International Olympic Committee consensus statement on thermoregulatory and altitude challenges for high-level athletes

Консенсусное заявление Международного олимпийского комитета о терморегуляторных и высотных вызовах для спортсменов высокого уровня
MF Bergeron, Roald Bahr, Peter Bärtsch, L. Bourdon, JAL Calbet, K.‐H. Carlsen, Olivier Castagna, José González‐Alonso, Carsten Lundby, RJ Maughan, Grégoire P. Millet, Margo Mountjoy, Sébastien Racinais, Peter Rasmussen, Andrew W. Subudhi, AJ Young, Torbjørn Soligard, Lars Engebretsen
2012-06-09

altitude challengesathlete safety guidelineshypothermia and frostbitethermal strainthermoregulatory challenges
Challenging environmental conditions, including heat and humidity, cold, and altitude, pose particular risks to the health of Olympic and other high-level athletes. As a further commitment to athlete safety, the International Olympic Committee (IOC) Medical Commission convened a panel of experts to review the scientific evidence base, reach consensus, and underscore practical safety guidelines and new research priorities regarding the unique environmental challenges Olympic and other international-level athletes face. For non-aquatic events, external thermal load is dependent on ambient temperature, humidity, wind speed and solar radiation, while clothing and protective gear can measurably increase thermal strain and prompt premature fatigue. In swimmers, body heat loss is the direct result of convection at a rate that is proportional to the effective water velocity around the swimmer and the temperature difference between the skin and the water. Other cold exposure and conditions, such as during Alpine skiing, biathlon and other sliding sports, facilitate body heat transfer to the environment, potentially leading to hypothermia and/or frostbite; although metabolic heat production during these activities usually increases well above the rate of body heat loss, and protective clothing and limited exposure time in certain events reduces these clinical risks as well. Most athletic events are held at altitudes that pose little to no health risks; and training exposures are typically brief and well-tolerated. While these and other environment-related threats to performance and safety can be lessened or averted by implementing a variety of individual and event preventative measures, more research and evidence-based guidelines and recommendations are needed. In the mean time, the IOC Medical Commission and International Sport Federations have implemented new guidelines and taken additional steps to mitigate risk even further.
1
Cold environments in Alpine skiing, biathlon, and sliding sports can cause hypothermia or frostbite, although metabolic heat production, protective clothing, and limited exposure generally reduce these risks.
2
Heat stress in non-aquatic sports depends on ambient temperature, humidity, wind speed, solar radiation, and added thermal burden from clothing or protective equipment.
3
In swimming, heat loss is driven by convection and is proportional to effective water velocity and the temperature difference between skin and water.
4
Individual and event-level preventive measures can reduce environmental threats to athlete safety and performance, but further evidence-based research and guidelines are needed.
5
Most sporting events occur at altitudes presenting little or no health risk, and typical training exposures are brief and well tolerated.

Thermoregulatory responses and altitude-related challenges in Olympic and other high-level athletes exposed to heat, humidity, cold, and altitude

Environmental effects on athletes’ thermal strain, heat loss, fatigue, hypothermia, frostbite, health, and performance, together with preventive safety measures

Publication Details
Publication Date
2012-06-09
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Authors
MF Bergeron
Roald Bahr
Peter Bärtsch
L. Bourdon
JAL Calbet
K.‐H. Carlsen
Olivier Castagna
José González‐Alonso
Carsten Lundby
RJ Maughan
Grégoire P. Millet
Margo Mountjoy
Sébastien Racinais
Peter Rasmussen
Andrew W. Subudhi
AJ Young
Torbjørn Soligard
Lars Engebretsen
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