Фізіологічні та біомеханічні дослідження спеціальної підготовленості та змагальної діяльності веслувальників на байдарках

Розробка методики індивідуального оцінювання спеціальної підготовленості та змагальної діяльності веслувальників на байдарках високої кваліфікації. Виявлення причин виникнення помилок в техніці веслування, які істотно впливають на спортивний результат.

Рубрика Педагогика
Вид статья
Язык украинский
Дата добавления 07.09.2024
Размер файла 309,2 K

Отправить свою хорошую работу в базу знаний просто. Используйте форму, расположенную ниже

Студенты, аспиранты, молодые ученые, использующие базу знаний в своей учебе и работе, будут вам очень благодарны.

8. Coelho A.B., et al. Prediction of simulated 1000 m kayak ergometer performance in young athletes. Frontiers in Public Health, 2021, 8, 526477.

9. Diachenko A., Shkrebtii Iu., Jia Guo. Specific characteristics of special work capacity functional provision in kayakers and canoeists. Theory and Methods of Physical Education and Sports, 2020, 2, 42-46.

10. Diachenko A., Rusanova O., Guo Pengcheng, Kong Xianglin, Huang Zijian, Guo Jia. Characteristics of the special physical fitness of paddlers at a distance of 200 m. Teoria ta Metodika Fizicnogo Vihovanna, 2021, 21, 1, 43-49.

11. Diachenko A., Rusanova O., Huang Zijian, Gao Xueyan, Guo Jia, Chenqing Ye. Functional and physical capacity indicators of kayakers racing 1000, 500, and 200 m distances: a randomized study. Journal of Physical Education and Sport, 2021, 21, 3, 1325-1330.

12. Fedorchuk S., Kravchenko V., Fibakh K., Lysenko O., Shynkaruk O. State of neurodynamic functions and dynamic muscular endurance of skilled rowers. Sports Medicine, Physical Therapy and Occupational Therapy, 2021, 1, 128-133.

13. Fernandes R.A., Lopez-Plaza D., Correas-Gomez L., Gomes B.B., Alacid F. The importance of biological maturation and years of practice in kayaking performance. International Journal of Environmental Research and Public Health, 2021, 18, 16, 8322.

14. Fontes E.B., Borges T.O., Altimari L.R., Melo J.C., Okano A.H., Cyrino E.S. Influencia do numero de coordenadas e da selegao de distancias na determinagao da velocidade critica na canoagem de velocidade. Revista Brasileira de Ciencia a Movimento, 2002, 10, 161.

15. Guevara-Perez, Juan Carlos et al. Raiders of the Olympic Values: Perception of the development of Women's canoeing in Spain for Tokyo 2021. International Journal of Environmental Research and Public Health, 2022, 19, 11, 6909.

16. Hagner-Derengowska M., Hagner W., Zubrzycki I. et al. Body structure and composition of canoeists and kayakers: Analysis of junior and teenage Polish national canoeing team. Biology of Sport, 2014, 31, 4, 323-326.

17. Hartmann U., Mader A. Modeling metabolic conditions in Kayak through post-exercise simulation. FISA coach, 1993, 4, 4, 1-15.

18. Hill D.W. The critical power concept: a review. Sport Medicine, 1993, 16(4), 237-254.

19. Ieremenko N., Shynkaruk O., Moseychuk Yu. et al. Analysis of main ergometric parameters of elite kayak athletes specialized in different distance events. Sport Mont, 2021, 19, 2, 3-7.

20. Jones M., Wilkerson D.P., Vanhatalo A., Burnley M. Influence of pacing strategy on O2 uptake and exercise tolerance. Scandinavian Journal of Medicine and Science in Sports, 2002, 18(5), 615-626.

21. Kolumbet A.N., Dudorova L.Y., Dovgych A.A., Ivaschenko E.A., Melnik A.A., Nichiporenko I.V., Suprunenko M.V. Improvement of cyclist pedaling technique by studying their individual differences. Journal of Physical Education and Sport, 2019, 19(3), 229, 1577-1584.

22. Kolumbet A.N., Maximovich N.Y., Korop M.Y., Gamov V.G., Bakanychev O.V. Peculiarities of cyclists' respiratory adaptation to strenuous muscular activity in different training periods. Journal of Physical Education and Sport, 2022, 22 (3), 92, 732740

23. Kolumbet A.N., Babyna N.A., Natroshvili S.G., Maximovich N.Y., Korop M.Y. Express control of aerobic and anaerobic metabolism of athletes in cyclic sports events. Journal of Physical Education and Sport, 2022, 22(5), 149, 1190-1196.

