Evolución dinámica y cinemática sobre 200m en kayakistas senior de aguas tranquilas

  1. Sergio Pérez-Treus 1
  2. Hector Lorenzo-Buceta 1
  3. José Luís García-Soidán 1
  1. 1 Universidad de Vigo, España
Journal:
Retos: nuevas tendencias en educación física, deporte y recreación

ISSN: 1579-1726 1988-2041

Year of publication: 2015

Issue: 27

Pages: 118-121

Type: Article

DOI: 10.47197/RETOS.V0I27.34360 DIALNET GOOGLE SCHOLAR lock_openDialnet editor

More publications in: Retos: nuevas tendencias en educación física, deporte y recreación

Abstract

The modern training is currently supported by the use of various devices that can assess and evaluate the inertial, biomedical signals and even the forces applied by the athletes. The aim of this research was to determine the evolution of the dynamic and kinematics variables along a 200 m individual test in highly competitive kayakers. It was performed a maximum test of 200 m to 6 sprint kayakers with the measurement of the dynamic and kinematics variables using a triaxial accelerometer. Force losses of 20.6% and relative power of 14.8% between the first and last partial found. Making a partial segmentation of 50m, were found statistically significant differences (p<.05) in the speed and four partials of 200m, where the partial faster was the second (50-100 m). As for the frequency of paddle, statistically significant differences (p<.05) between the last part (150-200 m) and the first two (0-50 and 50-100 m) were found, the latter being where less developed stroke rate led primarily by accumulated fatigue. The data presented in this study are intended to give important for determining the dynamic and kinematic performance of kayakers in the 200 m competition information. The interpretation of these data will provide information about de evolution of force and power variables, variables that generate the progress of the boat and that are related to performance and ultimate success.

Bibliographic References

  • Aitken, D. A., & Neal, R. J. (1992). An on-water analysis system for quantifying stroke force characteristics during kayak events. International Journal of Sport Biomechanics, 8, 165-173.
  • Alacid, F., Ferrer, V., Martínez, E., & Carrasco, L. (2005). Análisis cuantitativo de la técnica de paleo en kayakistas infantiles. Motricidad. European Journal of Human Movement, 13, 133 – 146.
  • Alacid, F., López-Miñarro, P. A., Ferragut, C., García, A., Ferrer, V., & Martínez, I. (2008). Evolución y comparación de la velocidad, frecuencia, longitud, e índice de ciclo sobre 200-m, en palistas infantiles de diferentes modalidades. Motricidad. European Journal of Human Movement, 20, 15 – 27.
  • Alacid, F., López-Miñarro, P. A., & Isorna, M. (2010). Estrategia de paso y frecuencia de ciclo en piragüismo en los JJ.OO. de Pekín. Revista Internacional de Medicina y Ciencias de la Actividad Física y el Deporte, 10(38), 203-217.
  • Baker, J. (2012). Biomechanics of paddling. XXX Annual Conference of Biomechanics in Sports. Melbourne.
  • Candotti, C. T., Ribeiro, J., Soares, D. P., De-Oliveira, A. R., Loss, J. F., & Guimarães, A. C. (2007). Effective force and economy of triathletes and cyclist. Sports Biomechanics, 6(1), 31 – 43.
  • Carter, A. G. W., Peach, J. P., Pelham, T. W., & Holt, L. E. (1994). Discrete measures of c-1 craft acceleration using various paddle designs. XII International Symposium on Biomechanics in Sports, Budapest-Siófok, Hungary.
  • Gee, T. I., French, D. N., Gibbon, K. C., & Thompson, K. G. (2013). Consistency of pacing and metabolic responses during 2000-m rowing ergometry. International Journal of Sports Physiology and Performance, 8, 70-76.
  • Issurin, V. (1998). Analysis of the race strategy of world-class kayakers. In V. Issurin (Ed.), Science & practice of canoe/kayak high-performance training: selected articles in memory of junior world champion Nevo Eitan (pp. 27-39). Tel-Aviv: Elite Sport Department of Israel.
  • Janssen, I., & Sachlikidis, A. (2010). Validity and reliability of intrastroke kayak velocity and acceleration using a GPS-based accelerometer. Sports Biomechanics, 9 (1), 47-56.
  • Ogueta-Alday, A., Muñoz, F., & García-López, J. (2014). Análisis biomecánico de la competición de 3000m obstáculos. Retos. Nuevas tendencias en Educación Física, Deporte y Recreación, 26, 157 – 162.
  • Oliveira, T., Bullock, N., & Coutts, A. J. (2013). Pacing characteristics of international sprint kayak athletes. International Journal of Performance Analysis in Sport, 13, 353 – 364.
  • Oviedo, G., Sánchez, J., Castro, R., Calvo, M., Sevilla, J. C., Iglesias, A., & Guerra, M. (2013). Niveles de actividad física en población adolescente: estudio de caso. Retos. Nuevas tendencias en Educación Física, Deporte y Recreación, 23, 43 – 47.
  • Pérez-Treus, S., García-Soidán, J. L., Arce, E., Portela, T., Alfonso, X., & Alfonso, A. (2012). Acelerometría aplicada en el piragüismo de aguas tranquilas. IV Congreso Internacional de entrenadores de piragüismo de aguas tranquilas. Catoira. Pontevedra.
  • Lorenzo-Buceta, H., Pérez-Treus, S., García-Soidán, J. L., ArufeGiraldez, V., Alfonso, X., & Alfonso, A. (2014). Análisis dinámico en el remo de banco fijo: La trainera. Retos. Nuevas tendencias en Educación Física, Deporte y Recreación, 25, 120-123.
  • Machado-Rodrigues, A. M., Coelho e Silva, M. J., Mota, J., Santos, R. M., Cumming, S. P., & Malina, R. M. (2012). Physical activity and energy expenditure in adolescent male sport participants and nonparticipants aged 13 to 16 years. Journal of Physical Activity and Health, 9, 626 – 633.
  • Mattes, K., & Schaffert, N. (2010). New measuring and on water coaching devices for rowing. Journal of Human Sport & Exercise, 5(1), 226 – 239.
  • Michael, J. S., Rooney, K. B., & Smith, R. M. (2009). Determinants of kayak paddling performance. Sports Biomechanics, 8, 167–179.
  • Robinson, M. G., Holt, L. E., Pelham, T. W., & Furneaux, K. (2011). Accelerometry measurements of sprint kayaks: The coach’s new tool. Intenational Journal of Coaching Science, 5(1), 45 – 56.
  • Sperlich, J., & Baker, J. (2002). Biomechanical testing in elite canoeing. XX International Symposium on Biomechanics in Sport. Cáceres: Spain.
  • Stothart, J. P., Reardon, F. D., & Thoden, J. S. (1986). A system for the evaluation of on-water stroke force development during canoe and kayak events. IV International Symposium on Biomechanics in Sports, Halifax, Canada.
  • Vaquero-Cristobal, R., Alacid, F., López-Plaza, D., Muyor, J. M., & López-Miñarro, P. A. (2013). Kinematics variables evolution during a 200-m maximun test in Young paddlers. Journal of Human Kinetics, 38, 15 – 22.