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全骨复合股骨模型的力学验证。

Mechanical validation of whole bone composite femur models.

作者信息

Cristofolini L, Viceconti M, Cappello A, Toni A

机构信息

Engineering Faculty, University of Bologna, Italy.

出版信息

J Biomech. 1996 Apr;29(4):525-35. doi: 10.1016/0021-9290(95)00084-4.

Abstract

Composite synthetic models of the human femur have recently become commercially available as substitutes for cadaveric specimens. Their quick diffusion was justified by the advantages they offer as a substitute for real femurs. The present investigation concentrated on an extensive experimental validation of the mechanical behaviour of the whole bone composite model, compared to human fresh-frozen and dried-rehydrated specimens for different loading conditions. First, the viscoelastic behaviour of the models was investigated under simulated single leg stance loading, showing that the little time dependent phenomena observed tend to extinguish within a few minutes of the load application. The behaviour under axial loading was then studied by comparing the vertical displacement of the head as well as the axial strains, by application of a parametric descriptive model of the strain distribution. Finally, a four point bending test and a torsional test were performed to characterize the whole bone stiffness of the femur. In all these tests, the composite femurs were shown to fall well within the range for cadaveric specimens, with no significant differences being detected between the synthetic femurs and the two groups of cadaveric femurs. Moreover, the interfemur variability for the composite femurs was 20-200 times lower than that for the cadaveric specimens, thus allowing smaller differences to be characterized as significant using the same simple size, if the composite femurs are employed.

摘要

人体股骨的复合合成模型最近已作为尸体标本的替代品在市场上销售。它们迅速普及是因为作为真实股骨的替代品具有诸多优势。本研究集中于对整个骨骼复合模型的力学行为进行广泛的实验验证,并与人体新鲜冷冻和干燥再水化标本在不同加载条件下进行比较。首先,在模拟单腿站立加载下研究模型的粘弹性行为,结果表明观察到的与时间相关的微小现象在加载后几分钟内趋于消失。然后通过应用应变分布的参数描述模型,比较头部的垂直位移和轴向应变,研究轴向加载下的行为。最后,进行四点弯曲试验和扭转试验以表征股骨的整体骨刚度。在所有这些试验中,复合股骨的表现均落在尸体标本的范围内,合成股骨与两组尸体股骨之间未检测到显著差异。此外,复合股骨的股骨间变异性比尸体标本低20至200倍,因此,如果使用复合股骨,使用相同的简单尺寸就能将较小的差异表征为显著差异。

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