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

被引:12
作者
Behringer, Michael [1 ]
Willberg, Christina [1 ]
机构
[1] Goethe Univ Frankfurt, Inst Sports Sci, Frankfurt, Germany
关键词
human space flight; exercise countermeasure; adaptations to microgravity; BFR training; space adaptations; INTENSITY RESISTANCE EXERCISE; FOCAL ADHESION KINASE; SKELETAL-MUSCLE; ACHILLES-TENDON; BIOMECHANICAL PROPERTIES; POTENTIAL MECHANISMS; PRESSURE-GRADIENTS; PHOSPHATIDIC-ACID; METABOLIC STRESS; STEM-CELLS;
D O I
10.3389/fphys.2019.00033
中图分类号
Q4 [生理学];
学科分类号
071003 ;
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.
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页数:8
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共 108 条
[11]  
Bemben DA., 2007, Int J Kaatsu Train Res, V3, P21, DOI [10.3806/ijktr.3.21, DOI 10.3806/IJKTR.3.21]
[12]   Effects of blood flow restriction exercises on bone metabolism: a systematic review [J].
Bittar, S. T. ;
Pfeiffer, P. S. ;
Santos, H. H. ;
Cirilo-Sousa, M. S. .
CLINICAL PHYSIOLOGY AND FUNCTIONAL IMAGING, 2018, 38 (06) :930-935
[13]   The pathophysiology of skeletal muscle ischemia and the reperfusion syndrome: a review [J].
Blaisdell, FW .
CARDIOVASCULAR SURGERY, 2002, 10 (06) :620-630
[14]   Lateral force transmission across costameres in skeletal muscle [J].
Bloch, RJ ;
Gonzalez-Serratos, H .
EXERCISE AND SPORT SCIENCES REVIEWS, 2003, 31 (02) :73-78
[15]   The effect of physical exercise on bone density in middle-aged and older men: A systematic review [J].
Bolam, K. A. ;
van Uffelen, J. G. Z. ;
Taaffe, D. R. .
OSTEOPOROSIS INTERNATIONAL, 2013, 24 (11) :2749-2762
[16]   Osteocytes, mechanosensing and Wnt signaling [J].
Bonewald, Lynda F. ;
Johnson, Mark L. .
BONE, 2008, 42 (04) :606-615
[17]  
Brumitt J, 2015, INT J SPORTS PHYS TH, V10, P748
[18]   Phosphorylation of tyrosine 397 in focal adhesion kinase is required for binding phosphatidylinositol 3-kinase [J].
Chen, HC ;
Appeddu, PA ;
Isoda, H ;
Guan, JL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (42) :26329-26334
[19]   Relative safety of 4 weeks of blood flow-restricted resistance exercise in young, healthy adults [J].
Clark, B. C. ;
Manini, T. M. ;
Hoffman, R. L. ;
Williams, P. S. ;
Guiler, M. K. ;
Knutson, M. J. ;
McGlynn, M. L. ;
Kushnick, M. R. .
SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS, 2011, 21 (05) :653-662
[20]   Effects of exercise load and blood-flow restriction on skeletal muscle function [J].
Cook, Summer B. ;
Clark, Brian C. ;
Ploutz-Snyder, Lori L. .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2007, 39 (10) :1708-1713