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1. Ji L.L. (1999). Antioxidants and oxidative stress in exercise. Proceedings of the Society for Experimental Biology and Medicine 222, 283-292.Search in Google Scholar

2. Finaud J., Lac G., Filaire E. (2006). Oxidative stress: Relationship with exercise and training. Sports Medicine 36, 327-358.10.2165/00007256-200636040-00004Search in Google Scholar

3. Taghiyar M., Darvishi L., Askari G., Feizi A., Hariri M., Mashhadi N.S. et al. (2013). The effect of vitamin C and E supplementation on muscle damage and oxidative stress in female athletes: A clinical trial. International Journal of Preventive Medicine 4(Suppl 1), S16-S23.Search in Google Scholar

4. Yardan E. (2011). Serum paraoxonase, arylesterase, total antioxidant capacity, total oxidant capacity and PON1-Q192R phenotype relations in aortic and mitral valve diseases. Doctoral thesis, Dicle University Institution of Health Sciences, Diyarbakir. [in Turkish]Search in Google Scholar

5. Esposito F., Impellizzeri F.M., Margonato V., Vanni R., Pizzini G., Veicsteinas A. (2004). Validity of heart rate as an indicator of aerobic demand during soccer activities in amateur soccer players. European Journal of Applied Physiology 93(1-2), 167-172.10.1007/s00421-004-1192-4Search in Google Scholar

6. Akgun N. (1989). Exercise Physiology II. İzmir: Başbakanlık Gençlik ve Spor Genel Müdürlüğü Yayınları. [in Turkish]Search in Google Scholar

7. Ocak Y., Tortop Y. (2013). Examining the effects of folk dance exercises on some physical fitness parameters in women. Spor ve Performans Araştırmaları Dergisi 4(1), 46-54.Search in Google Scholar

8. Gerek Z. (2007). Comparison of the physical fitness levels of folk dance and sports students using Eurofit. Ataturk University Beden Eğitimi ve Spor Bilimleri Dergisi 9(1), 11-21. [in Turkish]Search in Google Scholar

9. Karacabey K., Durgun R., Sonmez E., Adilogulları I., Ozmerdivenli R. (2008). Determination of the anthropometric measurements of dancers from the Halay and Horon regions. Doğu Anadolu Bölgesi Araştırmaları 6(3), 56-61. [in Turkish]Search in Google Scholar

10. Rodrigues-Krause J., Krause M., Cunha G.D.S., Perin D., Martins J.B., Alberton C.L. et al. (2014). Ballet dancers’ cardiorespiratory, oxidative and muscle damage responses to classes and rehearsals. European Journal of Sport Science 14(3), 199-208.10.1080/17461391.2013.777796Search in Google Scholar

11. Ratamess N.A., American College of Sports Medicine. (2012). ACSM’s foundations of strength training and conditioning. Philadelphia, PA: Wolters Kluwer Health/Lippincott Williams & Wilkins.Search in Google Scholar

12. Dill D.B., Costill D.L. (1974). Calculation of percentage changes in volumes of blood, plasma, and red cells in dehydration. Journal of Applied Physiology 37, 247-248.10.1152/jappl.1974.37.2.247Search in Google Scholar

13. Unveren A. (2005). Determination of the physical activity level in the Turkish folk dance. Doctoral thesis, Gazi University Institution of Health Sciences, Ankara. [in Turkish]Search in Google Scholar

14. Karakus S., Kılınç F. (2006). Posture and sportive performance. Kastamonu Egitim Dergisi 14(1), 309-322. [in Turkish]Search in Google Scholar

15. Kurtisoglu B., Hatipoglu Ozcan G., Ozcan S. (2015). Obesity and dance: The case of folk dances. International Scientific Conference “Music and Dance”, 6-8 May 2015, Diyarbakır, Turkey: Dicle University. [in Turkish]Search in Google Scholar

