首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Numerical model of bone remodeling sensitive to loading frequency through a poroelastic behavior and internal fluid movements.
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Numerical model of bone remodeling sensitive to loading frequency through a poroelastic behavior and internal fluid movements.

机译:通过多孔弹性行为和内部流体运动对加载频率敏感的骨骼重塑数值模型。

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摘要

In this article, a phenomenological numerical model of bone remodeling is proposed. This model is based on the poroelasticity theory in order to take into account the effects of fluid movements in bone adaptation. Moreover, the proposed remodeling law is based on the classical 'Stanford' law, enriched in order to take into account the loading frequency, through fluid movements. This coupling is materialized by a quadratic function of Darcy velocity. The numerical model is carried out, using a finite element method, and calibrated using experimental results at macroscopic level, from the literature. First results concern cyclic loadings on a mouse ulna, at different frequencies between 1 Hz and 30 Hz, for a force amplitude of 1.5 N and 2 N. Experimental results exhibit a sensitivity to the loading frequency, with privileged frequency for bone remodeling between 5 Hz and 10 Hz, for the force amplitude of 2 N. For the force amplitude of 1.5 N, no privileged frequencies for bone remodeling are highlighted. This tendency is reproduced by the proposed numerical computations. The model is identified on a single case (one frequency and one force amplitude) and validated on the other ones. The second experimental validation deals with a different loading regime, an internal fluid pressure at 20 Hz on a turkey ulna. The same framework is applied, and the numerical and experimental data are still matching in terms of gain in bone mass density.
机译:在本文中,提出了一种骨骼重建的现象学数值模型。该模型基于孔隙弹性理论,以便考虑流体运动对骨骼适应的影响。此外,拟议的重塑定律是基于经典的“斯坦福”定律进行充实的,以便通过流体运动来考虑加载频率。该耦合通过达西速度的二次函数实现。数值模型是使用有限元方法进行的,并使用来自文献的宏观水平的实验结果进行了校准。最初的结果涉及到老鼠尺骨上的周期性载荷,在1 Hz到30 Hz之间的不同频率下,力振幅为1.5 N和2N。实验结果显示出对载荷频率的敏感性,骨骼重塑的优先频率在5 Hz之间和10 Hz,对于2 N的力振幅。对于1.5 N的力振幅,没有突出显示用于骨骼重塑的优先频率。通过提出的数值计算可以再现这种趋势。该模型是在一种情况(一种频率和一种力振幅)下识别的,并在另一种情况下进行了验证。第二次实验验证涉及不同的加载方式,即火鸡尺骨上20 Hz的内部流体压力。应用了相同的框架,并且数值和实验数据在增加骨质量密度方面仍然匹配。

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