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Physical and physiological profile of Iranian world-class karate athletes


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1. Ackland T.R., B. Elliott, J. Bloomfield (2009) Applied anatomy and biomechanics in sport. Hum. Kinet., pp. 98.Search in Google Scholar

2. Andreato L.V., S.F. de Moraes, T.L. de Moraes Gomes, J.D.C. Esteves, T.V. Andreato, E. Franchini (2011) Estimated aerobic power, muscular strength and flexibility in elite Brazilian Jiu-Jitsu athletes. Sci. Sports, 26(6): 329-337. DOI: 10.1016/j.scispo.2010.12.015.10.1016/j.scispo.2010.12.015Search in Google Scholar

3. Baker J.S., W. Bell (1990) Energy-expenditure during simulated karate competition. J. Hum. Mov. Stud., 19(2): 69-74.Search in Google Scholar

4. Baumgartner T.A., A.S. Jackson, M.T. Mahar, D.A. Rowe (2015) Measurement for evaluation in kinesiology. Jones & Bartlett Publishers, pp. 268.Search in Google Scholar

5. Beekley M.D., T. Abe, M. Kondo, T. Midorikawa, T. Yamauchi (2006) Comparison of normalized maximum aerobic capacity and body composition of sumo wrestlers to athletes in combat and other sports. J. Sports Sci. Med., 5(CSSI): 13-20.Search in Google Scholar

6. Beneke R., T. Beyer, C. Jachner, J. Erasmus, M. Hütler (2004) Energetics of karate kumite. Eur. J. Appl. Physiol., 92(4-5): 518-523. DOI: 10.1007/s00421-004-1073-x.10.1007/s00421-004-1073-x15138826Search in Google Scholar

7. Bouhlel E., A. Jouini, N. Gmada, A. Nefzi, K.B. Abdallah, Z. Tabka (2006) Heart rate and blood lactate responses during Taekwondo training and competition. Sci. Sports, 21(5): 285-290. DOI: 10.1016/j.scispo.2006.08.003.10.1016/j.scispo.2006.08.003Search in Google Scholar

8. Brzycki M. (1993) Strength testing - predicting a one-rep max from reps-to-fatigue. J. Phys. Educ. Recreat. Dance, 64(1): 88-90. DOI: 10.1080/07303084.1993.10606684.10.1080/07303084.1993.10606684Search in Google Scholar

9. Butios S., N. Tasika (2007) Changes in heart rate and blood lactate concentration as intensity parameters during simulated Taekwondo competition. J. Sports Med. Phys. Fit., 47(2): 179-185.Search in Google Scholar

10. Carter J.E.L. (2002) The Heath-Carter anthropometric somatotype. Instruction manual. San Diego: USA Department of Exercise and Nutritional Sciences.Search in Google Scholar

11. Chaabène H., Y. Hachana, E. Franchini, B. Mkaouer, K. Chamari (2012) Physical and physiological profile of elite karate athletes. Sports Med., 42(10): 829-843. DOI: 10.1007/BF03262297.10.1007/BF0326229722901041Search in Google Scholar

12. Chaabene H., E. Franchini, S. Sterkowicz, M. Tabben, Y. Hachana, K. Chamari (2015) Physiological responses to karate specific activities. Sci. Sports, 30(4): 179-187. DOI: 10.1016/j.scispo.2015.03.002.10.1016/j.scispo.2015.03.002Search in Google Scholar

13. Costill D.L., J.H. Wilmore, W.L. Kenney (2008) Physiology of sport and exercise. Hum. Kinet., pp. 361.Search in Google Scholar

14. Cureton K.J., P.B. Sparling (1980) Distance running performance and metabolic responses to running in men and women with excess weight experimentally equated. Med. Sci. Sports Exerc., 12(4): 288-294.Search in Google Scholar

15. De Lorenzo A., I. Bertini, L.I.E. Pagliato (2000) Body composition measurement in highly trained male athletes: a comparison of three methods. J. Sports Med. Phys. Fit., 40(2): 178-183.Search in Google Scholar

16. Doria C., A. Veicsteinas, E. Limonta, M.A. Maggioni, P. Aschieri, F. Eusebi, G. Fano, T. Pietrangelo (2009) Energetics of karate (kata and kumite techniques) in toplevel athletes. Eur. J. Appl. Physiol., 107(5): 603. DOI: 10.1007/s00421-009-1154-y.10.1007/s00421-009-1154-y19711097Search in Google Scholar

17. Ferreir M.A.R., A.V. Brito (2010) Electromechanical delay in ballistic movement of superior limb: comparison between karate athletes and nonathletes. Percept. Motor Skills, 111(3): 722-734.Search in Google Scholar

18. Franchini E., M.Y. Takito, M.A.P.D.M. Kiss, S. Strerkowicz (2005) Physical fitness and anthropometrical differences between elite and non-elite judo players. Biol. Sport, 22(4): 315-328.Search in Google Scholar

19. Fritzsche J., C. Raschka (2007) Sports anthropological investigations on somatotypology of elite karateka. Anthropologischer Anzeiger; Bericht uber die biologischanthropologische Literatur, 65(3): 317-329.Search in Google Scholar

20. Giampietro M., A. Pujia, I. Bertini (2003) Anthropometric features and body composition of young athletes practicing karate at a high and medium competitive level. Acta Diabetol., 40(1): 145-148. DOI: 10.1007/s00592-003-0049-3.10.1007/s00592-003-0049-314618456Search in Google Scholar

21. Gualdi-Russo E., I. Graziani (1993) Anthropometric somatotype of Italian sport participants. J. Sports Med. Phys. Fit., 33(3): 282-291.Search in Google Scholar

