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Mapped Chebyshev pseudo-spectral method for simulating the shear wave propagation in the plane of symmetry of a transversely isotropic viscoelastic medium.

机译:映射切比雪夫伪谱方法,用于模拟横波各向同性粘弹性介质在对称面上的横波传播。

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摘要

Shear wave elastography is a versatile technique that is being applied to many organs. However, in tissues that exhibit anisotropic material properties, special care must be taken to estimate shear wave propagation accurately and efficiently. A two-dimensional simulation method is implemented to simulate the shear wave propagation in the plane of symmetry in transversely isotropic viscoelastic media. The method uses a mapped Chebyshev pseudo-spectral method to calculate the spatial derivatives and an Adams–Bashforth–Moulton integrator with variable step sizes for time marching. The boundaries of the two-dimensional domain are surrounded by perfectly matched layers to approximate an infinite domain and minimize reflection errors. In an earlier work, we proposed a solution for estimating the apparent shear wave elasticity and viscosity of the spatial group velocity as a function of rotation angle through a low-frequency approximation by a Taylor expansion. With the solver implemented in MATLAB, the simulated results in this paper match well with the theory. Compared to the finite element method simulations we used before, the pseudo-spectral solver consumes less memory and is faster and achieves better accuracy.
机译:剪切波弹性成像是一种通用技术,已应用于许多器官。但是,在表现出各向异性材料特性的组织中,必须格外小心,以准确而有效地估算剪切波的传播。实现了二维模拟方法,以模拟横波在各向同性粘弹性介质中在对称平面内传播的剪切波。该方法使用映射的Chebyshev伪光谱方法来计算空间导数,并使用具有可变步长的Adams–Bashforth–Moulton积分器进行时间行进。二维域的边界被完美匹配的层包围,以近似无限域并使反射误差最小。在较早的工作中,我们提出了一种解决方案,该解决方案通过泰勒展开的低频近似来估计空间群速度的表观剪切波弹性和黏度随旋转角的变化。使用在MATLAB中实现的求解器,本文的仿真结果与理论相吻合。与我们之前使用的有限元方法仿真相比,伪谱求解器消耗更少的内存,速度更快,并且精度更高。

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