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On the modeling of wave propagation in cancellous bone

机译:关于松质骨中波传播的建模

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The paper present theoretical and experimental issues related to application of Quantitative Ultrasound (QUS) for assessment of cancellous bone quality and prediction of bone fractures. Commonly used for modeling of ultrasonic wave propagation in cancellous bone, the macroscopic Biot's theory is discussed in context of its potential applicability for theoretical prediction of wave parameters: phase velocity and attenuation coefficient as functions of frequency and porosity. The analysis of the model is focused on the absorption and scattering mechanisms responsible for wave attenuation dispersion in cancellous bone, which based on the ultrasonic experiments presumably play a predominant role in the total attenuation. The suitability of the model is discussed and verified by comparison of results of sensitivity analysis of the model with ex vivo experimental ultrasonic data for cancellous bones filled with different fluids obtained at 0.5, 1 and 2 MHz.
机译:本文介绍了与定量超声(QUS)在评估松质骨质量和预测骨折中的应用有关的理论和实验问题。通常用于建模松质骨中超声波传播的宏观Biot理论,讨论了其在理论上预测波参数(相速度和衰减系数作为频率和孔隙率的函数)的潜在适用性的背景下。该模型的分析集中在吸收和散射机制上,这些吸收和散射机制负责松质骨中的波衰减色散,基于超声波实验,这大概在总衰减中起主要作用。通过将模型的敏感性分析结果与离体实验超声数据进行比较,讨论并验证了模型的适用性,该超声数据适用于以0.5、1和2 MHz获得的填充有不同液体的松质骨。

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