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Numerical Modeling of Ultrasound Propagation in Weakly Heterogeneous Media Using a Mixed Domain Method

机译:混合域法在弱均质介质中超声传播的数值模拟

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摘要

A mixed domain method (MDM) is presented in this paper for modeling one-way linearonlinear wave propagation in biological tissue with arbitrary heterogeneities, in which sound speed, density, attenuation coefficients and nonlinear coefficients are all spatial varying functions. The present method is based on solving an integral equation derived from a Westervelt-like equation. One-dimensional problems are first studied to verify the MDM and to reveal its limitations. It is shown that this method is accurate for cases with small variation of sound speed. A two-dimensional case is further studied with focused ultrasound beams to validate the application of the method in the medical field. Results from the MATLAB toolbox k-Wave are used as the benchmark. Normalized root-mean-square (RMS) error estimated at the focus of the transducer is 0.0133 when the coarsest mesh (1/3 of the wavelength) is used in the MDM. Fundamental and second-harmonic fields throughout the considered computational domains are compared and good agreement is observed. In overall, this study demonstrates that the MDM is a computationally efficient and accurate method when used to model wave propagation in biological tissue with relatively weak heterogeneities.
机译:本文提出了一种混合域方法(MDM),用于建模具有任意异质性的生物组织中单向线性/非线性波传播,其中声速,密度,衰减系数和非线性系数都是空间变化函数。本方法基于求解从类韦斯特维尔特方程导出的积分方程。首先研究一维问题以验证MDM并揭示其局限性。结果表明,该方法对声速变化较小的情况是准确的。用聚焦超声束进一步研究了二维情况,以验证该方法在医学领域的应用。来自MATLAB工具箱k-Wave的结果用作基准。当在MDM中使用最粗糙的网格(波长的1/3)时,在换能器焦点处估计的归一化均方根(RMS)误差为0.0133。比较了整个考虑的计算域的基本和二次谐波领域,并观察到了良好的一致性。总的来说,这项研究表明,当使用MDM对异质性相对较弱的生物组织中的波传播进行建模时,MDM是一种计算有效且准确的方法。

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