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采用宏观压缩试验与微观有限元分析相结合的方法对大鼠股骨皮质骨的年龄相关组织水平破坏应变进行量化。

Quantification of Age-Related Tissue-Level Failure Strains of Rat Femoral Cortical Bones Using an Approach Combining Macrocompressive Test and Microfinite Element Analysis.

作者信息

Fan Ruoxun, Gong He, Zhang Rui, Gao Jiazi, Jia Zhengbin, Hu Yanjuan

出版信息

J Biomech Eng. 2016 Apr;138(4):041006. doi: 10.1115/1.4032798.

Abstract

Bone mechanical properties vary with age; meanwhile, a close relationship exists among bone mechanical properties at different levels. Therefore, conducting multilevel analyses for bone structures with different ages are necessary to elucidate the effects of aging on bone mechanical properties at different levels. In this study, an approach that combined microfinite element (micro-FE) analysis and macrocompressive test was established to simulate the failure of male rat femoral cortical bone. Micro-FE analyses were primarily performed for rat cortical bones with different ages to simulate their failure processes under compressive load. Tissue-level failure strains in tension and compression of these cortical bones were then back-calculated by fitting the experimental stress-strain curves. Thus, tissue-level failure strains of rat femoral cortical bones with different ages were quantified. The tissue-level failure strain exhibited a biphasic behavior with age: in the period of skeletal maturity (1-7 months of age), the failure strain gradually increased; when the rat exceeded 7 months of age, the failure strain sharply decreased. In the period of skeletal maturity, both the macro- and tissue-levels mechanical properties showed a large promotion. In the period of skeletal aging (9-15 months of age), the tissue-level mechanical properties sharply deteriorated; however, the macromechanical properties only slightly deteriorated. The age-related changes in tissue-level failure strain were revealed through the analysis of male rat femoral cortical bones with different ages, which provided a theoretical basis to understand the relationship between rat cortical bone mechanical properties at macro- and tissue-levels and decrease of bone strength with age.

摘要

骨力学性能随年龄而变化;同时,不同层次的骨力学性能之间存在密切关系。因此,对不同年龄的骨结构进行多层次分析,对于阐明衰老对不同层次骨力学性能的影响是必要的。在本研究中,建立了一种结合微观有限元(micro-FE)分析和宏观压缩试验的方法,以模拟雄性大鼠股骨皮质骨的破坏。主要对不同年龄的大鼠皮质骨进行微观有限元分析,以模拟其在压缩载荷下的破坏过程。然后通过拟合实验应力-应变曲线,反算出这些皮质骨在拉伸和压缩时的组织层次破坏应变。由此,量化了不同年龄大鼠股骨皮质骨的组织层次破坏应变。组织层次破坏应变随年龄呈现双相变化:在骨骼成熟阶段(1至7月龄),破坏应变逐渐增加;当大鼠超过7月龄时,破坏应变急剧下降。在骨骼成熟阶段,宏观和组织层次的力学性能均有大幅提升。在骨骼衰老阶段(9至15月龄),组织层次力学性能急剧恶化;然而,宏观力学性能仅略有恶化。通过对不同年龄雄性大鼠股骨皮质骨的分析,揭示了组织层次破坏应变随年龄的变化,为理解大鼠皮质骨宏观和组织层次力学性能之间的关系以及骨强度随年龄下降提供了理论依据。

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