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Excitability of ultrasonic lamb waves in a cortical bone plate: A simulation study

机译:皮质骨板中超声羔羊波的兴奋:模拟研究

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Application of ultrasonic axial transmission techniques to assess human elongated cortical bones has gained considerable attention in the area of bone tissue imaging and characterization. The cortical shell of long bones acts as a natural waveguide and supports the propagation of multiple guided modes. In practice, not all guided modes exist. For the existing ones, their energies are absent at high frequencies. For low frequencies, their dispersion energies are segmented and discontinuous. The excitation depends on the mode and its position on the dispersion curve. This investigation is the first attempt to provide some formal explanations of the phenomena using the concept of attenuation and excitability. Numerical data of a simple bone plate, generated by a semi-analytical finite element algorithm, is used to illustrate the concept.
机译:超声波轴向传动技术在评估人类细长皮质骨骼中的应用在骨组织成像和表征面积中具有相当大的关注。长骨的皮质壳充当天然波导,并支持多种引导模式的传播。在实践中,并非所有导向模式都存在。对于现有的,他们的能量在高频时不存在。对于低频,它们的色散能量被分段和不连续。激励取决于模式及其在色散曲线上的位置。这项调查首先尝试使用衰减和兴奋性的概念提供对该现象的一些正式解释。由半分析有限元算法产生的简单骨板的数值数据用于说明概念。

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