- PII
- S3034615025020087-1
- DOI
- 10.7868/S3034615025020087
- Publication type
- Article
- Status
- Published
- Authors
- Volume/ Edition
- Volume 51 / Issue number 2
- Pages
- 120-130
- Abstract
- The study is devoted to the study of the effect of sports addiction (SA) on the effectiveness of pulmonary gas exchange during the period of physical activity deprivation 27 male athletes (middle-distance runners) aged 20 to 25 years during the period of physical deprivation (lasting 2 weeks) were examined. All athletes were tested using the following questionnaires: Exercise Addiction Inventory (EAI), Temperament - Formal Characteristics of Behavior (FCB-TI), and Eysenck Personality Inventory (EPG-R). As a test load, the subjects performed a hypoxic test (breathing with a gas mixture with 10% O2 for 10 min) with the recording of cardio-respiratory and gas exchange indicators on the Oxycon Pro@ ergospirometry system (Erich Jaeger) in the initial state, at 10 min of exposure and 5 min of recovery. SaO2 (%) was measured using the BCI Autocorr (USA) ear pulse oximeter. The results of the study did not show a relationship between temperament types and the level of SA, but found a relationship between the level of addiction and the “perseverance” scale of the FCB-TI questionnaire. It has been established that oxygen consumption during hypoxic exposure and recovery period in addictive athletes is higher than in non-addicts. The dependence of the efficiency of pulmonary gas exchange depending on the level of sports skill has been established. In high-class athletes, the level of addiction does not correlate with the cost of fan costs for obtaining 1 liter of O2 when performing hypoxic load, while in athletes of average sports qualification, the level of addiction directly correlates with the efficiency of pulmonary gas exchange. Thus, the factor of sports addiction affects the effectiveness of pulmonary gas exchange under conditions of hypoxia, mainly on low-skilled athletes.
- Keywords
- физическая нагрузка спортсмены аддикция упражнений гипоксия кардиореспираторная система потребление кислорода
- Date of publication
- 01.04.2025
- Year of publication
- 2025
- Number of purchasers
- 0
- Views
- 35
References
- 1. Marques A., Peralta M., Sarmento H. et al. Prevalence of risk for exercise dependence: A systematic review // Sports Med. 2019. V. 49. № 2. P. 319.
- 2. Shao Y., Zhang H., Zhang X. et al. Chinese version of exercise dependence scale-revised: psychometric analysis and exploration of risk factors // Front. Psychol. 2023. V. 14. P. 1309205.
- 3. Барабанщикова В.В., Климова О.А. Профессиональные деформации в спорте высших достижений // Национальный психологический журнал. 2015. № 2 (18). С. 3.
- 4. Uriegas N.A., Moore K., Torres-McGehee T.M. Prevalence and association of exercise dependence and eating disorder risk in collegiate student-athletes // J. Athl. Train. 2023. V. 58. № 10. P. 813.
- 5. Berczik K., Szabó A., Griffiths M.D. et al. Exercise addiction: Symptoms, diagnosis, epidemiology, and etiology // Subst. Use Misuse. 2012. V. 47. № 4. P. 403.
- 6. Tang C.S.K, Gan K.Q., Lui W.K. The associations between obsessive compulsive personality traits, self-Efficacy, and exercise addiction // Behav. Sci. (Basel). 2023. V. 13. № 10. P. 857.
- 7. Mónok K., Berczik K., Urbán R. et al. Psychometric properties and concurrent validity of two exercise addiction measures: A population wide study // Psychol. Sport Exerc. 2012. V. 13. № 6. P. 739.
- 8. Зинченко М.И., Гультяева В.В., Урюмцев Д.Ю., Кривощёков С.Г. Спортивная аддикция. Обзор литературы // Человек. Спорт. Медицина. 2021. Т. 21. № 4. С. 139.
- 9. Егоров А.Ю., Сабо А., Фельсендорфф О.В. Модели спортивной аддикции // Вопросы психологии. 2016. № 3. С. 96.
- 10. Пономарёв В.И. Аддикция упражнений и выраженность эмоционального неблагополучия у мужчин, регулярно подвергающих себя интенсивным физическим нагрузкам в форме бодибилдинга // Психiатрiя, неврологiя та медична психологiя. 2014. Т. 1. № 1 (1). С. 59.
- 11. Cook B., Luke R. Primary and secondary exercise dependence in a sample of cyclists // Int. J. Ment. Health Addiction. 2017. V. 15. № 2. P. 444.
- 12. Valenzuela P.L. and F. Arriba-Palomero. Risk of exercise addiction among male amateur triathletes and its relationship with training variables // Ricyde. Rev. Int. Cienc. Deporte. 2017. V. 13. № 48. P. 162.
- 13. Festino E., Papale O., Di Rocco F. et al. Effect of physical activity behaviors, team sports, and sitting time on body image and exercise dependence // Sports (Basel). 2024. V. 12. № 9. P. 260.
- 14. Krivoschekov S.G., Lushnikov O.N. The functional state of athletes addicted to exercises during exercise deprivation // J. Yoga Phys. Ther. 2018. V. 8. P. 288.
- 15. Lichtenstein M.B., Christiansen E., Elklit A. et al. Exercise addiction: A study of eating disorder symptoms, quality of life, personality traits and attachment styles // Psychiatry Res. 2014. V. 215. № 2. P. 410.
- 16. McNamara J., McCabe M.P. Striving for success or addiction? Exercise dependence among elite Australian athletes // J. Sports Sci. 2012. V. 30. № 8. P. 755.
