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Stress analysis of osteoporotic lumbar vertebra using finite element model with microscaled beam-shell trabecular-cortical structure

机译:骨质疏松性腰椎骨的微尺度梁壳小梁皮质结构有限元模型应力分析

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Osteoporosis is a disease in which low bone mass and microarchitectural deterioration of bone tissue lead to enhanced bone fragility and susceptibility to fracture. Due to the complex anatomy of the vertebral body, the difficulties associated with obtaining bones for in vitro experiments, and the limitations on the control of the experimental parameters, finite element models have been developed to analyze the biomechanical properties of the vertebral body. We developed finite element models of the L2 vertebra, which consisted of the endplates, the trabecular lattice, and the cortical shell, for three age-related grades (young, middle, and old) of osteoporosis. The compressive strength and stiffness results revealed that we had developed a valid model that was consistent with the results of previous experimental and computational studies. The von-Mises stress, which was assumed to predict the risk of a burst fracture, was also determined for the three age groups. The results showed that the von-Mises stress was substantially higher under relatively high levels of compressive loading, which suggests that patients with osteoporosis should be cautious of fracture risk even during daily activities.
机译:骨质疏松症是一种疾病,其中低骨量和骨组织的微体系结构退化导致骨骼脆性增加和容易骨折。由于椎体的解剖结构复杂,在体外进行实验中获取骨头的困难以及实验参数控制的局限性,已开发出了有限元模型来分析椎体的生物力学特性。我们开发了L2椎骨的有限元模型,该模型由终板,小梁网格和皮质外壳组成,用于骨质疏松症的三种与年龄相关的等级(年轻,中级和老年)。抗压强度和刚度结果表明,我们已经开发了一个有效的模型,该模型与以前的实验和计算研究的结果一致。还确定了三个年龄组的von-Mises应力,这些应力被认为可以预测爆裂骨折的风险。结果表明,在相对较高的压缩负荷下,von-Mises应力明显较高,这表明骨质疏松症患者即使在日常活动中也应谨慎对待骨折风险。

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