Modeling nonlinear acoustic wave fields in media with inhomogeneity in the attenuation and in the nonlinearity

L. Demi, M. Verweij, N. D. Jong, K. V. Dongen
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引用次数: 9

Abstract

Biomedical tissues usually show inhomogeneity in their acoustic medium parameters. These inhomogeneities cause refraction and scattering of diagnostic and therapeutic ultrasound waves. A method that is able to model the effects of inhomogeneity in the attenuation and in the nonlinearity is essential for the design of transducers for new ultrasound modalities and the development of novel ultrasound applications. The Iterative Nonlinear Contrast Source (INCS) method has originally been designed for the accurate modeling of nonlinear acoustic wave fields in homogeneous media. It considers the nonlinear term from the Westervelt equation as a distributed contrast source, and the corresponding integral equation is solved using an iterative Neumann scheme. This paper presents an extension of the INCS method that can handle inhomogeneity in the attenuation and in the coefficient of nonlinearity. Results are presented for the one-dimensional case. These show that in this case the presented method correctly predicts the effects related to nonlinear propagation and scattering by inhomogeneities in the attenuation and the coefficient of non-linearity.
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衰减和非线性不均匀介质中非线性声波场的模拟
生物医学组织的声介质参数通常表现出不均匀性。这些不均匀性引起诊断和治疗超声的折射和散射。一种能够模拟衰减和非线性中的非均匀性影响的方法对于设计用于新型超声模态的换能器和开发新型超声应用至关重要。迭代非线性对比源(INCS)方法最初是为均匀介质中非线性声波场的精确建模而设计的。将Westervelt方程中的非线性项作为分布式对比源,采用迭代Neumann格式求解相应的积分方程。本文提出了INCS方法的一种扩展,可以处理衰减和非线性系数的非均匀性。给出了一维情况下的结果。这些结果表明,在这种情况下,所提出的方法正确地预测了衰减和非线性系数的不均匀性对非线性传播和散射的影响。
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