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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Biomechanical analysis of a novel hemipelvic endoprosthesis during ascending and descending stairs
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Biomechanical analysis of a novel hemipelvic endoprosthesis during ascending and descending stairs

机译:新型半骨盆内假体在上,下楼梯过程中的生物力学分析

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摘要

In this study, the biomechanical characteristic of a newly developed adjustable hemipelvic prosthesis under dynamic loading conditions was investigated using explicit finite element method. Both intact and reconstructed pelvis models, including pelvis, femur and soft tissues, were established referring to human anatomic data using a solid geometry of a human pelvic bone. Hip contact forces during ascending stairs and descending stairs were imposed on pelvic models. Results showed that maximum von Mises stresses in reconstructed pelvis were 421.85 MPa for prostheses and 109.12 MPa for cortical bone, which were still within a low and elastic range below the yielding strength of Ti-6Al-4V and cortical bone, respectively. Besides, no significant difference of load transferring paths along pelvic rings was observed between the reconstructed pelvis and natural pelvis models. And good agreement was found between the overall distribution of maximum principal stresses in trabecular bones of reconstructed pelvis and natural pelvis, while at limited stances, principal stresses in trabecular bone of reconstructed pelvis were slightly lower than natural pelvis. The results indicated that the load transferring function of pelvis could be restored by this adjustable hemipelvic prosthesis. Moreover, the prosthesis was predicted to have a reliable short-and long-term performance. However, due to the occurrence of slightly lower principal stresses at a few stances, a porous structure applied on the interface between the prosthesis and bone would be studied in future work to obtain better long-term stability.
机译:在这项研究中,使用显式有限元方法研究了新开发的可调节半盆假体在动态载荷条件下的生物力学特性。使用人体骨盆骨骼的实体几何结构参照人体解剖数据,建立了完整的骨盆模型和重建的骨盆模型,包括骨盆,股骨和软组织。骨盆模型施加了上楼梯和下楼梯时的髋部接触力。结果表明,假体重建后的骨盆最大von Mises应力为421.85 MPa,皮质骨最大为109.12 MPa,仍低于Ti-6Al-4V和皮质骨的屈服强度,处于较低的弹性范围内。此外,在重建的骨盆模型和自然骨盆模型之间,未观察到沿骨盆环的载荷传递路径的显着差异。在重建骨盆和天然骨盆的小梁骨中最大主应力的总体分布之间找到了很好的一致性,而在有限的姿势下,重建骨盆的骨小梁中的主应力略低于天然骨盆。结果表明,这种可调节的半盆假体可以恢复骨盆的负荷转移功能。此外,预计假体具有可靠的短期和长期性能。但是,由于在少数情况下会出现略低的主应力,因此在未来的工作中将研究应用于假体与骨骼之间界面的多孔结构,以获得更好的长期稳定性。

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