Volume 13, Issue 10 (10-2015)                   RSMT 2015, 13(10): 69-77 | Back to browse issues page


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Ashrostaghi M, Shirzad E. The relationship between selected biomechanical and technical factors and success criteria in long jump take-off performed by elite athletes. RSMT 2015; 13 (10) :69-77
URL: http://jsmt.khu.ac.ir/article-1-149-en.html
Abstract:   (7403 Views)

Take-off is the critical phase of the long jump event. The aim of this study was to explore the relationships
between different variables and success in take-off. 37 trials performed by 8 long jumper, participants in
fourth indoor Asian senior athletics championships held in Tehran, with personal best average of 7.68±0.28
meter were recorded at 300 Hz. Five speed-related, five technical and four strength-related variables as well
as an anthropometric variable were measured using motion analysis software. More gain in vertical velocity
and less loss of horizontal velocity are considered as two criteria of take-off success and their relationships
with other variables were determined through correlation and regression analysis. Significant level of 0.05
was set. Some variables of all four groups were significantly correlated with success criteria. These variables
along with some others were entered in regression equations. The results emphasized on dominant role of
the technique and approach velocity and represented the effect of anthropometric characteristics on success
in takeoff. Furthermore eccentric strength of knee extensors was shown as the main strength factor in this
performance.

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Type of Study: Research |
Received: 2017/01/21 | Accepted: 2017/01/21 | Published: 2017/01/21

References
1. Graham-Smith, P., Lees, A. (2005). A three-dimensional kinematic analysis of the long jump take-off. Journal of Sports Sciences. 23(9): 891-903.
2. Hay, J.G. (1999). Changes in muscle-tendon length during the take-off of a running long jump. Journal of Sports Sciences. 17(2): 159-72.
3. Tidow, G. (1989). Model technique analysis sheet for the horizontal jumps-the long jump. New Studies in Athletics. 4(3): 47-62.
4. Hay, J.G., Miller, J.A., Canterna, R.W. (1986). The techniques of elite male long jumpers. Journal of Biomechanics. 19(10): 855-66.
5. Coh, M. (1997). Kinematics-Dynamic analysis of the take-off action in the long jump. Track Coach. 139: 4443-5.
6. Lees, A., Graham-Smith, P., Fowler, N. (1994). A biomechanical analysis of the last stride, touchdown, and take-off characteristics of the men long jump. Journal of Applied Biomechanics. 10(1): 61-78.
7. Lees, A., Fowler, N., Derby, D. (1993). A biomechanical analysis of the last stride, touch‐down and take‐off characteristics of the women's long jump. Journal of Sports Sciences: 11(4): 303-14.
8. Muraki, Y., Ae, M., Yokozawa, T., Koyama, H. (2005). Athletics: Mechanical properties of the take‐off leg as a support mechanism in the long jump. Sports Biomechanics. 4(1): 1-15.
9. Seyfarth, A., Blickhan, R., Van Leeuwen, J. L. (2000). Optimum take-off techniques and muscle design for long jump. Journal of Experimental Biology. 203(4): 741-50.
10. Alexander, R.M. (1990). Optimum take-off techniques for high and long jumps. Philosophical Transactions of the Royal Society of London B: Biological Sciences. 329(1252): 3-10.
11. Panoutsakopoulos, V., Papaiakou, 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: 1-55.
12. Panoutsakopoulos, V., Kollias, I.A. (2009) Biomechanical analysis of the last strides, the touchdown and the take-off of top Greek male and female long jumpers. Hellenic Journal of Physical Education and Sport Science. 29(2): 200-18.
13. 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(3/4): 25-60
14. Koyama, H., Ae, M., Muraki, Y. (2009). Biomechanical analysis of the men's and women's long jump at the 11th IAAF world championships in athletics, Osaka 2007: A brief report. Downloaded from the internet. (http://www.spjutforum.se/res/default/biomechanicalresearchvmosaka2007.pdf): February 15, 2011.
15. Fukashiro, S., Wakayama, A., Kojima, T., Ito, N., Arai, T., Iiboshi, A., Fuchimoto, T., Tan, H.P. (1994). Biomechanical analysis of the long jump (in Japanese). In Japan association of athletics federations (ed.), The techniques of the world top athletes (Research Report of the 3rd World Championships, Tokyo) Tokyo: Baseball Magazine Co. 135-51.
16. German Athletics Federation (2009). Biomechanical analyses at the berlin 2009- 12th IAAF world championships- Final report- Long jump. Scientific Research Project. IAAF

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