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Comparative Analysis of the Use of Moderate-Altitude Training by Top Russian and Chinese Athletes


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1. Chapman R.F., Stray-Gundersen J., Levine B.D. (1998). Individual variation in response to altitude training. Journal of Applied Physiology 85(4), 1448-1456. DOI: 10.1152/jappl.1998.85.4.1448.10.1152/jappl.1998.85.4.14489760340Open DOISearch in Google Scholar

2. Bakkman L., Sahlin K., Holmberg H.C., Tonkonogi M. (2007). Quantitative and qualitative adaptation of human skeletal muscle mitochondria to hypoxic compared with normoxic training at the same relative work rate. Acta Physiology (Oxford) 190, 243-251. DOI: 10.1111/j.1748-1716.2007.01683.x.10.1111/j.1748-1716.2007.01683.x17521315Open DOISearch in Google Scholar

3. Friedmann-Bette B. (2008). Classical altitude training. Scandinavian Journal of Medicine and Science in Sports 18 (1), 11-20. DOI: 10.1111/j.1600-0838.2008.00828.x.10.1111/j.1600-0838.2008.00828.x18665948Open DOISearch in Google Scholar

4. Bonetti D.L., Hopkins W.G. (2009). Sea-Level Exercise performance following adaptation to hypoxia. A meta-analysis. Sports Medicine 39 (2), 107-127. DOI: 10.2165/00007256-200939020-00002.10.2165/00007256-200939020-0000219203133Open DOISearch in Google Scholar

5. Millet G.P., Roels B., Schmitt L., Woorons X., Richalet J.P. (2009). Combining hypoxic methods for peak performance. Sports Medicine 40(1), 1-25. DOI: 10.2165/11317920-000000000-00000.10.2165/11317920-000000000-0000020020784Open DOISearch in Google Scholar

6. Vogt M., Hoppeler H. (2010). Is hypoxia training good for muscles and exercise performance? Progress in Cardiovascular Diseases 52, 525-533. DOI: 10.1016/j.pcad.2010.02.013.10.1016/j.pcad.2010.02.01320417346Open DOISearch in Google Scholar

7. Lundby C., Millet G.P., Calbet J.A., Bartsch P., Subudhi A.W. (2012). Does ‘altitude training’ increase exercise performance in elite athletes? British Journal of Sports Medicine 46(11), 792-795. DOI: 10.1136/bjsports-2012-091231.10.1136/bjsports-2012-09123122797528Open DOISearch in Google Scholar

8. Chapman R.F. (2013). The individual response to training and competition at altitude. British Journal of Sports Medicine 47(1), 40-44. DOI: 10.1136/bjsports-2013-092837.10.1136/bjsports-2013-092837390314224282206Search in Google Scholar

9. Chapman R.F., Stickford A.L., Lundby C., Levine B.D. (2014). Timing of return from altitude training for optimal sea level performance. Journal of Applied Physiology 116(7), 837-843. DOI: 10.1152/japplphysiol.00663.2013.10.1152/japplphysiol.00663.201324336885Open DOISearch in Google Scholar

10. Faiss R., Willis S., Born D.P., Spelich B., Vesin J.M., Holm-berg H.C. et al. (2015). Repeated double-poling sprint training in hypoxia by competitive cross-country skiers. Medicine and Science in Sports and Exercises 47(4), 809-817.10.1249/MSS.000000000000046425083727Search in Google Scholar

11. Bădău D., Bacârea A., Ungur R.N., Bădău A., Martoma A.M. (2016). Biochemical and functional modifications in biathlon athletes at medium altitude training. Revista Romana de Medicina de Laborator 24(3), 327-335.10.1515/rrlm-2016-0008Search in Google Scholar

12. Gore C.J. (2014). The challenge of assessing athlete performance after altitude training. Journal of Applied Physiology 116, 593-594. DOI: 10.1152/japplphysiol.00029.2014.10.1152/japplphysiol.00029.201424436300Open DOISearch in Google Scholar

13. Lewis N.A. (2015). Alterations in redox homeostasis in the elite endurance athlete. Sports Medicine 45(3), 379-409. DOI: 10.1007/s40279-014-0276-5.10.1007/s40279-014-0276-525319354Open DOISearch in Google Scholar

14. Murach K.A, Bagley J.R. (2016). Skeletal muscle hypertrophy with concurrent exercise training: Contrary evidence for an interference effect. Sports Medicine 46(8), 1029-39. DOI: 10.1007/s40279-016-0496-y.10.1007/s40279-016-0496-y26932769Search in Google Scholar

15. Chapman R.F.T., Karlsen, G.K., Resaland R.L., Ge M.P., Harber S. et al. (2014). Defining the “dose” of altitude training: how high to live for optimal sea level performance enhancement. Journal of Applied Physiology 116(6), 595-603. DOI: 10.1152/japplphysiol.00634.2013.10.1152/japplphysiol.00634.201324157530Open DOISearch in Google Scholar

16. Beattie K., Kenny I.C, Lyons M, Carson B.P. (2014). The effect of strength training on performance in endurance athletes. Sports Medicine 44(6), 845-865. DOI: 10.1007/s40279-014-0157-y.10.1007/s40279-014-0157-y24532151Open DOISearch in Google Scholar

17. Tønnessen E, Sylta Ø, Haugen T.A, Hem E, Svendsen I.S. et al. (2014) The road to gld: Training and peaking characteristics in the year prior to a gold medal endurance performance. PLoS ONE 9(7): e101796.10.1371/journal.pone.0101796Search in Google Scholar

18. Czuba М., Maszczyk A., Gerasimuk D., Roczniok R., Fidos-Czuba O., Zając A. et al (2014). The effects of hypobaric hypoxia on erythropoiesis, maximal oxygen uptake and energy cost of exercise under normoxia in elite biathletes Journal of Sports Science and Medicine 13, 912-920.Search in Google Scholar

eISSN:
2082-8799
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Clinical Medicine, Public Health, Sports and Recreation, other