2. Hay J.G., Miller J.A., Canterna R.W. (1986). The techniques of elite male long jumpers. Journal of Biomechanics 19(10), 855-866.10.1016/0021-9290(86)90136-3
3. 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, 61-61.10.1123/jab.10.1.61
5. Hay J.G., Nohara H. (1990). Techniques used by elite long jumpers in preparation for takeoff. Journal of Biomechanics 23(3), 229-239.10.1016/0021-9290(90)90014-T
6. 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), 303-314.10.1080/02640419308730000
9. Koyama H., Muraki Y., Ae M. (2005). Athletics: Effects of an inclined board as a training tool on the take-off motion of the long jump. Sports Biomechanics 4(2), 113-129.10.1080/14763140508522858
11. Roetenberg D., Luinge H., Slycke P. (2013). Xsens MVN: Full 6DOF Human Motion Tracking Using Miniature Inertial Sensors. Xsens Technologies, Enschede, The Netherlands.
12. Graham-Smith P., Lees A. (2005). A three-dimensional kinematic analysis of the long jump take-off. Journal of Sports Sciences 23(9), 891-903.10.1080/02640410400022169
14. Seyfarth A., Friedrichs A., Wank V., Blickhan R. (1999). Dynamics of the long jump. Journal of Biomechanics 32(12), 1259-1267.10.1016/S0021-9290(99)00137-2
16. Brosnan J.T., McNitt A.S., Serensits T.J. (2009). Effects of varying surface characteristics on the hardness and traction of baseball field playing surfaces. International Turfgrass Society Research Journal 11, 1053-1065.
18. Weyand P.G., Sternlight D.B., Bellizzi M.J., Wright S. (2000). Faster top running speeds are achieved with greater ground forces not more rapid leg movements. Journal of Applied Physiology 89(5), 1991-1999.10.1152/jappl.2000.89.5.1991
20. Nemtsev O., Doronin A., Nemtseva N., Sukhanov S., Shubin M. (2014). Features of takeoff phase in long jumps with various run-up lengths. In 32nd Conference of the International Society of Biomechanics in Sports, July 12-16, 2014, Johnson City, USA: East Tennessee State University.
21. Hay J.G. (1999). Changes in muscle-tendon length during the take-off of a running long jump. Journal of Sports Sciences 17(2), 159-172.10.1080/026404199366262
22. Kyröläinen H., Avela J., Komi P.V. (1989). Regulation of muscle force and stiffness during long jump take off. Journal of Biomechanics 22(10), 1042.10.1016/0021-9290(89)90337-0
23. Ford K.R., Myer G.D., Smith R.L., Byrnes R.N., Dopirak S.E., Hewett T.E. (2005). Use of an overhead goal alters vertical jump performance and biomechanics. The Journal of Strength & Conditioning Research 19(2), 394-399.
24. Porter J.M., Anton P.M., Wu W.F. (2012). Increasing the distance of an external focus of attention enhances standing long jump performance. The Journal of Strength & Conditioning Research 26(9), 2389-2393.10.1519/JSC.0b013e31823f275c22067252
26. Porter J., Wu W., Partridge J. (2010). Focus of attention and verbal instructions: strategies of elite track and field coaches and athletes. Sport Science Review 19(3-4), 77-89.10.2478/v10237-011-0018-7
27. Makaruk H., Czaplicki A., Sacewicz T., Sadowski J. (2014). The effects of single versus repeated plyometrics on landing biomechanics and jumping performance in men. Biology of Sport 31(1), 9-14.10.5604/20831862.1083273399457924917684