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Hierarchical Approaches to Understanding Tendon Mechanics

机译:理解肌腱力学的分层方法

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References(117) Cited-By(8) Using the basic building blocks of collagens, elastins and proteoglycans, the human body is capable of manufacturing our large range of different structural tissues. Understanding how these structural components combine to create such widely varying tissues with diverse mechanical characteristics is a topic of interest for a range of research areas. However, probing the sub-structural mechanics to investigating these structure-function relationships is complex, as the series of hierarchical levels in connective tissues range in size from the Angstrom to millimeter level. Tendon has received considerable interest, as its simple aligned structure provides a promising route for investigating structure-function relationships. Tendon is an aligned, multi-level fibre composite structure, built predominantly from the collagen molecule to make a material with excellent tensile strength. The paper reviews the current state of research relating to tendon structure-function behaviour throughout the tendon hierarchy, building from the collagen molecule at the nano scale to the complete tendon.
机译:参考文献(117)被引用的文献(8)人体使用胶原蛋白,弹性蛋白和蛋白聚糖的基本结构单元,能够制造出我们种类繁多的不同结构组织。了解这些结构组件如何组合以创建具有多种机械特性的如此广泛变化的组织是许多研究领域的关注主题。但是,由于在结缔组织中一系列等级级别的大小范围从埃级到毫米级,因此探索亚结构力学来研究这些结构-功能关系是复杂的。肌腱由于其简单的对齐结构为研究结构-功能关系提供了一条有希望的途径,因此引起了极大的兴趣。肌腱是一种排列的多层纤维复合结构,主要由胶原分子构成,从而制成具有出色拉伸强度的材料。这篇论文回顾了有关整个肌腱层次的肌腱结构-功能行为的研究现状,从纳米尺度的胶原分子到完整的肌腱。

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