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人类太空飞行运动对策的优化:力量训练与有氧训练同时进行的操作考量

Optimization of Exercise Countermeasures for Human Space Flight: Operational Considerations for Concurrent Strength and Aerobic Training.

作者信息

Jones Thomas W, Petersen Nora, Howatson Glyn

机构信息

Department of Sport, Exercise and Rehabilitation, Northumbria University, Newcastle upon Tyne, United Kingdom.

KBRwyle GmbH, European Astronaut Centre, European Space Agency, Cologne, Germany.

出版信息

Front Physiol. 2019 May 16;10:584. doi: 10.3389/fphys.2019.00584. eCollection 2019.

Abstract

The physiological challenges presented by space flight and in microgravity (μG) environments are well documented. μG environments can result in declines muscle mass, contractile strength, and functional capabilities. Previous work has focused on exercise countermeasures designed to attenuate the negative effects of μG on skeletal muscle structure, function, and contractile strength and aerobic fitness parameters. Exposure to μG environments influences both strength and aerobic type physical qualities. As such, the current exercise recommendations for those experiencing μG involve a combination of strength and aerobic training or "concurrent training." Concurrent training strategies can result in development and maintenance of both strength and aerobic capabilities. However, terrestrial research has indicated that if concurrent training strategies are implemented inappropriately, strength development can be inhibited. Previous work has also demonstrated that the aforementioned inhibition of strength development is dependent on the frequency of aerobic training, modality of aerobic training, the relief period between strength and aerobic training, and the intra-session sequencing of strength and aerobic training. While time constraints and feasibility are important considerations for exercise strategies in μG, certain considerations could be made when prescribing concurrent strength and aerobic training to those experiencing human space flight. If strength and aerobic exercise must be performed in close proximity, strength should precede aerobic stimulus. Eccentric strength training methods should be considered to increase mechanical load and reduce metabolic cost. For aerobic capacity, maintenance cycle and/or rowing-based high-intensity intermittent training (HIIT) should be considered and cycle ergometry and/or rowing may be preferable to treadmill running.

摘要

太空飞行和微重力(μG)环境带来的生理挑战已有充分记录。微重力环境会导致肌肉质量、收缩力量和功能能力下降。先前的研究主要集中在运动对策上,旨在减轻微重力对骨骼肌结构、功能、收缩力量和有氧适能参数的负面影响。暴露于微重力环境会影响力量和有氧型身体素质。因此,目前针对经历微重力的人的运动建议包括力量训练和有氧训练的结合,即“同时训练”。同时训练策略可以促进和维持力量及有氧能力。然而,地面研究表明,如果同时训练策略实施不当,力量发展可能会受到抑制。先前的研究还表明,上述力量发展的抑制取决于有氧训练的频率、有氧训练的方式、力量训练和有氧训练之间的休息期,以及力量训练和有氧训练在训练时段内的顺序。虽然时间限制和可行性是微重力环境下运动策略的重要考虑因素,但在为进行载人航天飞行的人制定同时进行的力量和有氧训练时,仍可考虑某些因素。如果力量训练和有氧运动必须紧密相连进行,力量训练应先于有氧刺激。应考虑采用离心力量训练方法来增加机械负荷并降低代谢成本。对于有氧能力,应考虑维持周期和/或基于划船的高强度间歇训练(HIIT),并且与跑步机跑步相比,自行车测功和/或划船可能更可取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a55/6532362/a088861af820/fphys-10-00584-g001.jpg

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