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Integrated remodeling-to-fracture finite element model of human proximal femur behavior.

机译:人类股骨近端行为的综合重塑至断裂有限元模型。

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摘要

The purpose of this work was to develop an integrated remodeling-to-fracture finite element model allowing for the combined simulation of (i) simulation of a human proximal femur remodeling under a given boundary conditions, (ii) followed by the simulation of its fracture behavior (force-displacement curve and fracture pattern) under quasi-static load. The combination of remodeling and fracture simulation into one unified model consists in considering that the femur properties resulting from the remodeling simulation correspond to the initial state for the fracture prediction. The remodeling model is based on phenomenological one based on a coupled strain and fatigue damage stimulus. The fracture model is based on continuum damage mechanics in order to predict the progressive fracturing process which allows to predict the fracture pattern and the complete force-displacement curve under quasi-static load. To prevent mesh-dependence that generally affects the damage propagation rate, regularization technique was applied in the current work. To investigate the potential of the proposed unified remodeling-to-fracture model, we performed remodeling simulations on a 3D proximal femur model for a duration of 365 days under five different daily loading conditions followed by a side fall fracture simulation reproducing previously published experimental tests (de Bakker et al. (2009), case C, male, 72 years old). We show here that the implementation of an integrated remodeling-to-fracture model provides more realistic prediction strategy to assess the bone remodeling effects on the fracture risk of bone.
机译:这项工作的目的是开发一个综合的重塑至断裂的有限元模型,该模型可以进行以下模拟的组合模拟:(i)在给定的边界条件下模拟人股骨近端重塑,(ii)随后模拟其骨折准静态载荷下的行为(力-位移曲线和断裂模式)。将重塑和骨折模拟合并为一个统一的模型包括考虑到,重塑模拟产生的股骨特性与骨折预测的初始状态相对应。重塑模型基于现象学模型,该模型基于应变和疲劳损伤刺激耦合。断裂模型基于连续损伤力学,以预测逐步断裂过程,从而可以预测准静态载荷下的断裂模式和完整的力-位移曲线。为了防止网格依赖通常会影响损伤传播速率,在当前工作中应用了正则化技术。为了研究拟议的统一重塑至断裂模型的潜力,我们在3种股骨近端3D模型上进行了重塑模拟,在五种不同的每日负荷条件下进行了365天的持续时间,随后进行了侧向骨折模拟,以重现先前发表的实验测试( de Bakker等人(2009),案例C,男,72岁)。我们在这里表明,集成的重塑到骨折模型的实施提供了更现实的预测策略,以评估骨重塑对骨折风险的影响。

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