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In vivo achilles tendon elasticity assessment using supersonic shear imaging: A feasibility study

机译:超声剪切成像技术在体内跟腱弹性评估中的可行性研究

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In this study shear wave dispersion was measured in vivo in four Achilles tendons by applying the Supersonic Shear Imaging technique and the concept of Shear Wave Spectroscopy parallel and perpendicular to the tendon fiber orientation. In tissues shear wave dispersion is related to two main physical causes: the geometry of the investigated medium which can lead to guided waves and/or the viscosity of the medium (if Voigt model is assumed). By modeling the Achilles tendon as a transverse isotropic plate it was possible to estimate the tendon elastic properties described by the five independent elastic constants (C11, C33, C13, C55 and C66) of the Christoffel's tensor. We show that parallel to fibers the geometrical effect leading to guided wave propagation is prominent, while perpendicularly to fibers viscosity must be also taken into account to fully describe the experimental data. The obtained results agree with those reported in the literature. In this study we have demonstrated that the use of a dispersion model must be taken into account in order to properly estimate the tendon viscoelastic properties.
机译:在该研究中,通过施加超声剪切成像技术和剪切波谱的概念平行并垂直于肌腱纤维取向,在四个Achilles腱中测量剪切波分散体。在组织中,剪切波形分散涉及两个主要物理原因:所研究的介质的几何形状,其可以导致导向波和/或介质的粘度(如果假设voigt模型)。通过将Achilles肌腱建模作为横向各向同性板,可以估计五个独立弹性常数(C 11 ,C 33 ,C ,c 55 和c 66 )。我们表明,与纤维平行的几何效果导致导向波传播的几何效果是突出的,而垂直于纤维粘度也必须考虑到完全描述实验数据。获得的结果与文献中报告的结果一致。在该研究中,我们已经证明必须考虑使用分散模型,以便适当地估计肌腱粘弹性性质。

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