain (FDTD) methods typically used in TR. However, their suitability for highly heterogeneous, transcranial simulations is less clear. Here, this is established in terms of spatial and temporal sampling requirements through numerical testing and comparison with FDTD schemes. PSTD schemes are shown to give equal or better accuracy compared to FDTD schemes for modelling propagation through tissue-realistic heterogeneities, which, combined with the reduction in numerical dispersion obtained with k-space correction, recommends them for use in simulated TR.
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