Análisis de la influencia de las zapatillas de clavos en el rendimiento de una prueba de 40 m en mujeres velocistas

  1. Adrián Jiménez-Velayos 1
  2. Juan García-López 1
  1. 1 Universidad de León. España
Revue:
RICYDE. Revista Internacional de Ciencias del Deporte

ISSN: 1885-3137

Année de publication: 2017

Volumen: 13

Número: 49

Pages: 273-284

Type: Article

DOI: 10.5232/RICYDE2017.04906 DIALNET GOOGLE SCHOLAR lock_openDialnet editor

D'autres publications dans: RICYDE. Revista Internacional de Ciencias del Deporte

Résumé

The purposes were to analyze the shoes spikes’ effects on the performance of women sprinters, separating between both spike and weight effects, and to analyze the influence of this type of footwear on biomechanical parameters of running. Nine female sprinters of regional and national levels participated. They performed three 40 m sprints, using three different types of footwear (spikes, weighted spikes and running shoes) in a randomized order. The performance improved 1.8% using spikes with respect to running shoes, which 1.2% was due to the spikes and 0.6% was due to the weight effects. Analyzing the biomechanical variables, the step rate remains constant while the step length increased due to the spikes’ effect, and the contact time decrease due to a combined effect of the spikes and the weight. In conclusion, the performance of women sprinters improved about 2% with spikes shoes with respect to running shoes. One third of this improvement was due to the weight effect, and two third to the spikes effect. Future studies must try to identify the individual effect of these three variables.

Références bibliographiques

  • García-López, J.; Morante, J. C.; Ogueta-Alday, A. C.; González-Lázaro, J.; Rodríguez-Marroyo, J. A., y Villa, G. (2012). El uso de fotocélulas de haz simple y doble para medir la velocidad en carreras. RICYDE. Revista Internacional de Ciencias del Deporte, 8(30), 324-333. https://doi.org/10.5232/ricyde2012.03003
  • Hunter, J. P.; Marshall, R. N., & McNair, P. J. (2005). Relationships between ground reaction force impulse and kinematics of sprint-running acceleration. Journal of Applied Biomechanics, 21(1), 31-43. https://doi.org/10.1123/jab.21.1.31
  • Kawamori, N.; Nosaka, K., & Newton, R. U. (2013). Relationships between ground reaction impulse and sprint acceleration performance in team sport athletes. The Journal of Strength & Conditioning Research, 27(3), 568-573. https://doi.org/10.1519/JSC.0b013e318257805a
  • Korhonen, M. T.; Mero, A., & Suominen, H. (2003). Age-related differences in 100m sprint performance in male and female master runners. Medicine and Science in Sports and Exercise, 35(8), 1419-1428. https://doi.org/10.1249/01.MSS.0000079080.15333.CA
  • Logan, S.; Hunter, I.; Hopkins, J. T.; Feland, J. B., & Parcell, A. C. (2010). Ground reaction force differences between running shoes, racing flats, and distance spikes in runners. Journal of Sports Science and Medicine, 9(1), 147-153.
  • Majumdar, A., & Robergs, R. (2011). The science of speed: Determinants of performance in the 100 m sprint. International Journal of Sports Science and Coaching, 6(3), 479-494. https://doi.org/10.1260/1747-9541.6.3.479
  • Ogueta-Alday, A. (2014). Adaptación, validación y aplicación de una nueva tecnología para valorar la biomecánica de la carrera de resistencia. [Tesis doctoral]. Universidad de León.
  • Smith, G.; Lake, M., & Lees, A. (2014). Metatarsophalangeal joint function during sprinting: A comparison of barefoot and sprint spike shod foot conditions. Journal of Applied Biomechanics, 30(2), 206-212. https://doi.org/10.1123/jab.2013-0072
  • Simperingham, K. D.; Cronin, J. B., & Ross, A. (2016). Advances in Sprint Acceleration Profiling for Field-Based Team-Sport Athletes: Utility, Reliability, Validity and Limitations. Sports Medicine. https://doi.org/10.1007/s40279-016-0508-y
  • Stefanyshyn, D., & Fusco, C. (2004). Increased shoe bending stiffness increases sprint performance. Sports Biomechanics, 3(1), 55-66. https://doi.org/10.1080/14763140408522830
  • Theophilos, P.; Nikolaos, M.; Kiriakos, A.; Athanasia, S.; Michail, P., & Spiros, K. (2014). Evaluation of sprinting performance in adolescent athletes with running shoes, spikes and barefoot. Journal of Physical Education and Sport, 14(4), 593598.
  • Toon, D.; Williams, B.; Hopkinson, N., & Caine, M. (2009). A comparison of barefoot and sprint spike conditions in sprinting. Journal of Sports Engineering and Technology, 223(2), 77-87. https://doi.org/10.1243/17543371jset21
  • Worobets, J., & Wannop, J. W. (2015). Influence of basketball shoe mass, outsole traction, and forefoot bending stiffness on three athletic movements. Sports Biomechanics, 14(3), 351-360. https://doi.org/10.1080/14763141.2015.1084031
  • Zingsem, C.; Gutiérrez-Dávila, M., & Rojas, F. J. (2014). Effect of the type of footwear on biomechanical parameters in the foot contact phase in middledistance runners. European Journal of Human Movement, 33, 79-92.