Разлики в мускулната маса и натрупването на мазнини при млади спортистки
А. Димитрова
Резюме: Тегло, ръст, телесно тегло са значими показатели в елитния спорт, които изискват развитие на различни морфологични и двигателни способности. Детството и юношеството представляват основните периоди за прогресиране на тези умения и избор на висококвалифицирани спортисти. Целта на това проучване е да се определи и сравни профилът на състава на тялото на растящи жени спортисти, за да се подпомогне тяхното спортно обучение и селекция. Проучването включва 72 (27 представителки на художествената гимнастика (РГ) и 45 тенисистки (ИТ) подрастващи спортисти, разделени в две експериментални групи според възрастта им. Телесната височина на всеки субект е измерена с помощта на стандартни антропометрични инструменти и методи. Профилна телесна композиция беше определен чрез многочестотни измервания на биоелектрически импеданс (анализатор InBody 170). Статистическият анализ беше извършен с помощта на SPSS 16.00. Независим t-тест (p≤0.05) от проби беше използван за оценка на разликите в антропометричните променливи между IT и CG групите. Компонентите на телесния състав между групите IT и CG са добре изразени и за двете възрастови групи.За всички оценени възрастови периоди субектите в IT групата са по-високи и по-тежки, отколкото в групата CG на същата възраст.Анализ на сегментното разпределение на компонентите на телесния състав показа, че в IT групата има значително по-високи показатели чиста телесна маса и мастна маса, отколкото в hCG групата, с изключение на мастната маса (%) на горните крайници.
Ключови думи: младежи; състав на тялото; художествена гимнастика; идентифициране на таланти; тенисисти
Литература: (click to open/close) | [1] Nikolova, G. Dantchev, D., 2022. Gender dependence of the geometric and mass-inertial characteristics via a 3D biomechanical model of the human body. Series on Biomechanics, 36, 113-119. [2] Nikolova, G. S. Dantchev, D. M., 2023. Age changes in the basic anthropometric characteristics of the average Bulgarian females. Series on Biomechanics, 37, 5-12. [3] Hogstom, G.M. Pietila, T. Nordstrom, P., Nordstrom, A., 2012. Body composition and performance: influence of sport and gender among adolescents. J Strength Cond Res 26, 7, 1799-804. [4] Santos, D.A. Dawson, J.A. Matias, C.N. Rocha, P.M. Minderico, C.S. Allison, D.B. Sardinha, L.B. Silva, A.M., 2014. Reference Values for Body Composition and Anthropometric Measurements in Athletes. PLoS ONE 9, 5, e97846. [5] Gualdi-Russo, E. Brasili-Gualandi, P. Belcastro, M.G., 1997. Body composition assessment of young tennis players by multi-frequency impedance measurements. International Journal of Anthropology 12 , 2, 11-20. [6] Calbet, J.A.L. Dorado, C. Diaz‐Herrera, P. Rodríguez-Rodríguez, L.P., 2001. High femoral bone mineral content and density in male football (soccer) players. Med Sci Sports Exerc 33 , 1, 1682. [7] Da Silva, A.M. Fields, D.A. Heymsfield, S.B. Sardinha, L.B., 2010. Body Composition and Power Changes in Elite Judo Athletes. Int J Sports Med 31, 737 – 747. [8] Ubago-Guisado, E. Mata, E. Sánchez-Sánchez, J. Plaza-Carmona, M. Martin Garsia, Gallardo, L.M., 2015. Influence of different sports on fat mass and lean mass in growing girls. Journal of Sport and Health Science 1-6. [9] Constantini, N.W. Warren, M.P., 1994. Special problems of the female athlete. Baillière's Clinical Rheumatology 8, 1, 199-219. [10] Nattiv, A. Loucks, A.B. Manore, M.M. Sanborn, C.F. Sundgot-Borgen, J. Warren, M.P., 2007. American College of Sports Medicine position stand. The female athlete triad. Med Sci Sports Exerc 39, 1867-1882. [11] Chu, S.M., Gustafson, K.E., Leiszler, M., 2013. Female athlete triad. American Journal of Lifestyle Medicine. 7(6). [12] Ilinova, B., 2014. Woman in sports. Avangard Prima, Sofia, (In Bulgarian). [13] Helsen, W.F. Hodges, N.J. Van Winckel, J. Starkes, J.L., 2000. The roles of talent, physical precocity and practice in the development of soccer expertise. J Sports Sci 18, 727–736. [14] Williams A.M. Reilly, T., 2000. Talent identification and development in soccer. J Sports Sci 18, 657–667. [15] Doncaster, G. Medina, D. Drobnic, F. Gómez-Díaz, A.J. Unnithan, V., 2020. Appreciating Factors Beyond the Physical in Talent Identification and Development: Insights From the FC Barcelona Sporting Model. Front. Sport. Act. Living. 