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Cooling During Exercise: An Overlooked Strategy for Enhancing Endurance Performance in the Heat

机译:在运动期间冷却:一种忽略的策略,用于提高热量中的耐力性能

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摘要

It is well established that endurance performance is negatively affected by environmental heat stress due to a complex interaction of physical, physiological and psychological alterations. Numerous scientific investigations have attempted to improve performance in the heat with pre-cooling (cooling prior to an exercise test), and as such this has become a well-established ergogenic practice for endurance athletes. However, the use of mid-cooling (cooling during an exercise test) has received considerably less research attention in comparison, despite recent evidence to suggest that the advantage gained from mid-cooling may outweigh that of pre-cooling. A range of mid-cooling strategies are beneficial for endurance performance in the heat, including the ingestion of cold fluids and ice slurry, both with and without menthol, as well as cooling of the neck and face region via a cooling collar or water poured on the head and face. The combination of pre-cooling and mid-cooling has also been effective, but few comparisons exist between the timing and type of such interventions. Therefore, athletes should experiment with a range of suitable mid-cooling strategies for their event during mock competition scenarios, with the aim to determine their individual tolerable limits and performance benefits. Based on current evidence, the effect of mid-cooling on core temperature appears largely irrelevant to any subsequent performance improvements, while cardiovascular, skin temperature, central nervous system function and psychophysiological factors are likely involved. Research is lacking on elite athletes, and as such it is currently unclear how this population may benefit from mid-cooling.
机译:很好地确定,由于物理,生理和心理改变的复杂相互作用,耐力性能受到环境热应激的负面影响。许多科学调查试图通过预冷却(在运动试验之前冷却)提高热量的性能,因此这已成为耐力运动员的良好的生成良好实践。然而,尽管最近的证据表明从中间冷却中获得的优势可能超过预冷却,但是在比较中使用中间冷却(在运动测试期间冷却)的使用相当较少的研究注意力。一系列中冷策略对热量的耐久性有益,包括摄取冷流体和冰浆,无论是薄荷醇还是没有薄荷醇,也可以通过浇筑的冷却套管或水冷却颈部和面部区域头部和脸。预冷却和中冷却的组合也有效,但在此干预措施的时序和类型之间存在很少的比较。因此,运动员应在模拟竞争情景期间对其活动进行一系列适合的中冷策略,旨在确定他们的个人可腐蚀的限制和性能效益。基于当前证据,中间冷却对核心温度的影响似乎与任何后续性能改善有很大无关,而心血管,皮肤温度,中枢神经系统功能和心理生理因素可能会涉及。精英运动员缺乏研究,因此目前尚不清楚该人群可能从中间冷却中受益。

著录项

  • 来源
    《Sports medicine》 |2017年第5期|共13页
  • 作者单位

    Southern Cross Univ Sch Hlth &

    Human Sci Hogbin Dr Coffs Harbour NSW 2450 Australia;

    Qatar Orthopaed &

    Sports Med Hosp Athlete Hlth &

    Performance Res Ctr ASPETAR Doha Qatar;

    La Trobe Univ Dept Rehabil Nutr &

    Sport Bundoora Vic Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 运动医学;
  • 关键词

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