Hurst Christopher, Scott Jonathan P R, Weston Kathryn L, Weston Matthew
Institute of Neuroscience, Newcastle University, Newcastle upon Tyne, United Kingdom.
NIHR Newcastle Biomedical Research Centre, Newcastle upon Tyne Hospitals NHS Foundation Trust and Newcastle University, Newcastle upon Tyne, United Kingdom.
Front Physiol. 2019 May 22;10:581. doi: 10.3389/fphys.2019.00581. eCollection 2019.
High-intensity interval training (HIT) is an effective approach for improving a range of physiological markers associated with physical fitness. A considerable body of work has demonstrated substantial improvements in cardiorespiratory fitness following short-term training programmes, while emerging evidence suggests that HIT can positively impact aspects of neuromuscular fitness. Given the detrimental consequences of prolonged exposure to microgravity on both of these physiological systems, and the potential for HIT to impact multiple components of fitness simultaneously, HIT is an appealing exercise countermeasure during human spaceflight. As such, the primary aim of this mini review is to synthesize current terrestrial knowledge relating to the effectiveness of HIT for inducing improvements in cardiorespiratory and neuromuscular fitness. As exercise-induced fitness changes are typically influenced by the specific exercise protocol employed, we will consider the effect of manipulating programming variables, including exercise volume and intensity, when prescribing HIT. In addition, as the maintenance of HIT-induced fitness gains and the choice of exercise mode are important considerations for effective training prescription, these issues are also discussed. We conclude by evaluating the potential integration of HIT into future human spaceflight operations as a strategy to counteract the effects of microgravity.
高强度间歇训练(HIT)是改善一系列与体能相关生理指标的有效方法。大量研究表明,短期训练计划后心肺功能有显著改善,同时新出现的证据表明,HIT可对神经肌肉功能产生积极影响。鉴于长期暴露于微重力环境对这两个生理系统都有不利影响,且HIT有可能同时影响体能的多个组成部分,因此HIT在载人航天飞行期间是一种有吸引力的运动对策。因此,本综述的主要目的是综合当前关于HIT对改善心肺和神经肌肉功能有效性的地面研究知识。由于运动引起的体能变化通常受所采用的具体运动方案影响,我们将在规定HIT时考虑操纵编程变量(包括运动量和强度)的效果。此外,由于维持HIT引起的体能提升以及运动模式的选择是有效训练处方的重要考虑因素,因此也将讨论这些问题。我们通过评估将HIT作为一种抵消微重力影响的策略纳入未来载人航天飞行操作的可能性来得出结论。