Blood flow-restricted training does not improve jump performance in untrained young men

被引:28
作者
Madarame, H. [1 ]
Ochi, E. [2 ]
Tomioka, Y.
Nakazato, K. [3 ]
Ishii, N.
机构
[1] Univ Tokyo, Grad Sch Arts & Sci, Dept Life Sci Sports Sci, Meguro Ku, Tokyo 1538902, Japan
[2] Meiji Gakuin Univ, Ctr Liberal Arts, Tokyo, Kanagawa, Japan
[3] Nippon Sport Sci Univ, Grad Sch Hlth & Sport Sci, Tokyo, Japan
基金
日本学术振兴会;
关键词
magnetic resonance imaging; muscular hypertrophy; muscular strength; squat; strength training; venous occlusion; vertical jump; INTENSITY RESISTANCE EXERCISE; VASCULAR OCCLUSION; NEUROMUSCULAR ADAPTATIONS; VERTICAL JUMP; HUMAN MUSCLE; STRENGTH; TENDON; CONTRACTIONS; RESPONSES; BEHAVIOR;
D O I
10.1556/APhysiol.98.2011.4.10
中图分类号
学科分类号
摘要
The purpose of this study was to investigate the effect of blood flow-restricted training (BFRT) on jump performance in relation to changes in muscle strength. Seventeen untrained young men were assigned into either BFRT or normal training (NORT) groups and performed low-intensity [30-40% of one-repetition maximum (1RM)] resistance exercise (horizontal squat, 3-4 sets x 15-30 repetitions) twice a week for 10 weeks. The BFRT performed the exercise with their proximal thighs compressed by air-pressure cuffs for the purpose of blood flow restriction. Squat 1RM, muscle cross-sectional area (CSA) of quadriceps femoris, and countermovement jump (CMJ) height were measured before and after the 10-wk training period. Squat 1RM increased greater in BFRT than in NORT (19.3% vs. 9.7%, P < 0.01). Although the CSA increase was independent of groups, it tended to be larger in BFRT than in NORT (8.3% vs. 2.9%, P = 0.094). On the other hand, CMJ height did not change after the training (P = 0.51). In conclusion, the present study showed that BFRT induced muscle hypertrophy and strength increase, whereas it did not increase CMJ height in previously untrained young men. It is suggested that BFRT is ineffective in improving jump performance.
引用
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页码:465 / 471
页数:7
相关论文
共 31 条
[11]  
Kalapotharakos VI, 2005, J SPORT MED PHYS FIT, V45, P570
[12]   The effects of low-intensity resistance training with vascular restriction on leg muscle strength in older men [J].
Karabulut, Murat ;
Abe, Takashi ;
Sato, Yoshiaki ;
Bemben, Michael G. .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY, 2010, 108 (01) :147-155
[13]   Effects of low-load resistance training with vascular occlusion on the mechanical properties of muscle and tendon [J].
Kubo, K ;
Komuro, T ;
Ishiguro, N ;
Tsunoda, N ;
Sato, Y ;
Ishii, N ;
Kanehisa, H ;
Fukunaga, T .
JOURNAL OF APPLIED BIOMECHANICS, 2006, 22 (02) :112-119
[14]  
Kubo K., 2005, INT J SPORT HLTH SCI, V3, P143, DOI DOI 10.5432/IJSHS.3.143
[15]   Potential safety issues with blood flow restriction training [J].
Loenneke, J. P. ;
Wilson, J. M. ;
Wilson, G. J. ;
Pujol, T. J. ;
Bemben, M. G. .
SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS, 2011, 21 (04) :510-518
[16]  
Madarame H., 2011, GAZZETTA MEDICA ITALIANA ARCHIVIO PER LE SCIENZE MEDICHE, V170, P63
[17]   Endocrine responses to upper- and lower-limb resistance exercises with blood flow restriction [J].
Madarame, H. ;
Sasaki, K. ;
Ishii, N. .
ACTA PHYSIOLOGICA HUNGARICA, 2010, 97 (02) :192-200
[18]   Human tendon behaviour and adaptation, in vivo [J].
Magnusson, S. Peter ;
Narici, Marco V. ;
Maganaris, Constantinos N. ;
Kjaer, Michael .
JOURNAL OF PHYSIOLOGY-LONDON, 2008, 586 (01) :71-81
[19]   Blood Flow Restricted Exercise and Skeletal Muscle Health [J].
Manini, Todd M. ;
Clark, Brian C. .
EXERCISE AND SPORT SCIENCES REVIEWS, 2009, 37 (02) :78-85
[20]   Neuromuscular adaptations in human muscle following low intensity resistance training with vascular occlusion [J].
Moore, DR ;
Burgomaster, KA ;
Schofield, LM ;
Gibala, MJ ;
Sale, DG ;
Phillips, SM .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY, 2004, 92 (4-5) :399-406