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Effects of fatigue on ankle biomechanics during jumps: A systematic review

机译:疲劳对跳跃期间踝肌机械的影响:系统评价

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摘要

Fatigue is common during physical activity and can have an effect on ankle biomechanics during different actions, such as a jump. Yet current research on the topic is very heterogeneous and hinders clarity on what changes are actually due to fatigue. Therefore, the aim of this review was to summarise and analyse the current literature that investigates the effects of fatigue on ankle biomechanics during a jump. Searches were conducted in five databases and studies with activities eliciting fatigue and comparing outcomes under a fatigue and non-fatigue conditions were selected. Twelve studies were included, six analysed double legged jumps and six single legged jump. When comparing ankle biomechanics between a fatigued condition and a non-fatigued condition, findings suggested that at initial contact at landing, dorsiflexion increased in single legged jump and plantarflexion increased in double legged jump; at maximum knee flexion after landing, dorsiflexion decreased in double legged jumps and plantarflexion increased at full foot contact in single legged jumps. Also, ankle power (for double legged jump) and ground reaction force (for double and single legged jump) reduced at initial contact to maximum knee flexion at landing after fatigue and ankle power also reduced at takeoff in single legged jumps. The current review shows that fatigue affect ankle biomechanics by reducing dorsiflexion, from initial contact to maximum knee flexion at landing, and power during the jump takeoff. Such information could have implications for injury prevention.
机译:疲劳在物理活动期间是常见的,并且在不同的动作期间可以对踝部生物力学产生影响,例如跳跃。然而,目前对这个话题的研究非常异构,并且妨碍了对实际疲劳的改变的清晰度。因此,本综述的目的是总结和分析目前的文献,以在跳跃期间调查疲劳对踝部生物力学的影响。搜索在五个数据库中进行,并在诱导疲劳和比较疲劳和非疲劳条件下进行疲劳和比较结果的研究。包括十二项研究,六次分析双腿跳跃和六个单腿跳跃。当比较慢性病症和非疲劳条件之间的脚踝生物力学时,调查结果表明,在登陆时的初始接触时,单腿跳跃中的背部增加,双腿跳跃增加了Plantarflexion;在登陆后的最大膝关节屈曲时,双腿跳跃中的背部减少,在单腿跳跃的全脚接触时,Plantarflexion增加。此外,脚踝功率(对于双腿跳跃)和接地反作用力(用于双腿和单腿跳跃)在初始接触时减少到疲劳和脚踝功率后的着陆后的最大膝关屈曲,在单腿跳跃时也减少了起飞。目前的审查表明,疲劳通过减少背部影响脚踝生物力学,从初始接触到着陆时的最大膝关节屈曲,并且在跳转起飞期间的电力。此类信息可能对预防损伤有影响。

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