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Application of Blood Flow Restriction to Optimize Exercise Countermeasures for Human Space Flight

机译:血流限制在优化人类航天飞行运动对策中的应用

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摘要

In recent years there has been a strong increase in publications on blood flow restriction (BFR) training. In particular, the fact that this type of training requires only low resistance to induce muscle strength and mass gains, makes BFR training interesting for athletes and scientists alike. For the same reason this type of training is particularly interesting for astronauts working out in space. Lower resistance during training would have the advantage of reducing the risk of strain-induced injuries. Furthermore, strength training with lower resistances would have implications for the equipment required for training under microgravity conditions, as significantly lower resistances have to be provided by the training machines. Even though we are only about to understand the effects of blood flow restriction on exercise types other than low-intensity strength training, the available data indicate that BFR of leg muscles is also able to improve the training effects of walking or running at slow speeds. The underlying mechanisms of BFR-induced functional and structural adaptations are still unclear. An essential aspect seems to be the premature fatigue of Type-I muscle fibers, which requires premature recruitment of Type-II muscle fibers to maintain a given force output. Other theories assume that cell swelling, anabolic hormones, myokines and reactive oxygen species are involved in the mediation of BFR training-related effects. This review article is intended to summarize the main advantages and disadvantages, but also the potential risks of such training for astronauts.
机译:近年来,有关血流限制(BFR)培训的出版物大量增加。尤其是,这种类型的训练只需要很小的阻力即可诱导肌肉力量和增加体重,这一事实使得BFR训练对于运动员和科学家而言都非常有趣。出于同样的原因,这种训练对于在太空中锻炼的宇航员来说尤其有趣。训练期间抵抗力较低的优点是可以减少因劳损引起的伤害。此外,具有较低阻力的力量训练将对在微重力条件下进行训练所需的设备产生影响,因为训练机必须提供明显较低的阻力。即使我们仅了解除低强度力量训练外的血流限制对运动类型的影响,现有数据也表明腿部肌肉的BFR也能够改善慢速行走或跑步的训练效果。 BFR诱导的功能和结构适应的潜在机制仍不清楚。一个重要方面似乎是I型肌纤维过早疲劳,这要求II型肌纤维过早募集以维持给定的力输出。其他理论认为细胞膨胀,合成代谢激素,肌动蛋白和活性氧物种参与了BFR训练相关效应的介导。本文旨在总结主要优点和缺点,以及对宇航员进行此类培训的潜在风险。

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