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The Contraction Modalities in a Stretch-Shortening Cycle in Animals and Single Joint Movements in Humans: A Systematic Review

机译:在动物的拉伸-缩短周期和人类的单关节运动中的收缩方式:系统的审查。

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摘要

A systematic literature search was conducted to review the force-enhancing mechanisms caused by a stretch-shortening cycle (SSC). The review aims to yield an overview of the contraction modalities influencing the SSC performance in animals and single joint movements in humans. The search was executed in common with the PRISMA statement. CINAHL, MEDLINE (via ProQuest), PubMed, ScienceDirect, Scopus and Web of Science databases were used for the systematic search from its inception until February 2019. A quality assessment was conducted with a modified Downs and Black checklist. Twenty-five studies were included. SSC effects, leading to increased force/work during a SSC and a reduced force depression (FD) compared to a pure shortening contraction, are existent on different levels of the muscle, from single fiber experiments to the level of in vivo muscle-tendon complex. Muscle performance is dependent on shortening velocity, shortening distance, stretch distance, the time (transition phase) between stretch and shortening and the active prephase duration. Concerning stretch velocity we found conflicting results. The findings from this systematic review indicate that the mechanisms in the early phase of shortening are associated with pre-activation effects, elastic recoil and stretch reflex. Furthermore, we speculate that residual force enhancement (RFE) is mainly responsible for an increased steady-state force compared to a pure shortening contraction.
机译:进行了系统的文献检索,以审查由拉长缩短周期(SSC)引起的力量增强机制。综述旨在概述影响动物SSC表现和人类单关节运动的收缩方式。搜索与PRISMA语句共同执行。从成立到2019年2月,一直使用CINAHL,MEDLINE(通过ProQuest),PubMed,ScienceDirect,Scopus和Web of Science数据库进行系统搜索。使用经过修改的Downs和Black清单进行了质量评估。包括25个研究。从单纤维实验到体内肌腱复合物的不同水平,SSC的作用都存在于不同水平的肌肉上,从而导致SSC期间的力量/工作增加,并且与单纯的收缩收缩相比,力量下降(FD)减少。 。肌肉性能取决于缩短速度,缩短距离,伸展距离,伸展和缩短之间的时间(过渡阶段)以及有效的前期持续时间。关于拉伸速度,我们发现矛盾的结果。该系统评价的结果表明,缩短的早期机制与激活前作用,弹性后坐力和伸展反射有关。此外,我们推测与纯缩短收缩相比,残余力增强(RFE)主要负责增加稳态力。

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