- 17. Mayolas-Pi C., Simón-Grima J., Peñarrubia-Lozano C. et al. Exercise addiction risk and health in male and female amateur endurance cyclists // J. Behav. Addict. 2017. V. 6. № 1. P. 74.
- 18. Liu T., Shao M., Yin D. et al. The effect of badminton training on the ability of same-domain action anticipation for adult novices: Evidence from behavior and ERPs // Neurosci. Lett. 2017. V. 660. P. 6.
- 19. Li M.L., Nie J.S., Ren Y.J. Effects of exercise dependence on psychological health of chinese college students // Psychiatr. Danub. 2015. V. 27. № 4. P. 413.
- 20. Кожина К.Д., Зинченко М.И., Гультяева В.В. и др. Асимметрия экспрессии лицевых мышц и латеральные предпочтения рук и ног у подростков с разным уровнем физической активности // Комплексные исследования детства. 2024. Т. 6. № 1. С. 21.
- 21. Antunes H.K.M., Leite G.S.F., Lee K.S. et al. Exercise deprivation increases negative mood in exercise-addicted subjects and modifies their biochemical markers // Physiol. Behav. 2016. V. 156. P. 182.
- 22. Jee Y.S., Eun D. Exercise addiction and psycho-physiological health in korean collegiate students // Int. J. Ment. Health Addiction. 2018. V. 16. № 2. P. 451.
- 23. Weinstein A., Weinstein Y. Exercise addiction-diagnosis, bio-psychological mechanisms and treatment issues // Curr. Pharm. Des. 2014. V. 20. № 25. P. 4062.
- 24. Griffiths M.D., Szabo A., Terry A. The exercise addiction inventory: a quick and easy screening tool for health practitioners // Br. J. Sports Med. 2005. V. 39. № 6. P. e30.
- 25. Strelau J., Zawadzki B. The Formel Characteristics of Behavior - Temperament inventory (FCB-TI): Validiti studies // Eur. J. Pers. 1995. V. 9. P. 207.
- 26. Стреляу Я., Митина О., Завадский Б. и др. Методика диагностики темперамента. М.: Смысл, 2007. 104 с.
- 27. Айзенк Г.Ю. Структура личности. М.: КСП+; СПб.: Ювента, 1999. 464 с.
- 28. McEwen B.S., Wingfield J.C. The concept of allostasis in biology and biomedicine // Horm. Behav. 2003. V. 43. № 1. P. 2.
- 29. Picard M., McEwen B.S., Epel E.S., Sandi C. An energetic view of stress: focus on mitochondria // Front. Neuroendocrinol. 2018. V. 49. P. 72.
- 30. Кривощёков С.Г., Белишева Н.К., Николаева Е.И. и др. Концепция аллостаза и адаптация человека на севере // Экология человека. 2016. № 7. С. 17.
- 31. Carrard J., Rigort A-C., Appenzeller-Herzog C. et al. Diagnosing overtraining syndrome: A Scoping review // Sports Health. 2022. V. 14. № 5. P. 665.
- 32. Гаврилова Е.А. Безопасный спорт. Настольная книга тренера. М.: ООО «Принтлето», 2022. 512 с.
- 33. Durand F., Raberin A. Exercise-induced hypoxemia in endurance athletes: consequences for altitude exposure // Front. Sports Act. Living. 2021. V. 3. P. 663674.
- 34. Mountjoy M., Sundgot-Borgen J., Burke L. The IOS consensus statement: Beyond the female athlete triad-relative energy deficit in sport (RED-S) // Br. J. Sport Med. 2014. V. 48. № 7. P. 491.
- 35. Бернштейн Н.А. Очерки по физиологии движений и физиологии активности. М.: Медицина, 1966. 349 с.
- 36. Кабачкова А.В., Захарова А.Н., Кривощеков С.Г., Капилевич Л.В. Двигательная активность и когнитивная деятельность: особенности взаимодействия и механизмы влияния // Физиология человека. 2022. T. 48. № 5. С. 126.
- 37. Базанова О.М., Балиоз Н.В., Ермолаева С.А. и др. Исследование психофизиологических показателей сенсомоторной интеграции при ПТСР. Обоснование выбора мишеней для биоуправления // Физиология человека. 2024. Т. 50. № 3. С. 63.
- 38. Hayano J., Yuda E. Pitfalls of assessment of autonomic function by heart rate variability // J. Physiol. Anthropol. 2019. V. 38. № 3. P. 3.
- 39. Dalen T., Sandmae S., Stevens T.G. et al. Differences in acceleration and high-intensity activities between small-sided games and peak periods of official matches in elite soccer players // J. Strength Cond. Res. 2021. V. 35. № 7. P. 2018.
- 40. Uryumtsev D.Y., Gultyaeva V.V., Zinchenko M.I. et al. Effect of acute hypoxia on cardiorespiratory coherence in male runners // Front. Physiol. 2020. V. 11. P. 630.
- 41. Mlynczak M., Krysztofiak H. Cardiorespiratory temporal causal links and the differences by sport or lack thereof // Front. Physiol. 2019. V. 10. P. 45.
- 42. Zhang L., Qiu F., Zhu H. et al. Neural efficiency and acquired motor skills: An fMRI study of expert athletes // Front. Psychol. 2019. V. 10. P. 2752.
- 43. Antunes H.K., Leite G., Lee K.S. et al. Exercise deprivation increases negative mood in exercise-addicted subjects and modifies their biochemical markers // Physiol. Behav. 2016. V. 156. P. 182.