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运动员的降温干预措施:有效性、生理机制及实际考量概述

Cooling interventions for athletes: An overview of effectiveness, physiological mechanisms, and practical considerations.

作者信息

Bongers Coen C W G, Hopman Maria T E, Eijsvogels Thijs M H

机构信息

Radboud Institute of Health Sciences, Radboud university medical center, Department of Physiology , Nijmegen, The Netherlands.

Radboud Institute of Health Sciences, Radboud university medical center, Department of Physiology, Nijmegen, The Netherlands; Research Institute for Sports and Exercise Sciences, Liverpool John Moores University, Liverpool, United Kingdom.

出版信息

Temperature (Austin). 2017 Jan 3;4(1):60-78. doi: 10.1080/23328940.2016.1277003. eCollection 2017.

Abstract

Exercise-induced increases in core body temperature could negative impact performance and may lead to development of heat-related illnesses. The use of cooling techniques prior (pre-cooling), during (per-cooling) or directly after (post-cooling) exercise may limit the increase in core body temperature and therefore improve exercise performance. The aim of the present review is to provide a comprehensive overview of current scientific knowledge in the field of pre-cooling, per-cooling and post-cooling. Based on existing studies, we will discuss 1) the effectiveness of cooling interventions, 2) the underlying physiological mechanisms and 3) practical considerations regarding the use of different cooling techniques. Furthermore, we tried to identify the optimal cooling technique and compared whether cooling-induced performance benefits are different between cool, moderate and hot ambient conditions. This article provides researchers, physicians, athletes and coaches with important information regarding the implementation of cooling techniques to maintain exercise performance and to successfully compete in thermally stressful conditions.

摘要

运动引起的核心体温升高可能对运动表现产生负面影响,并可能导致与热相关疾病的发生。在运动前(预冷)、运动期间(运动中冷却)或运动后立即(后冷却)使用冷却技术,可能会限制核心体温的升高,从而提高运动表现。本综述的目的是全面概述预冷、运动中冷却和后冷却领域的当前科学知识。基于现有研究,我们将讨论:1)冷却干预的有效性;2)潜在的生理机制;3)关于使用不同冷却技术的实际考虑因素。此外,我们试图确定最佳冷却技术,并比较在凉爽、温和和炎热环境条件下,冷却引起的运动表现益处是否存在差异。本文为研究人员、医生、运动员和教练提供了重要信息,有助于他们实施冷却技术以维持运动表现,并在热应激条件下成功参赛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7240/5356217/3b45044eb46c/ktmp-04-01-1277003-g001.jpg

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