Papoti Marcelo, Manchado-Gobatto Fúlvia Barros, Gobatto Claudio Alexandre
School of Physical Education and Sport of Ribeirão Preto, University of São Paulo, Ribeirao Preto, São Paulo, Brazil.
School of Applied Science, University of Campinas - UNICAMP, Limeira, Brazil.
BMJ Open Sport Exerc Med. 2023 Sep 26;9(3):e001520. doi: 10.1136/bmjsem-2022-001520. eCollection 2023.
High-intensity interval training (HIIT) is a popular method for optimising sports performance and, more recently, improving health-related parameters. The inclusion of hypoxia during HIIT can promote additional gains compared with normoxia. However, reductions in the effort intensities compared with the same training performed in normoxia have been reported. Studies have reported that adding hypoxia during periods of inter-effort recovery (IEH) enables maintenance of the intensity of efforts. It also promotes additional gains from exposure to hypoxia. Our call is for researchers to consider IEH in experiments involving different models of HIIT. Additionally, we consider the need to answer the following questions: What is the clinically relevant minimum dose of exposure to hypoxia during the recovery periods between efforts so that favourable adaptations of parameters are associated with health and sports performance? How does the intensity of exertion influence the responses to hypoxia exposure during recovery periods? What are the chronic effects of different models of HIIT and hypoxia recovery on sports performance?
高强度间歇训练(HIIT)是一种优化运动表现的常用方法,最近也用于改善与健康相关的参数。与常氧训练相比,在HIIT期间加入低氧环境可带来更多益处。然而,有报告称与在常氧环境下进行相同训练相比,努力强度有所降低。研究报告称,在努力间歇恢复(IEH)期间加入低氧环境能够维持努力强度。这也能促进因低氧暴露带来的更多益处。我们呼吁研究人员在涉及不同HIIT模式的实验中考虑IEH。此外,我们认为有必要回答以下问题:在努力之间的恢复期间,低氧暴露的临床相关最小剂量是多少,以便参数的有利适应性与健康和运动表现相关?运动强度如何影响恢复期间对低氧暴露的反应?不同的HIIT模式和低氧恢复对运动表现的长期影响是什么?