Power–duration relationship: Physiology, fatigue, and the limits of human performance

IF 2.4 3区 医学 Q2 SPORT SCIENCES European Journal of Sport Science Pub Date : 2018-01-02 DOI:10.1080/17461391.2016.1249524
M. Burnley, A. Jones
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引用次数: 165

Abstract

Abstract The duration that exercise can be maintained decreases as the power requirements increase. In this review, we describe the power–duration (PD) relationship across the full range of attainable power outputs in humans. We show that a remarkably small range of power outputs is sustainable (power outputs below the critical power, CP). We also show that the origin of neuromuscular fatigue differs considerably depending on the exercise intensity domain in which exercise is performed. In the moderate domain (below the lactate threshold, LT), fatigue develops slowly and is predominantly of central origin (residing in the central nervous system). In the heavy domain (above LT but below CP), both central and peripheral (muscle) fatigue are observed. In this domain, fatigue is frequently correlated with the depletion of muscle glycogen. Severe-intensity exercise (above the CP) is associated with progressive derangements of muscle metabolic homeostasis and consequent peripheral fatigue. To counter these effects, muscle activity increases progressively, as does pulmonary oxygen uptake (), with task failure being associated with the attainment of max. Although the loss of homeostasis and thus fatigue develop more rapidly the higher the power output is above CP, the metabolic disturbance and the degree of peripheral fatigue reach similar values at task failure. We provide evidence that the failure to continue severe-intensity exercise is a physiological phenomenon involving multiple interacting mechanisms which indicate a mismatch between neuromuscular power demand and instantaneous power supply. Valid integrative models of fatigue must account for the PD relationship and its physiological basis.
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权力-持续时间关系:生理学、疲劳和人类表现的极限
随着能量需求的增加,运动的持续时间逐渐减少。在这篇综述中,我们描述了在人类可获得的全部功率输出范围内的功率-持续时间(PD)关系。我们表明,一个非常小的功率输出范围是可持续的(功率输出低于临界功率,CP)。我们还表明,神经肌肉疲劳的起源根据运动强度的不同而有很大的不同。在中度领域(低于乳酸阈值,LT),疲劳发展缓慢,主要是中枢起源(居住在中枢神经系统)。在重域(LT以上,CP以下),可以观察到中枢和外周(肌肉)疲劳。在这个领域,疲劳通常与肌糖原的消耗有关。高强度运动(CP以上)与肌肉代谢稳态的进行性紊乱和随之而来的外周疲劳有关。为了抵消这些影响,肌肉活动逐渐增加,肺摄氧量也逐渐增加(),任务失败与达到max有关。虽然在CP以上的功率输出越高,体内平衡的丧失和疲劳发展得越快,但在任务失败时,代谢紊乱和周围疲劳的程度达到相似的值。我们提供的证据表明,持续高强度运动的失败是一种涉及多种相互作用机制的生理现象,表明神经肌肉力量需求和瞬时能量供应之间的不匹配。有效的疲劳综合模型必须考虑PD关系及其生理基础。
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来源期刊
European Journal of Sport Science
European Journal of Sport Science 医学-运动科学
CiteScore
6.60
自引率
3.10%
发文量
153
审稿时长
6-12 weeks
期刊介绍: The European Journal of Sport Science (EJSS) is the official Medline- and Thomson Reuters-listed journal of the European College of Sport Science. The editorial policy of the Journal pursues the multi-disciplinary aims of the College: to promote the highest standards of scientific study and scholarship in respect of the following fields: (a) Applied Sport Sciences; (b) Biomechanics and Motor Control; c) Physiology and Nutrition; (d) Psychology, Social Sciences and Humanities and (e) Sports and Exercise Medicine and Health.
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