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Investigation of the influence of reflection on the attenuation of cancellous bone

机译:反射对松质骨衰减影响的研究

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摘要

The model proposed in this paper is based on the fact that the reflection might have a significant contribution to the attenuation of the acoustic waves propagating through the cancellous bone. The numerical implementation of the mentioned effect is realized by the development of a new representative volume element that includes an infinitesimally thin 'transient' layer on the contact surface of the bone and the marrow. This layer serves to model the amplitude transformation of the incident wave by the transition through media with different acoustic impedances and to take into account the energy loss due to the reflection. The proposed representative volume element together with the multiscale finite element is used to simulate the wave propagation and to evaluate the attenuation coefficient for samples with different effective densities in the dependence of the applied excitation frequency. The obtained numerical values show a very good agreement with the experimental results. Moreover, the model enables the determination of the upper and the lower bound for the attenuation coefficient.
机译:本文提出的模型基于这样一个事实,即反射可能会对通过松质骨传播的声波的衰减产生重大影响。通过开发一种新的具有代表性的体元,可以实现上述效果的数值实现,该体元在骨骼和骨髓的接触表面上包括一个无限薄的“瞬态”层。该层用于通过具有不同声阻抗的介质的跃迁对入射波的振幅变换进行建模,并考虑由于反射引起的能量损失。拟议的代表性体积元与多尺度有限元一起用于模拟波传播,并根据所施加的激励频率来评估具有不同有效密度的样本的衰减系数。所得数值与实验结果非常吻合。此外,该模型能够确定衰减系数的上限和下限。

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