Associated factors with anaerobic power and cardiorespiratory fitness in schoolchildren in Medellín-Colombia

Authors

DOI:

https://doi.org/10.17533/udea.efyd.v38n1a05

Keywords:

adolescence, anthropometry, power, cardiovascular fitness

Abstract

Objective: To determine associated factors with anaerobic power and cardiorespiratory fitness in schoolchildren aged 12 to 17 years old in Medellín, Colombia. Methods: Cross-sectional study with schoolchildren, who underwent to sociodemographic (sex, age, level of education), anthropometric (weight, height, waist and hip circumference, overweight, abdominal obesity), and physical condition (anaerobic power, fatigue and cardiorespiratory fitness) measurements. Results: Anthropometric and sociodemographic variables influence the physical fitness. Being overweight, abdominal obesity and being a woman were factors associated with lesser development in anaerobic power tests and cardiorespiratory fitness. Median of watts of power per kilogram in a person with abdominal obesity was 4, compared to 6.9 in someone without this condition. Anaerobic power correlates with cardiorespiratory fitness. Conclusions: It was possible to identify that there is an association between anaerobic power and some anthropometric and sociodemographic variables.

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Author Biography

Jason Cardona Gómez, University of Antioquia

Degree in Physical Education, University of Antioquia. Master's Degree in Epidemiology

References

1. Bacopoulou F, E. V., Landis G, Rentoumis A, Chrousos GP. (2015). Waist circumference, waist-to-hip ratio and waist-to-height ratio reference percentiles for abdominal obesity among Greek adolescents. BMC Pediatr, 15, 50.

2. Balsalobre, C. N., F. Del Campo, J. Ganancias, P. (2015). Repetición de esprints y salto vertical en jugadores jóvenes de baloncesto y fútbol de élite. Apunts. Educación Física y Deportes, 120(2), 52-57.

3. Cole, T. J., Bellizzi, M. C., Flegal, K. M., & Dietz, W. H. (2000). Establishing a standard definition for child overweight and obesity worldwide: international survey. BMJ, 320(7244), 1240-1243.

4. Declaración de Helsinki de la AMM - Principios éticos para las investigaciones médicas en seres humanos. (2013). Retrieved 4 de julio, 2015, from http://www.wma.net/es/30publications/10policies/b3/

5. Guerrero Pepinosa, N. Y., Muñoz Ortiz, R. F., Muñoz Martínez, A. P., Pabón Muñoz, J. V., Ruiz Sotelo, D. M., & Sánchez, D. S. (2015). Nivel de sedentarismo en los estudiantes de fisioterapia de la fundación universitaria maría cano, popayán. Revista Hacia la Promoción de la Salud, 20(2), 77-89.

6. Gutierrez, G. (2013). Perfil de la potencia anaerobica en jugadores(as) de voleibol juvenil Revista da Faculdade de Educação Física da UNICAMP, Campinas, 11(1), 1-15.

7. Leger, L. A., Mercier, D., Gadoury, C., & Lambert, J. (1988). The multistage 20 metre shuttle run test for aerobic fitness. J Sports Sci, 6(2), 93-101. doi: 10.1080/02640418808729800

8. Ma, J., Feng, N., Zhang, S. W., Pan, Y. P., & Huang, Y. B. (2009). Comparison of changes in body composition during puberty development of obese and normal-weight children in China. Biomed Environ Sci, 22(5), 413-418. doi: 10.1016/S0895-3988(10)60019-0

9. Magalhães, M. S., R. Vieira, R. Yukio, R. Reis Vieira, R. Vila J. Moraes, F. Simoes, H. . (2014). Physical fitness and anthropometric characteristics in professional soccer players of the United Arab Emirates. Rev Andal Med Deporte, 7(3), 106-110.

10. Matsuzaka, A. T., Y. Yamazoe, M., & Kumakura, N. I., A. Wilk, B. . (2004). Validity of the Multistage 20-MO Shuttle-Run Test for Japanese Children, Adolescents, and Adults. Pediatric Exercise Science. 16 (2), 113-125.

11. Organización Mundial de la Salud. Enfermedades no transmisibles y sus factores de riesgo. Ginebra. (2013). Retrieved 25/12/2018, from https://www.who.int/ncds/surveillance/steps/manual/es/index3.html

12. Park, H., Park, K., Kim, M. H., Kim, G. S., & Chung, S. (2011). Gender differences in relationship between fat-free mass index and fat mass index among Korean children using body composition chart. Yonsei Med J, 52(6), 948-952. doi: 10.3349/ymj.2011.52.6.948

13. Pires, F., Dutra Alvares, P., Rodrigues Diniz, R., Santana, P. V., Andrade Lima, F., Lima da Costa, L., . . . Reis, A. (2018). POTÊNCIA ANAERÓBIA MÁXIMA E ÍNDICE DE FADIGA EM ATLETAS DE FUTSAL FEMININO: DESCRIÇÃO E COMPARAÇÃO ENTRE AS POSIÇÕES.

14. Ramírez, W., Vinaccia, S., & Suárez, G. R. (2004). El impacto de la actividad física y el deporte sobre la salud, la cognición, la socialización y el rendimiento académico: una revisión teórica. Revista de Estudios Sociales, 67-75.

15. Resolucion Nº 008430 de 1993. Ministerio de Salud. Rpublica de Colombia. (1993). Retrieved 5 de julio, 2015, from http://www.urosario.edu.co/urosario_files/a2/a24fb07a-f561-4fcc-b611-affff4374bb7.pdf

16. Rojas-Guevara, H. (2011). Evaluación de la potencia, capacidad anaeróbica e índice de fatiga en jugadoras de fútbol sala categoría mayores antes y después del periodo preparatorio Retrieved 19-1-2019

17. Vásquez, M. C.-R., G. Duran-Garcia, AB. Gómez Ortiz, O. (2016). Correlación del índice de masa corporal con el índice de masa grasa para diagnosticar sobrepeso y obesidad en población militar. Rev Sanid Milit Mex, 70, 505-515.

18. Wilmore, J., & Costill, D. (2004). Fisiología del esfuerzo y del deporte (E. Paidotribo Ed. 5 ed. Vol. 5).

19. Zagatto, A. M., Beck, W. R., & Gobatto, C. A. (2009). Validity of the running anaerobic sprint test for assessing anaerobic power and predicting short-distance performances. J Strength Cond Res, 23(6), 1820-1827. doi: 10.1519/JSC.0b013e3181b3df32

Published

2019-11-08

How to Cite

Cardona Gómez, J. (2019). Associated factors with anaerobic power and cardiorespiratory fitness in schoolchildren in Medellín-Colombia. Educación Física Y Deporte, 38(1), 117–136. https://doi.org/10.17533/udea.efyd.v38n1a05

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Section

Research articles