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Phase velocities and attentuations of shear Lamb and Rayleigh waves in plate-like tissues submerged in a fluid (L)

机译:浸没在流体中的板状组织中的剪切波兰姆波和瑞利波的相速度和衰减(L)

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摘要

In the past several decades, the fields of ultrasound and magnetic resonance elastography have shown promising results in noninvasive estimates of mechanical properties of soft tissues. These techniques often rely on measuring shear wave velocity due to an external or internal source of force and relating the velocity to viscoelasticity of the tissue. The mathematical relationship between the measured velocity and material properties of the myocardial wall, arteries, and other organs with non-negligible boundary conditions is often complicated and computationally expensive. A simple relationship between the Lamb–Rayleigh dispersion and the shear wave dispersion is derived for both the velocity and attenuation. The relationship shows that the shear wave velocity is around 20% higher than the Lamb–Rayleigh velocity and that the shear wave attenuation is about 20% lower than the Lamb–Rayleigh attenuation. Results of numerical simulations in the frequency range 0–500 Hz are presented.
机译:在过去的几十年中,超声波和磁共振弹性成像领域在软组织机械特性的非侵入性评估中显示出令人鼓舞的结果。这些技术通常依靠测量由于外部或内部力源而产生的剪切波速度,并将速度与组织的粘弹性相关联。在边界条件不可忽略的情况下,测得的速度与心肌壁,动脉和其他器官的材料特性之间的数学关系通常很复杂且计算量很大。对于速度和衰减,推导了兰姆-瑞利频散和剪切波频散之间的简单关系。这种关系表明,剪切波速度比Lamb–Rayleigh速度高约20%,并且剪切波衰减比Lamb–Rayleigh衰减低约20%。给出了在0–500 Hz频率范围内的数值模拟结果。

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