24. Lopez-Plaza D., Alacid F., Muyor J.M., Lopez-Minarro P.A. Sprint kayaking and canoeing performance prediction based on the relationship between maturity status, anthropometry and physical fitness in young elite paddlers. Journal of Sports Sciences, 2017, 35, 11, 1083-1090.

25. Lopez-Plaza D., et al. Morphological and physical fitness profile of young female sprint kayakers. Journal of Strength and Conditioning Research, 2019, 33, 7, 1963-1970.

26. Michael J.S., Rooney K.B., Smith R. The Metabolic demands of kayaking: a review. Journal of Sports Science and Medicine, 2008, 7(1), 1-7.

27. Mischenko V.S., Monogarov V.D. Phisiology del deportista. Editorial Paidotribo, 1995.

28. Mishchenko V., Suchanowski O., Shynkaruk O. et al. Individualities of cardiorespiratory responsiveness to shifts in respiratory homeostasis and physical exercise in homogeneous groups of high-performance athletes. Baltic Journal of Health and Physical Activity, 2010, 1, 13-29.

29. Mishchenko V.S., Suchanowski A. Athlete's endurance and fatigue characteristics related to adaptability of specific cardiorespiratory reactivity. Gdansk, AWFIS, 2010.

30. Morton R.H., Billat V. Maximal endurance time at VO?max. Medicine and Science in Sports & Exercise, 2000, 32, 1496-504.

31. Nakamura F.Y., Borges T.O., Sales O.R., Cyrino E.S., Kokubun E. Estimativa del costo energetico y contribution de las diferentes vias metabolicas en el canotage de velocidad. Revista Brasileira de Medicina do Esporte, 2004, 10, 17-29.

32. Nikonorov A. Power development in sprint canoeing. In: Isorna Folgar M, et al. Training Sprint Canoe. Editora, 2015, 169-183.

33. Papandreou A., Philippou A., Zacharogiannis E., Maridaki M. Physiological adaptations to high-intensity interval and continuous training in kayak athletes. Journal of Strength and Conditioning Research, 2020, 34, 8, 2258-2266.

34. Paquette M., Bieuzen F., Billaut F. Muscle oxygenation rather than VO?max as a strong predictor of performance in sprint canoe-kayak. International Journal of Sports Physiology and Performance, 2018, 1-9.

35. Pool D.C., Burnley M., Vanhatalo A., Rossiter H.B., Jones A.M. Critical power: an important fatigue threshold in exercise physiology. Medicine and Science in Sports and Exercise, 2016, 48(11), 2320-34.

36. Rosdahl H.G., Gullstrand L. Evaluation of the Oxycon Mobile metabolic system against the Douglas bag method. European Journal of Applied Physiology, 2009, 109(2), 159-171.

37. Sheykhlouvand M., Khalili E., Gharaat M., Arazi H., Khalafi M., Tarverdizadeh B. Practical model of low-volume paddling-based sprint interval training improves aerobic and anaerobic performances in professional female canoe polo athletes. Journal of Strength and Conditioning Research, 2018, 32, 8, 2375-2382.

38. Shynkaruk O., Taibolina L. Functional condition of cardiovascular system of highly skilled rowers in the process of intensive competitive activity. Sports Medicine, Physical Therapy and Occupational Therapy, 2020, 1, 49-60.

39. Waylung W., Rusanova O., Diachenko A. Control for functional support of special work capacity of skilled rowers with account for specialization n kayaking and canoeing. Theory and Methods of Physical Education and Sports, 2019, 1, 92-100.

40. Withers R.T., Ploeg G., Finn J.P. Oxygen defi cits incurred during 45, 60, 75 and 90-s maximal cycling on an air-bra ked ergometer. European Journal of Applied Physiology, 1993, 67(2), 185-91.

41. Yang M.T., Lee M.M., Hsu S.C., Chan K.H. Effects of high-intensity interval training on canoeing performance. European Journal of Sport Science, 2017, 17, 7, 814-820.

42. Zamparo P., Capelli C., Guerrini G. Energetics of kayaking at submaximal andmaximal speeds. European Journal of Applied Physiology and Occupational Physiology, 1999, 80, 542-548.

Размещено на Allbest.Ru

...

Подобные документы

Работы в архивах красиво оформлены согласно требованиям ВУЗов и содержат рисунки, диаграммы, формулы и т.д.
PPT, PPTX и PDF-файлы представлены только в архивах.
Рекомендуем скачать работу.