Comparación de la densidad mineral ósea en futbolistas y árbitros de nivel profesional

  1. López García, R. 1
  2. Lagunes Carrasco, JO. 1
  3. Carranza García, LE. 1
  4. Navarro Orocio, R. 1
  1. 1 Universidad Autónoma de Nuevo León (México)
Zeitschrift:
Sport TK: revista euroamericana de ciencias del deporte

ISSN: 2340-8812 2254-4070

Datum der Publikation: 2021

Ausgabe: 10

Nummer: 1

Seiten: 45-49

Art: Artikel

DOI: 10.6018/SPORTK.461601 DIALNET GOOGLE SCHOLAR lock_openDIGITUM editor

Andere Publikationen in: Sport TK: revista euroamericana de ciencias del deporte

Zusammenfassung

The aim of this study was to compare bone mineral density (BMD) of soccer players and professional referees. There were made bone mineral density measurements with the dual x-ray absorptiometry equipment (DEXA) to 27 players (19.81 ± 1.14 years old) and 22 referees (24.95 ± 3.54 years old) from the second division of the Mexican professional soccer league (Liga MX) where the areas of the spine, hip, ribs, arms, legs and full body were evaluated.  It was used the statistical program SPSS (21.0), using the test for independent samples of the t of Student, considering the significance value of p ≤ .05. The players achieved a higher BMD than the referees in most regions of the body, finding only significant difference in the legs and hip (p ≤ .05). The high mineralization of the legs of the players is due to the high contact repeatedly to the game ball, although a higher BMD was also obtained in the referees than in other sports of other studies. Thus concluding that the practice of refereeing in football is positive for bone strengthening. However, more studies on BMD in referees, officials and judges in football and in other disciplines are needed.

