The Impact of Fatigue on Performance and Biomechanical Variables—A Narrative Review with Prospective Methodology

Michele Aquino, John Petrizzo, R. Otto, J. Wygand
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引用次数: 2

Abstract

Landing kinetics and kinematics have historically been correlated with potential injury. A factor that requires more attention associated with its correlation to injury risk includes the impact of physiological fatigue. Fatigue is a multifaceted phenomenon involving central and peripheral factors resulting in a slowing or cessation of motor unit firing and a decrease in maximal force and power. Sports participation rarely results in momentary muscular failure occurring, as many sports consist of intermittent periods of activity that are interspersed with short rest periods that allow for recovery to take place. However, over the course of the competition, fatigue can still accumulate and can result in impaired performance. Current literature on the topic struggles to replicate the peripheral and central metabolic stresses required to induce a state of fatigue that would be equivalent to athletic exposure. Furthermore, the current literature fails to demonstrate consistency regarding the kinetic implications associated with fatigue, which may be secondary to the inconsistencies associated with fatigue protocols utilized. This article focuses on providing an overview of the current literature associated with fatigue’s impact on the kinetics associated with landing from a jump. The article will provide a prospective methodology utilizing repeat bouts of the Wingate Anaerobic Power Test. The proposed protocol may help further our understanding of the relationship between fatigue and lower extremity biomechanics.
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疲劳对运动表现和生物力学变量的影响——前瞻性方法的述评
着陆动力学和运动学历来与潜在损伤相关。与损伤风险相关的一个需要更多关注的因素包括生理疲劳的影响。疲劳是一种多方面的现象,涉及中心和外围因素,导致发动机单元点火减慢或停止,最大力和功率降低。参加运动很少会导致短暂的肌肉衰竭,因为许多运动都是间歇性的活动,其间穿插着短暂的休息期,以便进行恢复。然而,在比赛过程中,疲劳仍然会累积,并可能导致成绩受损。目前有关该主题的文献很难复制诱导疲劳状态所需的外周和中枢代谢应激,这种疲劳状态相当于运动暴露。此外,目前的文献未能证明与疲劳相关的动力学含义的一致性,这可能是与所使用的疲劳方案相关的不一致性的次要因素。这篇文章的重点是概述当前与疲劳对跳跃着地动力学影响相关的文献。这篇文章将提供一种前瞻性的方法,利用Wingate厌氧功率测试的重复循环。所提出的方案可能有助于我们进一步理解疲劳与下肢生物力学之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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