Abe T., Fujita S., Nakajima T., Sakamaki M., Ozaki H., Ogasawara R., Sugaya M., Kudo M., Kurano M., Yasuda T., Sato Y., Ohshima H., Mukai C., Ishii N. (2010) Effects of Low-Intensity Cycle Training with Restricted Leg Blood Flow on Thigh Muscle Volume and VO2MAX in Young Men. Journal of Sports Science and Medicine 9, 452-458. |
Abe T., Kearns C.F., Sato Y. (2006) Muscle size and strength are increased following walk training with restricted venous blood flow from the leg muscle, Kaatsu-walk training. Journal of Applied Physiology 100, 1460-1466. |
Abe T., Yasuda T., Midorikawa T., Sato Y., Kearns C.F., Inoue K., Koizumi K., Ishii N. (2005) Skeletal muscle size and circulating IGF-1 are increased after two weeks of twice daily "KAATSU" resistance training. International Journal of KAATSU Training Research 1, 6-12. |
Aguiar M.V., Botelho G.M., Goncalves B.S., Sampaio J.E. (2013) Physiological responses and activity profiles of football small-sided games. Journal of Strength and Conditioning Research 27, 1287-1294. |
Alvarez J.C., D'Ottavio S., Vera J.G., Castagna C. (2009) Aerobic fitness in futsal players of different competitive level. Journal of Strength and Conditioning Research 23, 2163-2166. |
Amani-Shalamzari S., Farhani F., Rajabi H., Abbasi A., Sarikhani A., Paton C., Bayati M., Berdejo-Del-Fresno D., Rosemann T., Nikolaidis P.T., Knechtle B. (2019a) Blood Flow Restriction During Futsal Training Increases Muscle Activation and Strength. Frontiers in Physiology 10, 614. |
Amani-Shalamzari S., Khoshghadam E., Doniaee A., Parnow A., Bayati M., Clemente F.M. (2019b) Generic vs. small-sided game training in futsal: Effects on aerobic capacity, anaerobic power and agility. Physiology & behavior 204, 347-354. |
Amani-Shalamzari S., Rajabi S., Rajabi H., Gahreman D.E., Paton C., Bayati M., Rosemann T., Nikolaidis P.T., Knechtle B. (2019c) Effects of Blood Flow Restriction and Exercise Intensity on Aerobic, Anaerobic, and Muscle Strength Adaptations in Physically Active Collegiate Women. Frontiers in Physiology 10, 810. |
Bachman E., Travison T.G., Basaria S., Davda M.N., Guo W., Li M., Connor Westfall J., Bae H., Gordeuk V., Bhasin S. (2014) Testosterone induces erythrocytosis via increased erythropoietin and suppressed hepcidin: evidence for a new erythropoietin/hemoglobin set point. The Journals of Gerontology: Series A 69, 725-735. |
Barbero-Alvarez J.C., Soto V.M., Barbero-Alvarez V., Granda-Vera J. (2008) Match analysis and heart rate of futsal players during competition. Journal of Sports Sciences 26, 63-73. |
Barbieri R.A., Zagatto A.M., Milioni F., Barbieri F.A. (2016) Specific futsal training program can improve the physical performance of futsal players. Sport Sciences for Health 12, 247-253. |
Barnes K.R., Kilding A.E. (2015) Strategies to improve running economy. Sports Medicine 45, 37-56. |
Bayati M., Farzad B., Gharakhanlou R., Agha-Alinejad H. (2011) A practical model of low-volume high-intensity interval training induces performance and metabolic adaptations that resemble 'all-out' sprint interval training. Journal of Sports Science and Medicine 10, 571-576. |
Behringer M., Behlau D., Montag J.C.K., McCourt M.L., Mester J. (2017) Low-Intensity Sprint Training With Blood Flow Restriction Improves 100-m Dash. Journal of Strength and Conditioning Research 31, 2462-2472. |
Berdejo-del-Fresno D., Moore R., Laupheimer M.W. (2015) VOmax changes in English futsal players after a 6-week period of specific small-sided games training. American Journal of Sports Science and Medicine 3, 28-34. |
