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蠕变对牛松质骨的疲劳没有影响。

Creep does not contribute to fatigue in bovine trabecular bone.

作者信息

Moore T L A, O'Brien F J, Gibson L J

机构信息

Exponent Failure Analysis Associates, Philadelphia, PA 19106, USA.

出版信息

J Biomech Eng. 2004 Jun;126(3):321-9. doi: 10.1115/1.1762892.

Abstract

In both cortical and trabecular bone loaded in fatigue, the stress-strain loops translate along the strain axis. Previous studies have suggested that this translation is the result of creep associated with the mean stress applied in the fatigue test. In this study, we measured the residual strrain (corresponding to the translation of the stress-strain loops) in fatigue tests on bovine trabecular bone and compared it to an upper bound estimate of the creep strain in each test. Our results indicate that the contribution of creep to the translation of the stress-strain loops is negligible in bovine trabecular bone. These results, combined with models for fatigue in lower density bone, suggest that that creep does not contribute to the fatigue of normal human bone. Creep may make a significant contribution to fatigue in low-density osteoporotic bone in which trabeculae have resorbed, reducing the connectivity of the trabecular structure.

摘要

在承受疲劳载荷的皮质骨和松质骨中,应力 - 应变回线均沿应变轴平移。先前的研究表明,这种平移是与疲劳试验中施加的平均应力相关的蠕变的结果。在本研究中,我们测量了牛松质骨疲劳试验中的残余应变(对应于应力 - 应变回线的平移),并将其与每次试验中蠕变应变的上限估计值进行比较。我们的结果表明,在牛松质骨中,蠕变对应力 - 应变回线平移的贡献可忽略不计。这些结果与低密度骨疲劳模型相结合,表明蠕变对正常人体骨骼的疲劳没有贡献。在小梁已吸收、小梁结构连通性降低的低密度骨质疏松骨中,蠕变可能对疲劳有显著贡献。

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