Bibliographische Referenzen

  • Abrahin, O., Rodrigues, R. P., Marçal, A. C., Alves, E. A. C., Figueiredo, R. C., & Sousa, E. C. D. (2016). Swimming and cycling do not cause positive effects on bone mineral density: a systematic review. Revista brasileira de reumatologia, 56(4), 345-351.
  • Cadore, E. L., Brentano, M. A., & Kruel, L. F. M. (2005). Effects of the physical activity on the bone mineral density and bone remodelation. Revista Brasileira de Medicina do Esporte, 11(6), 373-379.
  • Calbet, J. A., Dorado, C., Diaz-Herrera, P., & Rodriguez-Rodriguez, L. P. (2001). High femoral bone mineral content and density in male football (soccer) players. Medicine and science in sports and exercise, 33(10), 1682-1687.
  • Cervinka, T., Rittweger, J., Hyttinen, J., Felsenberg, D., & Sievänen, H. (2011). Anatomical sector analysis of load‐bearing tibial bone structure during 90‐day bed rest and 1‐year recovery. Clinical physiology and functional imaging, 31(4), 249-257.
  • Christoffersen, T., Winther, A., Nilsen, O. A., Ahmed, L. A., Furberg, A. S., Grimnes, G., ... & Emaus, N. (2015). Does the frequency and intensity of physical activity in adolescence have an impact on bone? The Tromsø Study, Fit Futures. BMC sports science, medicine and rehabilitation, 7(1), 26.
  • Czeczelewski, J., Długołęcka, B., Czeczelewska, E., & Raczyńska, B. (2013). Intakes of selected nutrients, bone mineralisation and density of adolescent female swimmers over a three-year period. Biology of sport, 30(1), 17.
  • Fredericson, M., Chew, K., Ngo, J., Cleek, T., Kiratli, J., & Cobb, K. (2007). Regional bone mineral density in male athletes: a comparison of soccer players, runners and controls. British journal of sports medicine, 41(10), 664-668.
  • Kontulainen, S., Kannus, P., Haapasalo, H., Sievänen, H., Pasanen, M., Heinonen, A., ... & Vuori, I. (2001). Good maintenance of exercise‐induced bone gain with decreased training of female tennis and squash players: a prospective 5‐year follow‐up study of young and old starters and controls. Journal of Bone and Mineral Research, 16(2), 195-201.
  • Lafforgue, P. (2013). Fracturas por sobrecarga (fracturas por fatiga y fracturas por insuficiencia ósea). EMC-Aparato Locomotor, 46(3), 1-12.
  • Maimoun, L., Mariano-Goulart, D., Couret, I., Manetta, J., Peruchon, E., Micallef, J. P., ... & Leroux, J. L. (2004). Effects of physical activities that induce moderate external loading on bone metabolism in male athletes. Journal of sports sciences, 22(9), 875-883.
  • Mallo, J., Navarro, E., Aranda, J. M. G., & Helsen, W. F. (2009). Activity profile of top-class association football referees in relation to fitness-test performance and match standard. Journal of sports sciences, 27(1), 9-17.
  • Manuel Gomez, J. (2006). The role of insulin-like growth factor I components in the regulation of vitamin D. Current Pharmaceutical Biotechnology, 7(2), 125-132.
  • Marfell-Jones, M. J., Stewart, A. D., & De Ridder, J. H. (2012). International standards for anthropometric assessment.
  • McClanahan, B. S., Harmon-Clayton, K., Ward, K. D., Klesges, R. C., Vukadinovich, C. M., & Cantler, E. D. (2002). Side-to-side comparisons of bone mineral density in upper and lower limbs of collegiate athletes. Journal of strength and conditioning research, 16(4), 586.
  • Morel, J., Combe, B., Francisco, J., & Bernard, J. (2001). Bone mineral density of 704 amateur sportsmen involved in different physical activities. Osteoporosis International, 12(2), 152-157.
  • Nichols, J. F., & Rauh, M. J. (2011). Longitudinal changes in bone mineral density in male master cyclists and nonathletes. The Journal of Strength & Conditioning Research, 25(3), 727-734.
  • Oh, K. W., Lee, W. Y., Rhee, E. J., Baek, K. H., Yoon, K. H., Kang, M. I., ... & Yoo, H. J. (2005). The relationship between serum resistin, leptin, adiponectin, ghrelin levels and bone mineral density in middle‐aged men. Clinical endocrinology, 63(2), 131-138.
  • Sherk, V. D., Barry, D. W., Villalon, K. L., Hansen, K. C., Wolfe, P., & Kohrt, W. M. (2014). Bone loss over one year of training and competition in female cyclists. Clinical journal of sport medicine: official journal of the Canadian Academy of Sport Medicine, 24(4), 331.
  • Silva, C. C., Goldberg, T. B., Teixeira, A. S., & Dalmas, J. C. (2011). The impact of different types of physical activity on total and regional bone mineral density in young Brazilian athletes. Journal of sports sciences, 29(3), 227-234.
  • Scott, A., Khan, K. M., Duronio, V., & Hart, D. A. (2008). Mechanotransduction in human bone. Sports Medicine, 38(2), 139-160.
  • Sun, L. I., Davies, T. F., Blair, H. C., Abe, E., & Zaidi, M. (2006). TSH and bone loss. Annals of the New York Academy of Sciences, 1068(1), 309-318.
  • Vicente-Rodriguez, G., Ara, I., Perez-Gómez, J., Serrano-Sanchez, J.A., Dorado, C., & Calbet, J.A. (2004). High femoral bone mineral density accretion in prepubertal soccer players. Medicine and science in sports and exercise, 36(10), 1789-1795.
  • Weston, M., & Brewer, J. (2002). A study of the physiological demands of soccer refereeing. Journal of Sports Sciences.
  • Weston, M., Castagna, C., Impellizzeri, F. M., Bizzini, M., Williams, A. M., & Gregson, W. (2012). Science and medicine applied to soccer refereeing. Sports medicine, 42(7), 615-631.
  • Wittich, A., Mautalen, C. A., Oliveri, M. B., Bagur, A., Somoza, F., & Rotemberg, E. (1998). Professional football (soccer) players have a markedly greater skeletal mineral content, density and size than age-and BMI-matched controls. Calcified tissue international, 63(2), 112-117.