首页> 外文期刊>Journal of mechanics in medicine and biology >ELASTICITY MEASUREMENTS BY SHEAR WAVE ELASTOGRAPHY: COMPARISON AND SELECTION OF SHEAR WAVE, RAYLEIGH WAVE AND LAMB WAVE THEORY
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ELASTICITY MEASUREMENTS BY SHEAR WAVE ELASTOGRAPHY: COMPARISON AND SELECTION OF SHEAR WAVE, RAYLEIGH WAVE AND LAMB WAVE THEORY

机译:剪切波弹性造影的弹性测量:剪力波,瑞利波和羊浪理论的比较和选择

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摘要

Shear wave elastography (SWE) is a powerful method for the diagnosis of tissue disorders or degeneration based on tissue elasticity. In SWE application, it was recognized that the wave speed depends not only on the tissue elasticity but also on the structural shape, leading to different theoretical models. For liver, skin and myocardium, the appropriate theoretical model is known to be shear wave, Rayleigh wave and Lamb wave theory, respectively. Therefore, appropriate theoretical model should be adopted for the proper application of SWE. In this study, we verify these theoretical models in gelatin samples of different thicknesses, using experimental and numerical SWE tests. The results indicate that the wave speed was influenced by the ratio of the wavelength and sample thickness and the measurement region. Based on these results, the selection of theoretical model could be divided into three cases, and the appropriate theoretical model can be selected accordingly.
机译:剪切波弹性显影(SWE)是一种强大的方法,用于诊断基于组织弹性的组织疾病或退化。 在SWE应用中,人们认识到波速不仅取决于组织弹性,而且取决于结构形状,导致不同的理论模型。 对于肝脏,皮肤和心肌,已知合适的理论模型分别是剪力波,瑞利波和羊浪理论。 因此,应采用适当应用SWE的适当理论模型。 在这项研究中,我们使用实验和数值SWE测试验证了不同厚度的明胶样品中的这些理论模型。 结果表明波速受波长和样品厚度和测量区域的比率的影响。 基于这些结果,理论模型的选择可分为三种情况,相应地选择合适的理论模型。

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