2, 1–9 . [16] Bergeron, M. Maresh, C. Kraemer, W. Abraham, A. Conroy, B. Gabaree, C., 1991. Tennis:A physiological profile during match play. Int J Sport Med 12, 5, 474-479. [17] Renstrom, A.F.H., 2002. Tennis: handbook of sports medicine and science, Blackwell Publishing Company, ISBN: 0-632-05034-9. [18] Fernandez, J. Mendez-Villanueva, A. Pluim, B. M., 2006. Intensity of tennis match play. Br J Sports Med 40, 387–391. doi: 10.1136/bjsm.2005.023168. [19] Kovacs, M.S., 2006. Applied physiology of tennis performance. Br J Sports Med 40, 381–386. doi: 10.1136/bjsm.2005.023309. [20] Penchev, A. and Todorov, T., 1980. Tennis. Medicina I fizkultura. Sofia (In Bulgarian). [21] Suchilin, N., Arkaev L., Gymnastics, 2004. How to Create Champions: The Theory and Methodology of Training Top-Class Gymnasts, Meyer & Meyer Sport. 2004; ISBN: 1841269387, 9781841269382. [22] World Medical Association. Declaration of Helsinki - Ethical Principles for Medical Research Involving Human Subjects. 2008. WMJ54 4, 122-125. [23] Carbuhn, A.F. Fernandez, T.E. Bragg, A.F. Green, J.S. Crouse, S.F., 2010. Sport and training influence bone and body composition in women collegiate athletes. J. Strength Cond. Res. 24, 1710–1717. [24] Roelofs, E. Emith-Ryan, A. Trexler, E. Hirsch, K., 2017. Seasonal effects on body composition, muscle characteristics, and performance of collegiate swimmers and divers. J. Athl. Train 52, 45–50. [25] Dopsaj, M. Mijalkovski, Z. Vasilovski, N. Copi´c, N. Brzakovi´c, M. Markovi´c, M., 2018. Morphological parameters and handgrip muscle force contractile characteristics in the first selection level in water polo: Differences between U15 water polo players and control group. Hum. Sport Med 18, 5–15. [26] Roche, A.F., 1987. Estimation of body composition by impedance. Med. Sci. Sports Exerc. Suppl. 19, 2, 40. [27] Heyward, V.H. Stolarczyk, L.M., 1996. Applied body composition assessment. Champaign, IL: Human Kinetics. [28] Campa, F. Matias, C.N. Moro, T. Cerullo, G. Casolo, A. Teixeira, F.J. Paoli, A., 2023. Methods over Materials: The Need for Sport-Specific Equations to Accurately Predict Fat Mass Using Bioimpedance Analysis or Anthropometry. Nutrients. 15, 278 https://doi.org/10.3390/ nu15020278. [29] Houtkooper, L.B. Lohman, T.G. Going, S. Howell, W., 1996. Why bioelectrical impedance should be used for estimating adiposity? American Journal of Clinical Nutrition 64, 3, 436-448. [30] Dimov, I., 2000. Tennis - basics of physical training. Softeh, Sofia (In Bulgarian). [31] Sánchez-Muñoz, C. Sanz, D. Zabala, M., 2007. Anthropometric characteristics, body composition and somatotype of elite junior tennis players. Br J Sports Med 41, 793-799. [32] Torres, G. Cabello, D. Carrasco, L., 2004. Functional differences between tennis and badminton in young sportsmen. In: A Lees, J-F Kahn, IW Maynard (Eds.). Science and Racket Sports III. Routledge. Taylor & Francis Group. [33] Batista, A., Garganta, R., Ávila-Carvalho, L., 2019. Morphological characteristics and biological maturation of Brazilian and Portuguese gymnasts. Int. J. Morphol 37, 2, 561-567. [34] Katić, R., 2003. Identification of bio motor structures as a precondition for programming kinesiologic education in children aged seven to nine years. Coll. Antropol. 27, 1, 351-360. [35] Katić, R. Pejčić, A. Viskić-Štalec, N., 2007. The mechanisms of morphological-motor functioning in elementary school female first- to fourth-graders. Coll. Antropol 28 , 1, 261-269. [36] Chromiak, J.A., Smedley, B. Carpenter, W. Brown, R. Koh, Y.S. Lamberth, J.G. Joe, L.A. Abadie, B.R. Altorfer, G., 2004. Effect of a 10-week strength training program and recovery drink on body composition, muscular strength and endurance, and anaerobic power and capacity. Nutrition 20, 420-427. [37] Hanson, E.D., Srivatsan, S.R., Agrawal, S., Menon, K.S., Delmonico, M.J., Wang, M.Q., Hurley, B.F., 2009. Effects of strength training on physical function: influence of power, strength, and body composition. J. Strength Cond. Res 23, 2627-2637.
|
|
| Дата на публикуване: 2023-11-28
(Price of one pdf file: 39.00 BGN/20.00 EUR)