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Modeling nonlinear acoustic waves in media with inhomogeneities in the coefficient of nonlinearity

机译:在非线性系数不均匀的介质中建模非线性声波

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摘要

The refraction and scattering of nonlinear acoustic waves play an important role in the realistic application of medical ultrasound. One cause of these effects is the tissue dependence of the nonlinear medium behavior. A method that is able to model those effects is essential for the design of transducers for novel ultrasound modalities. Starting from the Westervelt equation, nonlinear pressure wave fields can be modeled via a contrast source formulation, as has been done with the INCS method. An extension of this method will be presented that can handle inhomogeneities in the coefficient of nonlinearity. The contrast source formulation results in an integral equation, which is solved iteratively using a Neumann scheme. The convergence of this scheme has been investigatedfor relevant media (e.g., blood, brain, and liver). Further, as an example, the method has been applied to compute the 1D nonlinear acoustic wave field in an inhomogeneous medium insonified by a 1 MHz Gaussian pulse propagatingup to 100 mm. The results show that the method is able to predict the propagation and the scattering effects of nonlinear acoustic waves in media with inhomogeneities in the coefficient of nonlinearity. This motivates a similar extension ofthe 3D INCS method.
机译:非线性声波的折射和散射在医学超声的实际应用中起着重要作用。这些影响的原因之一是非线性介质行为的组织依赖性。能够对这些影响进行建模的方法对于新型超声模态换能器的设计至关重要。从Westervelt方程开始,可以通过对比源公式化对非线性压力波场进行建模,就像使用INCS方法一样。将介绍此方法的扩展,它可以处理非线性系数中的不均匀性。造影剂源公式生成一个积分方程,使用Neumann方案迭代求解。已针对相关媒体(例如血液,大脑和肝脏)研究了该方案的收敛性。此外,作为示例,该方法已经被应用于在由传播至100mm的1MHz高斯脉冲声化的不均匀介质中计算一维非线性声波场。结果表明,该方法能够预测非线性系数不均匀的介质中非线性声波的传播和散射效应。这激发了3D INCS方法的类似扩展。

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