22. Iide K., H. Imamura, Y. Yoshimura, A. Yamashita, K. Miyahara, N. Miyamoto, C. Moriwaki (2008) Physiological responses of simulated karate sparring matches in young men and boys. J. Strength Cond. Res., 22(3): 839-844. DOI: 10.1519/JSC.0b013e31816a5af6.10.1519/JSC.0b013e31816a5af618438232Search in Google Scholar

23. Imamura H., Y. Yoshimura, K. Uchida, S. Nishimura, A.T. Nakazawa (1998) Maximal oxygen uptake, body composition and strength of highly competitive and novice karate practitioners. Appl. Hum. Sci., 17(5): 215-218. DOI: 10.2114/jpa.17.215.10.2114/jpa.17.2159844250Search in Google Scholar

24. Impellizzeri F.M., S.M. Marcora (2007) The physiology of mountain biking. Sports Med., 37(1): 59-71. DOI: 10.2165/00007256-200737010-00005.10.2165/00007256-200737010-0000517190536Search in Google Scholar

25. Jackson A.S., M.L. Pollock (1978) Generalized equations for predicting body density of men. Br. J. Nutr., 40(03): 497-504.Search in Google Scholar

26. Katić R., S. Blažević, S. Krstulović, R. Mulić (2005) Morphological structures of elite karateka and their impact on technical and fighting efficiency. Coll. Antropol., 29(1): 79-84.Search in Google Scholar

27. Kirk C. (2016) the influence of age and anthropometric variables on winning and losing in professional mixed martial arts. Facta Univ., Series: Phys. Educ. Sport, 14(2): 227-236.10.7287/peerj.preprints.2380v1Search in Google Scholar

28. Macan J., D. Bundalo-Vrbanac, G. Romić (2006) Effects of the new karate rules on the incidence and distribution of injuries. Br. J. Sports Med., 40(4): 326-330. DOI: 10.1136/bjsm.2005.022459.10.1136/bjsm.2005.022459257753116556787Search in Google Scholar

29. Marfell-Jones M., T. Olds, A. Stewart, L. Carter (2006) International Standards for Anthropometric Assessment. Potchesfstroom: International Society for the Advancement of Kinanthropometry.10.4324/9780203970157Search in Google Scholar

30. Nessel, E.H. (2004) The physiology of aging as it relates to sports. J. Am. Med. Athletic Assoc., 17(2): 12-18.Search in Google Scholar

31. Noorul H.R., W. Pieter, Z.Z. Erie (2008) Physical fitness of recreational adolescent taekwondo athletes. Brazilian J. Biomotr., 2(4): 230-240.Search in Google Scholar

32. Norton K., T. Olds (1996) Anthropometrica: a textbook of body measurement for sports and health courses. UNSW press, pp. 231.Search in Google Scholar

33. Ravier G., B. Dugue, F. Grappe, J.D. Rouillon (2006) Maximal accumulated oxygen deficit and blood responses of ammonia, lactate and pH after anaerobic test: a comparison between international and national elite karate athletes. Int. J. Sports Med., 27(10): 810-817. DOI: 10.1055/s-2005-872965.10.1055/s-2005-87296516586323Search in Google Scholar

34. Ravier G., F. Grappe, J.D. Rouillon (2004) Application of force-velocity cycle ergometer test and vertical jump tests in the functional assessment of karate competitor. J. Sports Med. Phys. Fit., 44(4): 349-355.Search in Google Scholar

35. Rittweger J., A. Kwiet, D. Felsenberg (2004) Physical performance in aging elite athletes-Challenging the limits of Physiology. J. Musculoskelet. Neuronal Interact., 4(2): 159-160.Search in Google Scholar

36. Roschel H., M. Batista, R. Monteiro, R.C. Bertuzzi, R. Barroso, I. Loturco, C. Ugrinowitsch, V. Tricoli, E. Franchini (2009) Association between neuromuscular tests and kumite performance on the Brazilian Karate National Team. J. Sports Sci. Med., 8(Special Issue 3): 20-24.Search in Google Scholar

37. Siri W.E. (1956) The gross composition of the body. Adv. Biol. Med. Phys., 4: 239-280.Search in Google Scholar

38. Smith M.S. (2006) Physiological profile of senior and junior England international amateur boxers. J. Sports Sci. Med., 5(CSSI): 74-89.Search in Google Scholar

39. Sterkowicz-Przybycień K.L. (2010) Body composition and somatotype of the top of polish male karate contestants. Biol. Sport, 27(3): 195-201.10.5604/20831862.919339Search in Google Scholar

40. Baker J.S., B. Davies (2006) Variation in resistive force selection during brief high intensity cycle ergometry: implications for power assessment and production in elite karate practitioners. J. Sports Sci. Med., 5: 42-46.Search in Google Scholar

41. Vingren J.L., W.J. Kraemer, N.A. Ratamess, J.M. Anderson, J.S. Volek, C.M. Maresh (2010) Testosterone physiology in resistance exercise and training. Sports Med., 40(12): 1037-1053. DOI: 10.2165/11536910-000000000-00000.10.2165/11536910-000000000-0000021058750Search in Google Scholar

42. Yoon J. (2002) Physiological profiles of elite senior wrestlers. Sports Med., 32(4): 225-233. DOI: 10.2165/00007256-200232040-00002.10.2165/00007256-200232040-0000211929352Search in Google Scholar

43. Zehr E.P., D.G. Sale, J.J. Dowling (1997) Ballistic movement performance in karate athletes. Med. Sci. Sports Exerc., 29(10): 1366-1373. DOI: 10.1097/00005768-199710000-00014.10.1097/00005768-199710000-000149346169Search in Google Scholar

eISSN:
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Language:
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Journal Subjects:
Medicine, Basic Medical Science, other, Clinical Medicine, Public Health, Sports and Recreation, Physical Education