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EVIDENCE FOR INTERFIBRILLAR SHEAR LOAD TRANSFER BETWEEN SLIDING FIBRILS IN TENDON

机译:肌腱间滑动纤维之间的纤维间剪切负荷转移的证据

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While collagen fibrils are understood to be the primary tensile load bearing components in tendon, how loads applied at the tissue level are transmitted across each element within the tissue hierarchical structure is unclear. A central unresolved question is whether collagen fibrils bear load independently or if the applied load is transferred across the fibrils through interfibrillar shear forces. Relative sliding between fibrils is suggested by findings that fibril strains within rat tail tendon fascicles do not agree with the applied tissue tensile strains. Other studies using confocal microscopy have directly measured sliding behavior; however, the impact that interfibrillar sliding has on tendon macroscale mechanics and whether sliding is associated with interfibrillar shear stresses are unknown. Therefore, the objective of this work is to quantify the contribution of interfibrillar sliding on tendon macroscale mechanics by simultaneously measuring the tissue behavior at both length-scales and interpreting the results with a micro-structural shear lag model directly incorporating interfibrillar shear stresses. We hypothesize that the reduced stiffness and increased viscosity observed in the tissue macroscale properties at higher strains are due to increases in interfibrillar sliding and that this behavior is consistent with a shear lag model involving interfibrillar shear stress.
机译:尽管胶原原纤维被认为是肌腱中主要的拉伸负荷承载成分,但尚不清楚如何在组织水平施加的负荷跨组织分层结构内的每个元素传递。一个尚未解决的中心问题是胶原蛋白原纤维是否独立承担载荷,或者所施加的载荷是否通过原纤维间剪切力跨过原纤维传递。发现在大鼠尾腱束中的原纤维应变与所施加的组织拉伸应变不一致,这表明原纤维之间的相对滑动。其他使用共聚焦显微镜的研究直接测量了滑动行为。然而,尚不清楚纤维间滑动对肌腱宏观力学的影响以及滑动是否与纤维间剪切应力有关。因此,这项工作的目的是通过同时测量两个长度尺度上的组织行为,并利用直接包含纤维间剪切应力的微结构剪切滞后模型来解释结果,从而量化纤维间滑动对肌腱宏观力学的贡献。我们假设在较高应变下在组织宏观性质中观察到的降低的刚度和增加的粘度归因于原纤维间滑动的增加,并且这种行为与涉及原纤维间剪切应力的剪切滞后模型一致。

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