Cite

1. Mendoza L., Nixdorf E. (2011). Biomechanical analysis of the horizontal jumping events at the 2009 IAAF World Championships in Athletics. New Studies in Athletics 26, 25-60.Search in Google Scholar

2. Petrov V. (2004). Pole vault-the state of the art. New Studies in Athletics 19, 23-32.Search in Google Scholar

3. International Association of Athletics Federations. (2015). IAAF Competition Rules 2016-2017. Monaco: Imprimerie Multiprint. Retrieved April 6, 2016, from http://www.iaaf.org/about-iaaf/documents/rules-regulations.Search in Google Scholar

4. Linthorne N.P., Weetman A.H.G. (2012). Effects of run-up velocity on performance, kinematics, and energy exchanges in the pole vault. Journal of Sports Science and Medicine 11, 245-254.Search in Google Scholar

5. Moura N.A., de Paula Moura T.F., Borin J.P. (2005). Approach speed and performance in the horizontal jumps: What do Brazilian athletes do? New Studies in Athletics 20, 43-48.Search in Google Scholar

6. Bridgett L.A., Linthorne N.P. (2006). Changes in long jump take-off technique with increasing run-up speed. Journal of Sports Sciences 24, 889-897.10.1080/0264041050029804016815784Search in Google Scholar

7. Galloway M., Connor K. (1999). The effect of steering on stride pattern and velocity in long jump. In Scientific Proceedings of the XVII International Symposium on Biomechanics in Sport, June 30-July 6, 1999 (pp. 41-44). Perth: Edith Cowan University.Search in Google Scholar

8. Hommel H. et al. (2009). Biomechanical analyses of selected events at 12th IAAF World Championship in Athletics, Berlin 15-23 August 2009. A Project by the German Athletics Federation. Darmstadt: Deutscher Leichtathletik-Verband.Search in Google Scholar

9. Berg P.W., Greer N.L. (1995). A kinematic profile of the approach run of novice long jumpers. Journal of Applied Biomechanics 11, 142-162.10.1123/jab.11.2.142Search in Google Scholar

10. Theodorou A.S., Panoutsakopoulos V., Exell T.A., Argeitaki P., Paradisis G.P., Smirniotou A. (2016). Step characteristic interaction and asymmetry during the approach phase in long jump. Journal of Sports Sciences 23, 1-9.Search in Google Scholar

11. Exell T.A., Gittoes M.J.R., Irwin G., Kerwin D.G. (2012). Gait asymmetry: Composite scores for mechanical analyses of sprint running. Journal of Biomechanics 45, 1108-1111.10.1016/j.jbiomech.2012.01.00722296935Search in Google Scholar

12. Plessa E.I., Rousanoglou E.N., Boudolos K.D. (2010). Comparison of the take-off ground reaction force patterns of the pole vault and the long jump. Journal of Sports Medicine and Physical Fitness 50, 416-421.Search in Google Scholar

13. Henry F.M. (1961). Reaction time-movement time correlations. Perceptual and Motor Skills 12, 63-66.10.2466/pms.1961.12.1.63Search in Google Scholar

14. Frere J., Chollet D., Tourny-Chollet C. (2009). Assessment of the influence of pole carriage on sprint kinematics: A case study of novice athletes. International Journal of Sports Science Engineering 3, 3-10.Search in Google Scholar

15. Bae T.S., Park Y.J., Park J.J., Lee J.S., Chae W.S., Park S.B. (2011). Biomechanics research project in the IAAF World Championships Daegu 2011. Korean Journal of Sport Biomechanics 21(5), 503-510. DOI: 10.5103/KJSB.2011.21.5.503.10.5103/KJSB.2011.21.5.503Search in Google Scholar

16. Perttunen J., Kyrolainen H., Komi P.V., Heinonen A. (2000). Biomechanical loading in the triple jump. Journal of Sports Sciences 18, 363-370.10.1080/02640410040242110855682Search in Google Scholar

17. Bradshaw E.J., Aisbett B. (2006). Visual guidance during competition performance and run‐through training in long jumping. Sports Biomechanics 5, 1-14.10.1080/14763141.2006.962822116521619Search in Google Scholar

18. Panoutsakopoulos V., Papaiakovou G.I., Katsikas F.S., Kollias I.A. (2010). 3D biomechanical analysis of the preparation of the long jump take-off. New Studies in Athletics 25, 55-68.Search in Google Scholar

19. Sides D.L. (2014). Kinematics and kinetics of maximal velocity sprinting and specificity of training in elite athletes. Doctoral dissertation, University of Salford, UK.Search in Google Scholar

20. Hunter J.P., Marshall R.N., McNair P.J. (2004). Interaction of step length and step rate during sprint running. Medicine Science in Sports and Exercise 36, 261-271.10.1249/01.MSS.0000113664.15777.5314767249Search in Google Scholar

21. Fitts P.M. (1954). The information capacity of the human motor system in controlling the amplitude of movement. Journal of Experimental Psychology 47, 381-391.10.1037/h0055392Search in Google Scholar

22. Lees A., Graham-Smith P., Fowler N. (1994). A biomechanical analysis of the last stride, touchdown, and takeoff characteristics of the men’s long jump. Journal of Applied Biomechanics 10, 61-78.10.1123/jab.10.1.61Search in Google Scholar

23. Yu B. (1999). Horizontal-to-vertical velocity conversion in the triple jump. Journal of Sports Sciences 17, 221-229.10.1080/02640419936612710362389Search in Google Scholar

24. Makaruk H., Mastalerz A., Starzak M., Buszta M. (2015). The influence of different training conditions on the kinematics of the long jump special exercise in young female jumpers. Polish Journal of Sport and Tourism 22(4), 235-240. 10.1515/pjst-2015-0032Search in Google Scholar

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Medicine, Clinical Medicine, Public Health, Sports and Recreation, other