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Fatigue Life of Bovine Meniscus under Longitudinal and Transverse Tensile Loading

机译:纵向和横向拉伸载荷作用下牛半月板的疲劳寿命

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摘要

The knee meniscus is composed of a fibrous matrix that is subjected to large and repeated loads. Consequently, the meniscus is frequently torn, and a potential mechanism for failure is fatigue. The objective of this study was to measure the fatigue life of bovine meniscus when applying cyclic tensile loads either longitudinal or transverse to the principal fiber direction. Fatigue experiments consisted of cyclic loads to 60, 70, 80 or 90% of the predicted ultimate tensile strength until failure occurred or 20,000 cycles was reached. The fatigue data in each group was fit with a Weibull distribution to generate plots of stress level vs. cycles to failure (S-N curve). Results showed that loading transverse to the principal fiber direction gave a two-fold increase in failure strain, a three-fold increase in creep, and a nearly four-fold increase in cycles to failure (not significant), compared to loading longitudinal to the principal fiber direction. The S-N curves had strong negative correlations between the stress level and the mean cycles to failure for both loading directions, where the slope of the transverse S-N curve was 11% less than the longitudinal S-N curve (longitudinal: S=108–5.9ln(N); transverse: S=112–5.2ln(N)). Collectively, these results suggest that the non-fibrillar matrix is more resistant to fatigue failure than the collagen fibers. Results from this study are relevant to understanding the etiology of atraumatic radial and horizontal meniscal tears, and can be utilized by research groups that are working to develop meniscus implants with fatigue properties that mimic healthy tissue.
机译:膝盖半月板由纤维基质组成,该纤维基质承受较大且重复的载荷。因此,弯月面经常被撕裂,并且潜在的失效机理是疲劳。这项研究的目的是测量当施加主要纤维方向纵向或横向的周期性拉伸载荷时,牛半月板的疲劳寿命。疲劳试验由循环载荷组成,直到达到破坏或达到20,000个循环为止,循环载荷达到预测极限抗拉强度的60%,70%,80%或90%。每组的疲劳数据均符合Weibull分布,以生成应力水平与失效周期的关系图(S-N曲线)。结果表明,与纵向加载相比,横向于主纤维方向的加载使破坏应变增加了两倍,蠕变增加了三倍,破坏循环的增加了近四倍(不明显)。主纤维方向。 SN曲线在两个载荷方向上的应力水平和平均破坏循环之间均具有很强的负相关性,其中SN曲线的斜率比纵向SN曲线的斜率小11%(纵向:S = 108–5.9ln(N );横向:S = 112–5.2ln(N))。总的来说,这些结果表明,非原纤维基质比胶原纤维对疲劳破坏具有更高的抵抗力。这项研究的结果与了解无损伤的径向和水平半月板撕裂的病因有关,可以被致力于开发具有模仿健康组织疲劳特性的半月板植入物的研究小组利用。

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