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轴对称剪切波传播正向模型在粘弹性介质中的应用于剪切波弹性成像。

Application of a forward model of axisymmetric shear wave propagation in viscoelastic media to shear wave elastography.

机构信息

Mechanical Engineering, Boston University, 110 Cummington Mall, Boston, Massachusetts 02215, USA.

Department of Radiology, Harvard Medical School, Brigham and Women's Hospital, 75 Francis Street, Boston, Massachusetts 02115, USA.

出版信息

J Acoust Soc Am. 2018 Jun;143(6):3266. doi: 10.1121/1.5038568.

Abstract

A simple but general solution of Navier's equation for axisymmetric shear wave propagation in a homogeneous isotropic viscoelastic medium is presented. It is well-suited for use as a forward model for some acoustic radiation force impulse based shear wave elastography applications because it does not require precise knowledge of the strength of the source, nor its spatial or temporal distribution. Instead, it depends on two assumptions: (1) the source distribution is axisymmetric and confined to a small region near the axis of symmetry, and (2) the propagation medium is isotropic and homogeneous. The model accounts for the vector polarization of shear waves and exactly represents geometric spreading of the shear wavefield, whether spherical, cylindrical, or neither. It makes no assumption about the frequency dependence of material parameters, i.e., it is material-model independent. Validation using measured shear wavefields excited by acoustic radiation force in a homogeneous gelatin sample show that the model accounts for well over 90% of the measured wavefield "energy." An optimal fit of the model to simulated shear wavefields with noise in a homogeneous viscoelastic medium enables estimation of both the shear storage modulus and shear wave attenuation to within 1%.

摘要

本文提出了一种用于各向同性粘弹性介质中轴对称剪切波传播的纳维方程的简单但通用的解。它非常适合用作某些基于声辐射力脉冲的剪切波弹性成像应用的正向模型,因为它不需要精确了解源的强度,也不需要知道其空间或时间分布。相反,它取决于两个假设:(1)源分布是轴对称的,并限制在对称轴附近的一个小区域内,(2)传播介质是各向同性和均匀的。该模型考虑了剪切波的矢量极化,并准确地表示了剪切波场的几何扩展,无论是球形、圆柱形还是两者都不是。它不假设材料参数的频率依赖性,即它与材料模型无关。使用在均匀明胶样本中由声辐射力激发的测量剪切波场进行验证表明,该模型很好地解释了超过 90%的测量波场“能量”。在均匀粘弹性介质中对具有噪声的模拟剪切波场进行模型的最佳拟合,能够在 1%的范围内估计剪切储能模量和剪切波衰减。

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