Burtscher M., Gatterer H., Faulhaber M., Gerstgrasser W., Schenk K. (2010) Effects of intermittent hypoxia on running economy. International Journal of Sports Medicine 31, 644-650. |
Castagna C., D'Ottavio S., Granda Vera J., Barbero Alvarez J.C. (2009) Match demands of professional Futsal: a case study. Journal of Science and Medicine in Sport 12, 490-494. |
Chtourou H., Souissi N. (2012) The effect of training at a specific time of day: a review. Journal of Strength and Conditioning Research 26, 1984-2005. |
Cook C.J., Kilduff L.P., Beaven C.M. (2014) Improving strength and power in trained athletes with 3 weeks of occlusion training. International Journal of Sports Physiology and Performance 9, 166-172. |
de Oliveira M.F., Caputo F., Corvino R.B., Denadai B.S. (2016) Short-term low-intensity blood flow restricted interval training improves both aerobic fitness and muscle strength. Scandinavian Journal of Medicine & Science in Sports 26, 1017-1025. |
Dill B.D., Costill D.L. (1974) Calculation of percentage changes in volume of blood, plasma, and red cell in dehydration. Journal of Applied Physiology 37, 247-248. |
Engel F.A., Ackermann A., Chtourou H., Sperlich B. (2018) High-Intensity Interval Training Performed by Young Athletes: A Systematic Review and Meta-Analysis. Frontiers in Physiology 9, 1012. |
Enoki T., Yoshida Y., Lally J., Hatta H., Bonen A. (2006) Testosterone increases lactate transport, monocarboxylate transporter (MCT) 1 and MCT4 in rat skeletal muscle. The Journal of physiology 577, 433-443. |
Faul F., Erdfelder E., Lang A.G., Buchner A. (2007) G*Power 3: A flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behavior Research Methods 39, 175-191. |
Halouani J., Chtourou H., Dellal A., Chaouachi A., Chamari K. (2014a) Physiological responses according to rules changes during 3 vs. 3 small-sided games in youth soccer players: stop-ball vs. small-goals rules. Journal of Sports Sciences 32, 1485-1490. |
Halouani J., Chtourou H., Gabbett T., Chaouachi A., Chamari K. (2014b) Small-sided games in team sports training: a brief review. Journal of Strength and Conditioning Research 28, 3594-3618. |
Helgerud J., Engen L.C., Wisloff U., Hoff J. (2001) Aerobic endurance training improves soccer performance. Medicine and Science in Sports and Exercise 33, 1925-1931. |
Hopkins W. (2006) Spreadsheets for analysis of controlled trials, with adjustment for a subject characteristic. Sportscience , 46-50. |
Inagaki Y., Madarame H., Neya M., Ishii N. (2011) Increase in serum growth hormone induced by electrical stimulation of muscle combined with blood flow restriction. European Journal of Applied Physiology 111, 2715-2721. |
Laurentino G., Ugrinowitsch C., Aihara A.Y., Fernandes A.R., Parcell A.C., Ricard M., Tricoli V. (2008) Effects of strength training and vascular occlusion. International Journal of Sports Medicine 29, 664-667. |
Lin H., Wang S.W., Wang R.Y., Wang P.S. (2001) Stimulatory effect of lactate on testosterone production by rat Leydig cells. Journal of Cellular Biochemistry 83, 147-154. |
Loenneke J.P., Fahs C.A., Rossow L.M., Abe T., Bemben M.G. (2012) The anabolic benefits of venous blood flow restriction training may be induced by muscle cell swelling. Medical Hypotheses 78, 151-154. |
Lu S.S., Lau C.P., Tung Y.F., Huang S.W., Chen Y.H., Shih H.C., Tsai S.C., Lu C.C., Wang S.W., Chen J.J., Chien E.J., Chien C.H., Wang P.S. (1997) Lactate and the effects of exercise on testosterone secretion: evidence for the involvement of a cAMP-mediated mechanism. Medicine and Science in Sports and Exercise 29, 1048-1054. |
Naser N., Ali A., Macadam P. (2017) Physical and physiological demands of futsal. Journal of Exercise Science and Fitness 15, 76-80. |
Park S., Kim J.K., Choi H.M., Kim H.G., Beekley M.D., Nho H. (2010) Increase in maximal oxygen uptake following 2-week walk training with blood flow occlusion in athletes. European Journal of Applied Physiology 109, 591-600. |
Paton C.D., Addis S.M., Taylor L.A. (2017) The effects of muscle blood flow restriction during running training on measures of aerobic capacity and run time to exhaustion. European Journal of Applied Physiology 117, 2579-2585. |
Pierce J.R., Clark B.C., Ploutz-Snyder L.L., Kanaley J.A. (2006) Growth hormone and muscle function responses to skeletal muscle ischemia. Journal of Applied Physiology 101, 1588-1595. |
Pope Z.K., Willardson J.M., Schoenfeld B.J. (2013) Exercise and blood flow restriction. Journal of Strength and Conditioning Research 27, 2914-2926. |
Reeves G.V., Kraemer R.R., Hollander D.B., Clavier J., Thomas C., Francois M., Castracane V.D. (2006) Comparison of hormone responses following light resistance exercise with partial vascular occlusion and moderately difficult resistance exercise without occlusion. Journal of Applied Physiology 101, 1616-1622. |
Renzi C.P., Tanaka H., Sugawara J. (2010) Effects of leg blood flow restriction during walking on cardiovascular function. Medicine and Science in Sports and Exercise 42, 726-732. |
Sareen P., Saxena K., Sareen B., Taneja B. (2012) Comparison of arm and calf blood pressure. Indian Journal of Anaesthesia 56, 83-85. |
Scott B.R., Peiffer J.J., Goods P.S.R. (2017) The Effects of Supplementary Low-Load Blood Flow Restriction Training on Morphological and Performance-Based Adaptations in Team Sport Athletes. Journal of Strength and Conditioning Research 31, 2147-2154. |
Stallknecht B., Vissing J., Galbo H. (1998) Lactate production and clearance in exercise. Effects of training. A mini-review. Scandinavian Journal of Medicine & Science in Sports 8, 127-131. |
Takano H., Morita T., Iida H., Asada K., Kato M., Uno K., Hirose K., Matsumoto A., Takenaka K., Hirata Y., Eto F., Nagai R., Sato Y., Nakajima T. (2005a) Hemodynamic and hormonal responses to a short-term low-intensity resistance exercise with the reduction of muscle blood flow. European Journal of Applied Physiology 95, 65-73. |
Takano H., Morita T., Iida H., Kato M., Uno K., Hirose K., Matsumoto A., Takenaka K., Hirata Y., Furuichi T., Eto F., Nagai R., Sato Y., Nakajima T. (2005b) Effects of low-intensity "KAATSU" resistance exercise on hemodynamic and growth hormone responses. International Journal of KAATSU Training Research 1, 13-18. |
Takarada Y., Nakamura Y., Aruga S., Onda T., Miyazaki S., Ishii N. (2000) Rapid increase in plasma growth hormone after low-intensity resistance exercise with vascular occlusion. Journal of Applied Physiology 88, 61-65. |
Tanimoto M., Madarame H., Ishii N. (2005) Muscle oxygenation and plasma growth hormone concentration during and after resistance exercise: Comparison between "KAATSU" and other types of regimen. International Journal of KAATSU Training Research 1, 51-56. |
Teixeira E.L., Barroso R., Silva-Batista C., Laurentino G.C., Loenneke J.P., Roschel H., Ugrinowitsch C., Tricoli V. (2018) Blood flow restriction increases metabolic stress but decreases muscle activation during high-load resistance exercise. Muscle & Nerve 57, 107-111. |
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