16. Kaya I. (2011). Comparison of body fat percentage and the physiological properties of male folk dancers from the Zeybek and Horon groups. Selcuk University Beden Eğitimi ve Spor Bilimleri Dergisi 13(3), 378-382. [in Turkish]Search in Google Scholar

17. McCord P., Nichols J., Patterson P. (1989). The effect of low impact dance training on aerobic capacity, submaximal heart rates and body composition of college-aged females. The Journal of Sports Medicine and Physical Fitness 29(2), 184-188.Search in Google Scholar

18. da Silva C.C., Goldberg T.B.L., Soares-Caldeira L.F., Oliveira R.D.S., de Paula Ramos S., Nakamura F.Y. (2015). The effects of 17 weeks of ballet training on the autonomic modulation, hormonal and general biochemical profile of female adolescents. Journal of Human Kinetics 47(1), 61-71.10.1515/hukin-2015-0062Search in Google Scholar

19. Maciejczyk M., Fec A. (2013). Evaluation of aerobic capacity and energy expenditure in folk dancers. Human Movement 14(1), 76-81.10.2478/humo-2013-0007Search in Google Scholar

20. Macura M., Pešić K., Đorđević-Nikić M., Stojiljković S., Dabović M. (2007). Morphological characteristics and functional abilities of an elite folk ensemble dancer. Physical Culture 61(1-2), 112-117.Search in Google Scholar

21. Liiv H., Jürimäe T., Mäestu J., Purge P., Hannus A., Jürimäe J. (2014). Physiological characteristics of elite dancers of different dance styles. European Journal of Sport Science 14(suppl. 1), S429-S436.10.1080/17461391.2012.711861Search in Google Scholar

22. Ji L.L. (1995). Exercise and oxidative stress: Role of the cellular antioxidant systems. Exercise and Sport Sciences Reviews 23, 135-166.Search in Google Scholar

23. Kim J.R., Oberman A.L., Fletcher G.F. (2001). Effect of exercise intensity and frequency on lipid levels in men with coronary heart disease: Training level comparison trial. American Journal of Cardiology 87, 942-949.10.1016/S0002-9149(01)01425-4Search in Google Scholar

24. Tanasescu M., Leitzmann M.F., Rimm E.B., Willett W.C., Stampfer M.J., Hu F.B. (2002). Exercise type and intensity in relation to coronary heart disease in men. The Journal of the American Medical Association 288, 1994-2000.10.1001/jama.288.16.199412387651Search in Google Scholar

25. Gursoy S. (2008). Regular exercise effects on the total antioxidant capacity and serum lipid profile of students. Doctoral thesis, Inonu University Institution of Health Sciences, Malatya. [in Turkish]Search in Google Scholar

26. American College of Sports Medicine. (1998). The recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness, and flexibility in healthy adults. Medicine and Science in Sports and Exercise 30(6), 265-274.Search in Google Scholar

27. Onat A. (2000). Physical activity in Turkish adults and its effects on the main risk factors. In A. Onat (ed.), TEKHARF: Heart Health, Heart Disease and Risk Profile in Turkish adults. Istanbul: Ohan Matbaacılık Ltd. [in Turkish]Search in Google Scholar

28. Yuksel H. (2001). When should fibrates be used? Turk Kardiyoloji Dernegi Arsivi 29, 715-722. [in Turkish]Search in Google Scholar

29. Semin I., Kayatekin M., Oktay G., Selamoglu S., Turgay F., Acarbay S. et al. (1993). The effect of 8-week football training on footballers’ haematological parameters related to iron and body composition. Hacettepe Journal of Sports Sciences (4)3, 3-12. [in Turkish]Search in Google Scholar

30. Arıkan I., Metintas S., Kalyoncu C. (2008). Comparison of two different methods of assessing the level of physical activity in young adults. Osmangazi Tıp Dergisi 30(1), 19-28. [in Turkish]Search in Google Scholar

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Medicine, Clinical Medicine, Public Health, Sports and Recreation, other