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The Role of Type Ⅰ Collagen Molecular Structure in Tendon Elastic Energy Storage

机译:Ⅰ型胶原分子结构在肌腱弹性能量存储中的作用

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In order to facilitate locomotion and limb movement many animals store energy elastically in their tendons. The formation of crosslinked collagen fibers in tendons results in the conversion of weak, liquid-like embryonic tissues into tough elastic solids that can store energy and perform work. Collagen fibers in the form of fascicles are the major structural units found in tendons. The purpose of this paper is to review the literature on collagen self-assembly and tendon development and to relate this information to the development of elastic energy storage in non-mineralizing and mineralizing tendons. Of particular interest is the mechanism by which energy is stored in tendons during locomotion. In the turkey, much of the force generated by the gastrocnemius muscle is stored as elastic energy during tendon deformation and not within the muscle. As limbs move, the tendons are strained, causing the collagen fibers in the extracellular matrices to stretch. Through the analysis of turkey tendons, collagen fibers, and a molecular model, it is hypothesized that elastic energy is stored in the flexible regions of the collagen molecule. Data from the molecular model, mineralized fibers, and turkey tendons show that the presence of calcium and phosphate ions causes an increase in elastic energy stored per unit strain. Based on the theoretical modeling studies, the increase in stress with strain is a result of the initiation of stretching of the rigid regions of collagen molecules.
机译:为了促进运动和肢体运动,许多动物在其肌腱中弹性地存储能量。肌腱中交联胶原纤维的形成导致脆弱的液体状胚胎组织转变为坚韧的弹性固体,可以储存能量并完成工作。束状胶原蛋白纤维是肌腱中的主要结构单位。本文的目的是回顾有关胶原蛋白自组装和肌腱发育的文献,并将此信息与非矿化和矿化肌腱中弹性能量存储的发展联系起来。特别感兴趣的是在运动过程中将能量存储在肌腱中的机制。在火鸡中,腓肠肌产生的大部分力在肌腱变形过程中作为弹性能量存储,而不是在肌肉内部。随着四肢的移动,肌腱拉紧,导致细胞外基质中的胶原纤维拉伸。通过对土耳其腱,胶原纤维和分子模型的分析,可以假设弹性能量存储在胶原分子的柔性区域中。来自分子模型,矿化纤维和火鸡腱的数据表明,钙和磷酸根离子的存在会导致单位应变所存储的弹性能增加。根据理论模型研究,应力随应变的增加是胶原分子刚性区域开始拉伸的结果。

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