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首页> 外文期刊>Journal of Biomechanics >A rate-dependent microcrack-bridging model that can explain the strain rate dependency of cortical bone apparent yield strength.
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A rate-dependent microcrack-bridging model that can explain the strain rate dependency of cortical bone apparent yield strength.

机译:一个速率相关的微裂纹桥接模型,可以解释皮质骨表观屈服强度的应变速率依赖性。

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摘要

Although there are empirical correlations between strain rate, cortical and cancellous bone apparent stiffness, apparent yield strength, apparent ultimate strength and cortical bone fracture toughness, a mechanistic description for these phenomena is lacking.Microcracking is a major mechanism in cortical and cancellous bone failure, however, microdamage content alone cannot explain the strain rate dependence of bone strength without considering time-dependent behavior of the crack. Using a rate-dependent model of a fiber-bridged microcrack and data from the literature, we demonstrate that the experimental apparent yield strength of bone can be predicted directly from measurements of apparent moduli of elasticity of bone constituents and failure strain of the collagenous matrix.Yield strength predictions for estrogen depleted bone were made using the model and data from ovariectomized sheep. It was predicted that the yield strength of estrogen-deficient bone is comparable to that of normal bone within strain rates associated with physiological activities. For high strain rates, however, the strength of estrogen-depleted bone was predicted to be much weaker than normals suggesting a higher fracture risk due to impact from falls, for individuals with estrogen-depleted bones such as in post-menopausal osteoporosis.
机译:尽管应变率,皮质和松质骨的表观刚度,表观屈服强度,表观极限强度和皮质骨断裂韧性之间存在经验相关性,但仍缺乏对这些现象的机理描述。微裂纹是皮质和松质骨衰竭的主要机制,然而,如果不考虑裂纹的时间依赖性行为,仅靠微损伤含量就不能解释骨强度的应变率依赖性。使用速率依赖的纤维桥接微裂纹模型和来自文献的数据,我们证明了骨的表观屈服强度可以直接通过测量骨成分的弹性模量和胶原基质的破坏应变来预测。使用去卵巢绵羊的模型和数据对雌激素耗竭的骨骼的屈服强度进行了预测。据预测,在与生理活动有关的应变率内,雌激素缺乏的骨的屈服强度与正常骨的屈服强度相当。然而,对于高应变率,预计雌性激素缺乏的人的力量要比正常人弱得多,这表明由于跌倒的影响,例如绝经后骨质疏松症患者,由于跌倒的影响,骨折风险更高。

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