首页> 外文期刊>The Journal of Musculoskeletal and Neuronal Interactions >Loading simulationl of lumbar spine vertebrae during a compression test using the finite elements method and trabecular bone strength properties, determined by means of nanoindentations
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Loading simulationl of lumbar spine vertebrae during a compression test using the finite elements method and trabecular bone strength properties, determined by means of nanoindentations

机译:使用有限元方法和通过纳米压痕确定的小梁骨强度特性,在压缩测试过程中模拟腰椎椎骨的负荷模拟

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The mechanical strength properties of lumbar spine vertebrae are of great importance in a wide range of applications. Herein, through nanoindentations and appropriate evaluation of the corresponding results, trabecular bone struts stress–strain characteristics can be determined. In the frame of the present paper, an L2 fresh cadaveric vertebra, from which posterior elements were removed, was subjected to compression. With the aid of developed finite elements method based algorithms, the cortical shell and the cancellous core bulk elasticity moduli and stresses were determined, whereas the tested vertebra geometrical model used in these algorithms was considered as having a compound structure, consisting of the cancellous bone surrounded by the cortical shell. Moreover nanoindentations were conducted and an appropriate evaluation method of the obtained results was applied to extract stress-strain curves of individual lumbar spine vertebra trabecular bone struts. These data were used in the mathematical description of the vertebrae compression test. The vertebral cancellous bone structure was simulated by a beam elements network, possessing an equivalent porosity and different stiffnesses in vertical and horizontal direction. Thus, the measured course of the compression load versus the occurring specimen deformation was verified.
机译:腰椎椎体的机械强度特性在广泛的应用中非常重要。在此,通过纳米压痕和对相应结果的适当评估,可以确定骨小梁的应力-应变特性。在本文的框架中,对L2新鲜的尸体椎骨进行了压缩,去除了后牙。借助基于有限元方法的改进算法,确定了皮层外壳和松质核的体积弹性模量和应力,而这些算法中使用的经过测试的椎骨几何模型被认为具有复合结构,由松质骨包围由皮壳。此外,进行了纳米压痕,并对所得结果进行了适当的评估,以提取单个腰椎椎骨小梁骨撑杆的应力-应变曲线。这些数据用于椎骨压缩测试的数学描述。椎体松质骨结构通过梁单元网络模拟,在垂直和水平方向上具有等效的孔隙率和不同的刚度。因此,验证了压缩载荷相对于样品变形的测量过程。

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