Proposed framework for forecasting heat-effects on motor-cognitive performance in the Summer Olympics.

Q1 Biochemistry, Genetics and Molecular Biology
Temperature Pub Date : 2021-08-20 eCollection Date: 2021-01-01 DOI:10.1080/23328940.2021.1957367
Jacob Feder Piil, Boris Kingma, Nathan B Morris, Lasse Christiansen, Leonidas G Ioannou, Andreas D Flouris, Lars Nybo
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引用次数: 8

Abstract

Heat strain impairs performance across a broad spectrum of sport disciplines. The impeding effects of hyperthermia and dehydration are often ascribed to compromised cardiovascular and muscular functioning, but expert performance also depends on appropriately tuned sensory, motor and cognitive processes. Considering that hyperthermia has implications for central nervous system (CNS) function and fatigue, it is highly relevant to analyze how heat stress forecasted for the upcoming Olympics may influence athletes. This paper proposes and demonstrates the use of a framework combining expected weather conditions with a heat strain and motor-cognitive model to analyze the impact of heat and associated factors on discipline- and scenario-specific performances during the Tokyo 2021 games. We pinpoint that hyperthermia-induced central fatigue may affect prolonged performances and analyze how hyperthermia may impair complex motor-cognitive performance, especially when accompanied by either moderate dehydration or exposure to severe solar radiation. Interestingly, several short explosive performances may benefit from faster cross-bridge contraction velocities at higher muscle temperatures in sport disciplines with little or no negative heat-effect on CNS fatigue or motor-cognitive performance. In the analyses of scenarios and Olympic sport disciplines, we consider thermal impacts on "motor-cognitive factors" such as decision-making, maximal and fine motor-activation as well as the influence on central fatigue and pacing. From this platform, we also provide perspectives on how athletes and coaches can identify risks for their event and potentially mitigate negative motor-cognitive effects for and optimize performance in the environmental settings projected.

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提出了一个预测夏季奥运会热影响运动认知表现的框架。
热应激损害了广泛的运动学科的表现。高温和脱水的阻碍作用通常归因于心血管和肌肉功能受损,但专家的表现也取决于适当调节的感觉、运动和认知过程。考虑到热疗对中枢神经系统(CNS)功能和疲劳的影响,分析即将到来的奥运会热应激预测如何影响运动员是高度相关的。本文提出并演示了将预期天气条件与热应变和运动认知模型相结合的框架的使用,以分析2021年东京奥运会期间热量和相关因素对特定学科和特定场景表现的影响。我们指出,高温诱导的中枢性疲劳可能会影响长期的表现,并分析了高温如何损害复杂的运动-认知表现,特别是当伴有中度脱水或暴露于强烈的太阳辐射时。有趣的是,在运动训练中,在较高的肌肉温度下,一些短时间的爆发力表现可能受益于更快的过桥收缩速度,而对中枢神经系统疲劳或运动认知表现的负面热影响很少或没有。在情景分析和奥林匹克运动项目分析中,我们考虑了热对“运动-认知因素”的影响,如决策、最大和精细运动激活,以及对中枢疲劳和节奏的影响。从这个平台上,我们还提供了运动员和教练如何识别他们的赛事风险,并潜在地减轻负面的运动认知影响,并在预期的环境设置中优化表现的观点。
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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来源期刊
Temperature
Temperature Medicine-Physiology (medical)
CiteScore
10.40
自引率
0.00%
发文量
37
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