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Analytical solution for converging elliptic shear wave in a bounded transverse isotropic viscoelastic material with nonhomogeneous outer boundary

机译:具有非均匀外边界的有界横向各向同性粘弹性材料中椭圆剪切波收敛的解析解

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摘要

Dynamic elastography methods—based on optical, ultrasonic, or magnetic resonance imaging—are being developed for quantitatively mapping the shear viscoelastic properties of biological tissues, which are often altered by disease and injury. These diagnostic imaging methods involve analysis of shear wave motion in order to estimate or reconstruct the tissue's shear viscoelastic properties. Most reconstruction methods to date have assumed isotropic tissue properties. However, application to tissues like skeletal muscle and brain white matter with aligned fibrous structure resulting in local transverse isotropic mechanical properties would benefit from analysis that takes into consideration anisotropy. A theoretical approach is developed for the elliptic shear wave pattern observed in transverse isotropic materials subjected to axisymmetric excitation creating radially converging shear waves normal to the fiber axis. This approach, utilizing Mathieu functions, is enabled via a transformation to an elliptic coordinate system with isotropic properties and a ratio of minor and major axes matching the ratio of shear wavelengths perpendicular and parallel to the plane of isotropy in the transverse isotropic material. The approach is validated via numerical finite element analysis case studies. This strategy of coordinate transformation to equivalent isotropic systems could aid in analysis of other anisotropic tissue structures.
机译:正在开发基于光学,超声或磁共振成像的动态弹性成像方法,以定量绘制生物组织的剪切粘弹性特性,而这些特性通常会因疾病和伤害而改变。这些诊断成像方法涉及对剪切波运动的分析,以估计或重建组织的剪切粘弹性。迄今为止,大多数重建方法都具有各向同性的组织特性。但是,将分析应用于考虑到各向异性的分析后,将其应用于具有对齐纤维结构的骨骼肌和脑白质等组织,会导致局部横向各向同性的机械性能。针对在横向各向同性材料中受到轴对称激发而产生的垂直于纤维轴的径向会聚剪切波的椭圆剪切波模式,开发了一种理论方法。这种方法利用Mathieu函数,可以通过转换为具有各向同性特性的椭圆坐标系,以及与垂直和平行于横向各向同性材料的横切面波长之比的短轴和长轴之比相匹配的椭圆坐标系。通过数值有限元分析案例研究验证了该方法。这种将坐标转换为等效各向同性系统的策略可以帮助分析其他各向异性组织结构。

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