首页> 外文期刊>Journal of Biomechanics >Finite element calculated uniaxial apparent stiffness is a consistent predictor of uniaxial apparent strength in human vertebral cancellous bone tested with different boundary conditions.
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Finite element calculated uniaxial apparent stiffness is a consistent predictor of uniaxial apparent strength in human vertebral cancellous bone tested with different boundary conditions.

机译:有限元计算的单轴表观刚度是在不同边界条件下测试的人椎骨松质骨中单轴表观强度的一致预测指标。

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摘要

Strong correspondence between the uniaxial apparent strength and stiffness of cancellous bone allows the use of stiffness as a predictor of bone strength. Measured values of mechanical properties in cancellous bone can be different between experiments due to different experimental conditions. In the current study, bone volume fraction, experimentally determined and finite element (FE) predicted stiffness were examined as predictors of cancellous bone ultimate strength in two different groups each of which was tested using a different end constraint. It is demonstrated that, although always significant, the relationships of strength with bone volume fraction and experimentally determined stiffness are different between test groups. Apparent stiffness, estimated by FE modeling, predicts the ultimate strength of human cancellous bone consistently for all examined experimental protocols.
机译:松质骨的单轴表观强度和刚度之间的强对应关系允许使用刚度作为骨强度的预测指标。由于不同的实验条件,各实验之间松质骨力学性能的测量值可能会有所不同。在当前的研究中,检查了骨体积分数,实验确定的和有限元(FE)预测的刚度,作为两个不同组中松质骨最终强度的预测指标,每个组都使用不同的末端约束进行了测试。结果表明,尽管强度一直很重要,但是各组之间的强度与骨体积分数和实验确定的刚度之间的关系是不同的。通过有限元建模估算的表观刚度,可以在所有检查的实验方案中一致地预测人松质骨的最终强度。

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