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Estimation of material parameters from slow and fast shear waves in an incompressible transversely isotropic material

机译:在不可压缩的横向各向同性材料中通过慢和快剪切波估算材料参数

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摘要

This paper describes a method to estimate mechanical properties of soft, anisotropic materials from measurements of shear waves with specific polarization and propagation directions. This method is applicable to data from magnetic resonance elastography (MRE), which is a method for measuring shear waves in live subjects or in vitro samples. Here, we simulate MRE data using finite element analysis. A nearly-incompressible, transversely isotropic (ITI) material model with three parameters (shear modulus, shear anisotropy, and tensile anisotropy) is used, which is appropriate for many fibrous, biological tissues. Both slow and fast shear waves travel concurrently through such a material with speeds that depend on the propagation direction relative to fiber orientation. A three-parameter estimation approach based on directional filtering and isolation of slow and fast shear wave components (directional filter inversion, or DFI) is introduced. Wave speeds of each isolated shear wave component are estimated using local frequency estimation (LFE), and material properties are calculated using weighted least squares. Data from multiple finite element simulations are used to assess the accuracy and reliability of DFI for estimation of anisotropic material parameters.
机译:本文介绍了一种通过测量具有特定极化和传播方向的剪切波来估算软各向异性材料的机械性能的方法。此方法适用于磁共振弹性成像(MRE)的数据,磁共振弹性成像是一种用于测量活体或体外样本中的剪切波的方法。在这里,我们使用有限元分析来模拟MRE数据。使用具有三个参数(剪切模量,剪切各向异性和拉伸各向异性)的几乎不可压缩的横观各向同性(ITI)材料模型,该模型适用于许多纤维生物组织。慢剪切波和快速剪切波同时通过这种材料传播,其速度取决于相对于纤维取向的传播方向。介绍了一种基于参数滤波和慢,快剪切波分量隔离(方向滤波器反演或DFI)的三参数估计方法。使用局部频率估计(LFE)估计每个孤立的剪切波分量的波速,并使用加权最小二乘法计算材料属性。来自多个有限元模拟的数据用于评估DFI的准确性和可靠性,以估计各向异性材料参数。

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