Reina-Romo E, Rodríguez-Vallés J, Sanz-Herrera J A
School of Engineering, University of Seville, 41092 Seville, Spain.
School of Engineering, University of Seville, 41092 Seville, Spain.
Med Eng Phys. 2018 Jun 23. doi: 10.1016/j.medengphy.2018.06.001.
It is established that bone tissue adapts and responds to mechanical loading. Several studies have suggested an existence of positive influence of vibration on the bone mass maintenance. Thus, some bone regeneration therapies are based on vibration of bone tissue under circumstances of disease to stimulate its formation. Frequency of loading should be properly selected and therefore a correct characterization of the dynamic properties of this tissue may be critical for the success of such orthopedic techniques. On the other hand, many studies implement vibration techniques with in silico models. Numerical results are exclusively dependent on properties of bone tissue, i.e. geometry, density distribution and stiffness, as well as boundary conditions. In the present study, the influence of boundary conditions and material properties on the dynamic characteristics of bone tissue was explored in a human femur. Bone shape and density were directly reconstructed from computer tomographies, whereas natural frequencies and modes of vibration were obtained for different boundary conditions including physiological and mechanical ones. Results of this study show the moderate effect of material properties compared to the much substantial effect of boundary conditions. A factor of 2 in the natural frequency was obtained depending on imposed boundary conditions, highlighting the importance in the selection of appropriate conditions in the analysis of the bone organ.
已证实骨组织会适应并对机械负荷作出反应。多项研究表明振动对骨量维持存在积极影响。因此,一些骨再生疗法基于在疾病情况下对骨组织进行振动以刺激其形成。加载频率应适当选择,因此对该组织动态特性的正确表征对于此类骨科技术的成功可能至关重要。另一方面,许多研究通过计算机模拟模型实施振动技术。数值结果完全取决于骨组织的特性,即几何形状、密度分布和刚度,以及边界条件。在本研究中,在人体股骨中探讨了边界条件和材料特性对骨组织动态特性的影响。骨形状和密度直接从计算机断层扫描重建,而针对包括生理和机械边界条件在内的不同边界条件获得了固有频率和振动模式。本研究结果表明,与边界条件的显著影响相比,材料特性的影响适中。根据施加的边界条件,固有频率可相差两倍,这突出了在骨器官分析中选择合适条件的重要性。