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向一侧摔倒时健康及骨质疏松的人体近端股骨的负荷分布

Load distribution in the healthy and osteoporotic human proximal femur during a fall to the side.

作者信息

Verhulp E, van Rietbergen B, Huiskes R

机构信息

Department of Biomedical Engineering, Room WH 4.128, Eindhoven University of Technology, Den Dolech 2, 5600 MB, Eindhoven, The Netherlands.

出版信息

Bone. 2008 Jan;42(1):30-5. doi: 10.1016/j.bone.2007.08.039. Epub 2007 Sep 6.

Abstract

Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and maximizes strength. In the case of osteoporotic vertebral bodies, however, this process can create over-adaptation, making them vulnerable for non-habitual loads. In a recent study, micro-finite element models of a healthy and an osteoporotic human proximal femur were analyzed for the stance phase of gait. In the present study, tissue stresses and strains were calculated with the same proximal femur micro-finite element models for a simulated fall to the side onto the greater trochanter. Our specific objectives were to determine the contribution of trabecular bone to the strength of the proximal femurs for this non-habitual load. Further, we tested the hypothesis that the trabecular structure of osteoporotic bone is over-adapted to habitual loads. For that purpose, we calculated the load distributions and estimated the apparent yield and ultimate loads from linear analyses. Two different methods were used for this purpose, which resulted in very similar values, all in a realistic range. Distributions of maximal principal strain and effective strain in the entire model suggest that the contributions to bone strength of the trabecular and cortical structures are similar. However, a thick cortical shell is preferred over a dense trabecular core in the femoral neck. When the load applied to the osteoporotic femur was reduced to approximately 61% of the original value, strain distributions were created similar in value to those obtained for the healthy femur. Since a comparable reduction factor was found for habitual load cases, it was concluded that the osteoporotic femur was not 'over-adapted'.

摘要

由于骨结构的重塑,会形成一种优化的结构,使骨量最小化而强度最大化。然而,在骨质疏松性椎体的情况下,这个过程可能会导致过度适应,使其易受非习惯性负荷的影响。在最近一项研究中,对健康和骨质疏松的人类近端股骨的微观有限元模型进行了步态站立期分析。在本研究中,使用相同的近端股骨微观有限元模型计算了模拟向一侧大转子跌倒时的组织应力和应变。我们的具体目标是确定松质骨对这种非习惯性负荷下近端股骨强度的贡献。此外,我们检验了骨质疏松骨的小梁结构对习惯性负荷过度适应的假设。为此,我们通过线性分析计算了负荷分布并估计了表观屈服和极限负荷。为此使用了两种不同的方法,结果得到的值非常相似,均在实际范围内。整个模型中的最大主应变和有效应变分布表明,松质骨和皮质骨结构对骨强度的贡献相似。然而,在股骨颈处,厚的皮质壳比致密的松质骨核心更具优势。当施加在骨质疏松性股骨上的负荷降低到原始值的约61%时,产生的应变分布在数值上与健康股骨获得的应变分布相似。由于在习惯性负荷情况下发现了类似的降低因子,因此得出结论,骨质疏松性股骨并非“过度适应”。

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