intermittent hypoxic training on aerobic capacity and
endurance performance in cyclists. Journal of Sports
Science & Medicine 10, 175-183.
Faiss R., Girard O., Millet G.P. (2013a) Advancing
hypoxic training in team sports: from intermittent
hypoxic training to repeated sprint training in hypoxia.
British Journal of Sports Medicine 47, i45-i50.
Faiss R., Léger B., Vesin J.M., Fournier P.E., Eggel Y.,
Dériaz O., Millet G.P. (2013b) Significant molecular
and systemic adaptations after repeated sprint training
in hypoxia. PloS one 8, e56522. Galvin H.M., Cooke
K., Sumners D.P., Mileva K.N., Bowtell J.L. (2013)
Repeated sprint training in normobaric hypoxia.
British Journal of Sports Medicine 47, i74-i79.
Girard O., Brocherie F., Millet G.P. (2017) Effects of
altitude/hypoxia on single-and multiple-sprint
performance: a comprehensive review. Sports
Medicine. Epub ahead of print.
Hamlin M.J., Olsen P.D., Marshall H.C., Lizamore C.A.,
Elliot C.A. (2017) Hypoxic repeat sprint training
improves rugby player’s repeated sprint but not
endurance performance. Frontiers in Physiology 8, 24.
Gore CJ., Sharpe K., Garvican-Lewis LA., Humberstone
CE., Robertson EY., Wachsmuth NB., Clark SA.,
McLean BD., Friedmann-Bette B., Neya M.,
Pottgiesser T., Schumacher YO., Schmidt WF.
Altitude training and haemoglobin mass from carbon
monoxide rebreathing method determined by a meta-
analysis. Br J Sports Med. 2013;47:i31–i39.
Kim SH., Oh SD., Jeon WC. Effects of 4 week altitude
training to cardiovascular function, oxygen
transporting capacity in high school soccer player. Kor
J Sports Sci. 2009;18(4):1181–1192.
Kon M., Ikeda T., Homma T., Suzuki Y. (2012) Effects of
low-intensity resistance exercise under acute systemic
hypoxia on hormonal responses. The Journal of
Strength & Conditioning Research26, 611-617.
Kon M., Ohiwa N., Honda A., Matsubayashi T., Ikeda T.,
Akimoto T., Suzuki Y., Hirano Y., Russell A.P.
(2014) Effects of systemic hypoxia on human
muscular adaptations to resistance exercise training.
Physiological reports, 2, e12033.
Kuznetsova Z., Kuznetsov A., Mutaeva I., Khalikov G.,
Zakharova A., 2015. Athletes preparation based on a
complex assessment of functional state. In
Proceedings of the 3rd International Congress on Sport
Sciences Research and Technology support.
SCITEPRESS. P. 156-160 (Scopus)
Kuznetsov A., Mutaeva I., Kuznetsova Z., 2017.
Diagnostics of Functional State and Recerve Capacity
of young Athletes’ Organizm. In Proceedings of the
5th International Congress on Sport Sciences Research
and Technology support. SCITEPRESS. P. 111-115
(Scopus).
Manimmanakorn A., Hamlin M.J., Ross J.J., Taylor R.,
Manimmanakorn N. (2013) Effects of low-load
resistance training combined with blood flow
restriction or hypoxia on muscle function and
performance in netball athletes. Journal of Science and
Medicine in Sport 16, 337-342.
McLean B.D., Gore C.J., Kemp J. (2014) Application of
‘live low-train high’ for enhancing normoxic exercise
performance in team sport athletes. Sports Medicine
44, 1275-1287
Nishimura A., Sugita M., Kato K., Fukuda A., Sudo A.,
Uchida A. (2010) Hypoxia increases muscle
hypertrophy induced by resistance training.
International Journal of Sports Physiology and
Performance 5, 497-508.
Park H.Y., Sunoo S., Nam S.S. (2016) The effect of 4
weeks fixed and mixed intermittent hypoxic training
(IHT) on respiratory metabolic and acid-base response
of capillary blood during submaximal bicycle exercise
in male elite taekwondo players. Journal of Exerise
Nutrition and Biochemistry 20, 35-43.
Puype J., Van Proeyen K., Raymackers J.M., Deldicque
L., Hespel P. (2013) Sprint interval training in hypoxia
stimulates glycolytic enzyme activity. Medicine and
Science in Sports and Exercise 45, 2166-2174.
Park HY., Nam SS., Kim SH., Kim MJ., Sunoo S. Effects
of 10 weeks aerobic training in normobaric hypoxia on
improvement of body composition, physical fitness,
blood variables and vascular compliance. Kor J Exerc
Nutr. 2010;14(1):7–16
Scott B.R., Slattery K.M., Sculley D.V., Dascombe B.J.
(2014) Hypoxia and resistance exercise: a comparison
of localized and systemic methods. Sports Medicine
44, 1037-1054.
Vogt M., Hoppeler H. Is hypoxia training good for
muscles and exercise performance? Prog Cardiovasc
Dis. 2010;52:525–533. doi:
10.1016/j.pcad.2010.02.013.
Yoon JR., Lee MJ. Effects of sprint interval training on
blood variables, aerobic and anaerobic performance in
normobaric hypoxia. Kor J Sport Sci. 2014;25(4):890–
903.
icSPORTS 2018 - 6th International Congress on Sport Sciences Research and Technology Support
90