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Mechanical properties, physiological behavior, and function of aponeurosis and tendon

机译:腱膜和肌腱的机械性质,生理学行为和功能

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摘要

During human movement, the muscle and tendinous structures interact as a mechanical system in which forces are generated and transmitted to the bone and energy is stored and released to optimize function and economy of movement and/or to reduce risk of injury. The present review addresses certain aspects of how the anatomical design and mechanical and material properties of the force-transmitting tissues contribute to the function of the muscle-tendon unit and thus overall human function. The force-bearing tissues are examined from a structural macroscopic point of view down to the nanoscale level of the collagen fibril. In recent years, the understanding of in vivo mechanical function of the force-bearing tissues has increased, and it has become clear that these tissues adapt to loading and unloading and furthermore that force transmission mechanics is more complex than previously thought. Future investigations of the force-transmitting tissues in three dimensions will enable a greater understanding of the complex functional interplay between muscle and tendon, with relevance for performance, injury mechanisms, and rehabilitation strategies.
机译:在人体运动期间,肌肉和腱结构作为机械系统相互作用,在该机械系统中,储存并释放出骨骼和能量的力,以优化运动的功能和经济和/或降低损伤风险。本综述解决了力传递组织的解剖学设计和机械和材料特性如何有助于肌肉肌腱单元的功能以及因此总体功能的功能。从结构宏观的观点检查到胶原型原纤维的纳米级水平。近年来,对体内机械函数的理解有力组织的增加,并且已经清楚地清楚的是,这些组织适应装载和卸载,而且该组织适应装载和卸载,而且该组织还比以前认为力传递机制更复杂。未来对三维的强制传输组织的研究将使肌肉和肌腱之间的复杂功能相互作用更加了解性能,伤害机制和康复策略相关性。

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