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“Citius, altius, fortius” in the face of global warming: not as simple as it seems
npj Climate and Atmospheric Science ( IF 8.5 ) Pub Date : 2024-09-30 , DOI: 10.1038/s41612-024-00774-3 Franck Brocherie, Olivier Girard, Adèle Mornas, Janne Bouten, Grégoire P. Millet
npj Climate and Atmospheric Science ( IF 8.5 ) Pub Date : 2024-09-30 , DOI: 10.1038/s41612-024-00774-3 Franck Brocherie, Olivier Girard, Adèle Mornas, Janne Bouten, Grégoire P. Millet
In the context of global warming, the reduction in air density, directly driven by rising air temperature, has been identified to enhance athletic anaerobic performance. However, the effect of heat is likely exercise-, intensity- and time-dependent with different physiological mechanisms. It is therefore imperative to clarify some points to not disrupt the disseminated message in order to protect the general population from heat-related illnesses.
中文翻译:
面对全球变暖,“Citius、altius、fortius”:并不像看上去那么简单
在全球变暖的背景下,由气温上升直接驱动的空气密度降低已被确定可以提高运动无氧性能。然而,热量的影响可能取决于运动、强度和时间,并具有不同的生理机制。因此,有必要澄清一些要点,以免扰乱信息的传播,以保护广大民众免受与高温相关的疾病。
更新日期:2024-09-30
中文翻译:
面对全球变暖,“Citius、altius、fortius”:并不像看上去那么简单
在全球变暖的背景下,由气温上升直接驱动的空气密度降低已被确定可以提高运动无氧性能。然而,热量的影响可能取决于运动、强度和时间,并具有不同的生理机制。因此,有必要澄清一些要点,以免扰乱信息的传播,以保护广大民众免受与高温相关的疾病。