Have a personal or library account? Click to login
The Effects of a Running Consistency Programme on Footfall Variability and Performance in the Long Jump Cover

The Effects of a Running Consistency Programme on Footfall Variability and Performance in the Long Jump

Open Access
|Dec 2016

References

  1. 1. Stergiou N., Decker L.M. (2011). Human movement variability, nonlinear dynamics, and pathology: Is there a connection? Human Movement Science 30(5), 869-888.10.1016/j.humov.2011.06.002318328021802756
  2. 2. Newell K.M., Corcos D.M. (1993). Variability and motor control. Champaign: Human Kinetics.
  3. 3. Newell K.M. (1986). Constraints on the development of coordination. In M.G. Wade, H.T.A. Whiting (eds), Motor development in children. Aspects of coordination and control (pp. 341-360). Dordrecht, Germany: Martinus Nighoff.
  4. 4. Bartlett R., Wheat J., Robins M. (2007). Is movement variability important for sport biomechanists? Sports Biomechanics 6(2), 224-243.10.1080/1476314070132299417892098
  5. 5. Glazier P.S., Davids K.W. (2009). On analysing and interpreting variability in motor output. Journal of Science and Medicine in Sport 12(4), e2-e3.10.1016/j.jsams.2009.03.01019501548
  6. 6. Stergiou N., Harbourne R.T., Cavanaugh J.T. (2006). Optimal movement variability: A new theoretical perspective for neurologic physical therapy. Journal of Neurologic Physical Therapy 30, 120-129.10.1097/01.NPT.0000281949.48193.d9
  7. 7. Bradshaw E.J., Keogh J.W.L., Hume P.A., Maulder P., Nortje J., Marnewick M.(2009). The effect of biological movement variability on the performance of the golf swing in high- and low-handicapped players. Research Quarterly for Exercise and Sport 80(2), 185-196.10.1080/02701367.2009.1059955219650383
  8. 8. Button C., MacLeod M., Sanders R., Coleman S. (2003). Examining movement variability in the basketball free-trow action at different skill levels. Research Quarterly for Exercise and Sport 74, 257-269.10.1080/02701367.2003.1060909014510290
  9. 9. Davids K., Glazier P., Araujo D., Bartlett R. (2003). Movement systems as dynamical systems: the functional role of variability and its implications for sports medicine. Sports Medicine 33, 245-260.10.2165/00007256-200333040-0000112688825
  10. 10. Bartlett R.M. (2008). Movement variability and its implications for sports scientists and practitioners: An overview. International Journal of Sports Science & Coaching 1(3), 113-124.10.1260/174795408784089397
  11. 11. Chow J.Y., Davids K., Button C., Koh M. (2007). Variation in coordination of a discrete multiarticular action as a function of skill level. Journal of Motor Behavior 39, 463-479.10.3200/JMBR.39.6.463-48018055353
  12. 12. Wilson C., Simpson S.E., van Emmerik R.E., Hamill J. (2008). Coordination variability and skill development in expert triple jumpers. Sports Biomechanics 7(1), 2-9.10.1080/1476314070168298318341132
  13. 13. Lee D.N., Lishman J.R., Thomson J.A. (1982). Regulation of gait in long jumping. Journal of Experimental Psychology: Human Perception and Performance 8, 448-459.
  14. 14. Scott M.A., Li F., Davids K. (1997). Expertise and the regulation of gait in the approach phase of the long jump. Journal of Sports Sciences 15, 597-605.10.1080/0264041973670389486437
  15. 15. Hay J.G. (1988). Approach strategies in the long jump. International Journal of Sport Biomechanics 4, 114-129.10.1123/ijsb.4.2.114
  16. 16. Panteli F., Smirniotou A., Theodorou A. (2016). Performance environment and nested task constraints influence long jump approach run: a preliminary study. Journal of Sports Sciences 34(12), 1116-1123.10.1080/02640414.2015.109256726390236
  17. 17. Starzak M., Makaruk H., Sadowski J. (2015). Step length adjustment in the long jump with and without take-off board in non-long jumpers. Antropomotoryka. Journal of Kinesiology and Exercise Sciences 70(25), 19-25.
  18. 18. Theodorou A., Ioakimidou E., Kouris P., Panoutsakopoulos V., Smpokos E. (2013). Colour contrast and regulation of the long jump approach run. Journal of Human Sport & Exercise 8(3), 681-687.10.4100/jhse.2013.8.Proc3.14
  19. 19. Greenwood D.A. (2014). Informational constraints on performance of dynamic interceptive actions. Doctoral thesis, Queensland University of Technology, Brisbane, Australia.
  20. 20. