 Ainsworth B.E., Haskell W.L., Herrmann S.D., Meckes N., Bassett D.R., Tudor-Locke C., Greer J.L., Vezina J., Whitt-Glover M.C., Leon A.S. (2011) 2011 Compendium of Physical Activities: a second update of codes and MET values. Medicine & Science in Sports & Exercise 43, 1575-1581. |
 Andersen L.L., Andersen J.L., Zebis M.K., Aagaard P. (2010) Early and late rate of force development: differential adaptive responses to resistance training?. Scandinavian Journal of Medicine & Science in Sports 20, 162-169. |
 Chen C.H., Huang L.Y., Lee K.Y., Wu C.D., Chiang H.C., Chen B.Y., Chin W.S., Pan S.C., Guo Y.L. (2019) Effects of PM2.5 on Skeletal Muscle Mass and Body Fat Mass of the Elderly in Taipei, Taiwan. Scientific Reports 9, 11176. |
 Coban O., Yildirim N.U., Yasa M.E., Akinoglu B., Kocahan T. (2021) Determining the number of repetitions to establish isokinetic knee evaluation protocols specific to angular velocities of 60°/second and 180°/second. Journal of Bodywork and Movement Therapies 25, 255-260. |
 Curty V.M., Melo A.B., Caldas L.C., Guimarães-Ferreira L., de Sousa N.F., Vassallo P.F., Vasquez E.C., Barauna V.G. (2018) Blood flow restriction attenuates eccentric exercise-induced muscle damage without perceptual and cardiovascular overload. Clinical Physiology and Functional Imaging 38, 468-476. |
 de Oliveira C.A., Luciano E., Marcondes M.C., de Mello M.A. (2007) Effects of swimming training at the intensity equivalent to aerobic/anaerobic metabolic transition in alloxan diabetic rats. Journal of Diabetes and its Complications 21, 258-264. |
 Docherty D., Sporer B. (2000) A proposed model for examining the interference phenomenon between concurrent aerobic and strength training. Sports Medicine 30, 385-394. |
 Fahs C.A., Rossow L.M., Loenneke J.P., Thiebaud R.S., Kim D., Bemben D.A., Bemben M.G. (2012) Effect of different types of lower body resistance training on arterial compliance and calf blood flow. Clinical Physiology and Functional Imaging 32, 45-51. |
 Farup J., de Paoli F., Bjerg K., Riis S., Ringgard S., Vissing K. (2015) Blood flow restricted and traditional resistance training performed to fatigue produce equal muscle hypertrophy. Scandinavian Journal of Medicine & Science in Sports 25, 754-763. |
 Ferrari R., Fuchs S.C., Kruel L.F., Cadore E.L., Alberton C.L., Pinto R.S., Radaelli R., Schoenell M., Izquierdo M., Tanaka H., Umpierre D. (2016) Effects of Different Concurrent Resistance and Aerobic Training Frequencies on Muscle Power and Muscle Quality in Trained Elderly Men: A Randomized Clinical Trial. Aging and Disease 7, 697-704. |
 Ferraz R. B., Gualano B., Rodrigues R., Kurimori C. O., Fuller R., Lima F. R., DE Sá-Pinto A. L., Roschel H. (2018) Benefits of Resistance Training with Blood Flow Restriction in Knee Osteoarthritis. Medicine & Science in Sports & Exercise 50, 897-905. |
 García-Rodríguez P., Pecci J., Vázquez-González S., Pareja-Galeano H. (2023) Acute and Chronic Effects of Blood Flow Restriction Training in Physically Active Patients With Anterior Cruciate Ligament Reconstruction: A Systematic Review. Sports Health 9, 19417381231208636. |
 Han S., Kim N.R., Kang J.W., Eun J.S., Kang Y.M. (2021) Radial BMD and serum CTX-I can predict the progression of carotid plaque in rheumatoid arthritis: a 3-year prospective cohort study. Arthritis Research & Therapy 23, 258. |
 Harper S.A., Roberts L.M., Layne A.S., Jaeger B.C., Gardner A.K., Sibille K.T., Wu S.S., Vincent K.R., Fillingim R.B., Manini T.M., Buford T.W. (2019) Blood-Flow Restriction Resistance Exercise for Older Adults with Knee Osteoarthritis: A Pilot Randomized Clinical Trial. Journal Clinical Medicine 8, 265. |
 Huang P.Y., Jankaew A., Lin C.F. (2021) Effects of Plyometric and Balance Training on Neuromuscular Control of Recreational Athletes with Functional Ankle Instability: A Randomized Controlled Laboratory Study. International Journal of Environmental Research and Public Health 18, 5269. |
 Javorský T., Saeterbakken A.H., Andersen V., Baláš J. (2023) Comparing low volume of blood flow restricted to high-intensity resistance training of the finger flexors to maintain climbing-specific strength and endurance: a crossover study. Frontiers in Sports and Active Living 5, 1256136. |
 Kang H. (2021) Sample size determination and power analysis using the G*Power software. Journal of Educational Evaluation for Health Professions 18, 17. |
 Kawano H., Tanaka H., Miyachi M. (2006) Resistance training and arterial compliance: keeping the benefits while minimizing the stiffening. Journal of Hypertension 24, 1753-1759. |
 Kishton R.J., Barnes C.E., Nichols A.G., Cohen S., Gerriets V.A., Siska P.J., Macintyre A.N., Goraksha-Hicks P., de Cubas A.A., Liu T., Warmoes M.O., Abel E.D., Yeoh A.E., Gershon T.R., Rathmell W.K., Richards K.L., Locasale J.W., Rathmell J.C. (2016) AMPK Is Essential to Balance Glycolysis and Mitochondrial Metabolism to Control T-ALL Cell Stress and Survival. Cell Metabolism 23, 649-662. |
 Kraemer W.J., Ratamess N.A., Flanagan S.D., Shurley J.P., Todd J.S., Todd T.C. (2017) Understanding the Science of Resistance Training: An Evolutionary Perspective. Sports Medicine 47, 2415-2435. |
 Litwin M., Obrycki Ł., Niemirska A., Sarnecki J., Kułaga Z. (2019) Central systolic blood pressure and central pulse pressure predict left ventricular hypertrophy in hypertensive children. Pediatric Nephrology 34, 703-712. |
 Lowe T.W., Tenan M.S., Shah K., Griffin L. (2023) Low-load blood flow restriction reduces time-to-minimum single motor unit discharge rate. Experimental Brain Research 241, 2795-2805. |
 Lundberg T.R., Feuerbacher J.F., Sünkeler M., Schumann M. (2022) The Effects of Concurrent Aerobic and Strength Training on Muscle Fiber Hypertrophy: A Systematic Review and Meta-Analysis. Sports Medicine 52, 2391-2403. |
 Miyachi M., Kawano H., Sugawara J., Takahashi K., Hayashi K., Yamazaki K., Tabata I., Tanaka H. (2004) Unfavorable effects of resistance training on central arterial compliance: a randomized intervention study. Circulation 110, 2858-2863. |
 Nystoriak M.A., Bhatnagar A. (2018) Cardiovascular Effects and Benefits of Exercise. Frontiers in Cardiovascular Medicine 5, 135. |
 Otsuki T., Namatame H., Yoshikawa T., Zempo-Miyaki A. (2020) Combined aerobic and low-intensity resistance exercise training increases basal nitric oxide production and decreases arterial stiffness in healthy older adults. Journal of Clinical Biochemistry and Nutrition 66, 62-66. |
 Ozaki H., Yasuda T., Ogasawara R., Sakamaki-Sunaga M., Naito H., Abe T. (2013) Effects of high-intensity and blood flow-restricted low-intensity resistance training on carotid arterial compliance: role of blood pressure during training sessions. European Journal of Applied Physiology 113, 167-174. |
 Rakobowchuk M., McGowan C.L., de Groot P.C., Bruinsma D., Hartman J.W., Phillips S.M., MacDonald M.J. (2005) Effect of whole body resistance training on arterial compliance in young men. Experimental Physiology 90, 645-651. |
 Richter E.A., Ruderman N.B. (2009) AMPK and the biochemistry of exercise: implications for human health and disease. Biochemical Journal 418, 261-275. |
 Schoenfeld B.J. (2010) The mechanisms of muscle hypertrophy and their application to resistance training. Journal of Strength and Conditioning Research 24, 2857-2872. |
 Scott B.R., Loenneke J.P., Slattery K.M., Dascombe B.J. (2016) Blood flow restricted exercise for athletes: A review of available evidence. Journal of Science and Medicine in Sport 19, 360-367. |
 Sillanpää E., Laaksonen D.E., Häkkinen A., Karavirta L., Jensen B., Kraemer W.J., Nyman K., Häkkinen K. (2009) Body composition, fitness, and metabolic health during strength and endurance training and their combination in middle-aged and older women. European Journal of Applied Physiology 106, 285-296. |
 Slysz J., Stultz J., Burr J.F. (2016) The efficacy of blood flow restricted exercise: A systematic review & meta-analysis. Journal of Science and Medicine in Sport 19, 669-675. |
 Suga T., Okita K., Takada S., Omokawa M., Kadoguchi T., Yokota T., Hirabayashi K., Takahashi M., Morita N., Horiuchi M., Kinugawa S., Tsutsui H. (2012) Effect of multiple set on intramuscular metabolic stress during low-intensity resistance exercise with blood flow restriction. European Journal of Applied Physiology 112, 3915-3920. |
 Takada S., Okita K., Suga T., Omokawa M., Kadoguchi T., Sato T., Takahashi M., Yokota T., Hirabayashi K., Morita N., Horiuchi M., Kinugawa S., Tsutsui H. (2012) Low-intensity exercise can increase muscle mass and strength proportionally to enhanced metabolic stress under ischemic conditions. Journal of Applied Physiology 113, 199-205. |
 Vechin F.C., Libardi C.A., Conceição M.S., Damas F.R., Lixandrão M.E., Berton R.P., Tricoli V.A., Roschel H.A., Cavaglieri C.R., Chacon-Mikahil M.P., Ugrinowitsch C. (2015) Comparisons between low-intensity resistance training with blood flow restriction and high-intensity resistance training on quadriceps muscle mass and strength in elderly. Journal of Strength and Conditioning Research 29, 1071-1076. |
 Vina J., Sanchis-Gomar F., Martinez-Bello V., Gomez-Cabrera M.C. (2012) Exercise acts as a drug; the pharmacological benefits of exercise. British Journal of Pharmacology 167, 1-12. |
 Wang Z., Ma H., Zhang W., Zhang Y., Youssef L., Carneiro M.A.S., Chen C., Wang D., Wang D. (2024) Effects of Functional Strength Training Combined with Aerobic Training on Body Composition, Physical Fitness, and Movement Quality in Obese Adolescents. Nutrients 16, 1434. |
 Wewege M.A., Desai I., Honey C., Coorie B., Jones M.D., Clifford B.K., Leake H.B., Hagstrom A.D. (2022) The Effect of Resistance Training in Healthy Adults on Body Fat Percentage, Fat Mass and Visceral Fat: A Systematic Review and Meta-Analysis. Sports Medicine 52, 287-300. |
 Wilson J.M., Marin P.J., Rhea M.R., Wilson S.M., Loenneke J.P., Anderson J.C. (2012) Concurrent training: a meta-analysis examining interference of aerobic and resistance exercises. Journal of Strength and Conditioning Research 26, 2293-2307. |
 Yasuda T., Ogasawara R., Sakamaki M., Bemben M.G., Abe T. (2011) Relationship between limb and trunk muscle hypertrophy following high-intensity resistance training and blood flow-restricted low-intensity resistance training. Clinical Physiology and Functional Imaging 31, 347-351. |
 Zoungas S., Asmar R.P. (2007) Arterial stiffness and cardiovascular outcome. Clinical and Experimental Pharmacology and Physiology 34, 647-651. |
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