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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Analysis of multiple shear wave modes in a nonlinear soft solid: Experiments and finite element simulations with a tilted acoustic radiation force
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Analysis of multiple shear wave modes in a nonlinear soft solid: Experiments and finite element simulations with a tilted acoustic radiation force

机译:非线性软实体中多剪切波模式分析:具有倾斜声辐射力的实验和有限元模拟

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摘要

Tissue nonlinearity is conventionally measured in shear wave elastography by studying the change in wave speed caused by the tissue deformation, generally known as the acoustoelastic effect. However, these measurements have mainly focused on the excitation and detection of one specific shear mode, while it is theoretically known that the analysis of multiple wave modes offers more information about tissue material properties that can potentially be used to refine disease diagnosis. This work demonstrated proof of concept using experiments and finite element simulations in a uniaxially stretched phantom by tilting the acoustic radiation force excitation axis with respect to the material's symmetry axis. Using this unique set-up, we were able to visualize two propagating shear wave modes across the stretch direction for stretches larger than 140%. Complementary simulations were performed using material parameters determined from mechanical testing, which enabled us to convert the observed shear wave behavior into a correct representative constitutive law for the phantom material, i.e. the Isihara model. This demonstrates the potential of measuring shear wave propagation in combination with shear wave modeling in complex materials as a non-invasive alternative for mechanical testing.
机译:通过研究由组织变形引起的波速变化,通常称为声弹性效果,在剪切波弹性术中常规测量组织非线性。然而,这些测量主要集中在一种特定剪切模式的激发和检测,而理论上已知多波动模式的分析提供了有关可能用于细化疾病诊断的组织材料特性的更多信息。这项工作证明了使用实验和有限元模拟在单轴拉伸模拟中,通过倾斜声辐射力激发轴相对于材料的对称轴来使用实验和有限元模拟。使用这种独特的设置,我们能够在拉伸方向上可视化两个传播剪力模式,以便延伸大于140%。使用从机械测试确定的材料参数进行互补模拟,这使我们使我们将观察到的剪力波行为转换为Phantom材料的正确代表本构法,即Isihara模型。这证明了在复杂材料中与剪切波模型的测量波传播的电位作为机械测试的非侵入性替代品。

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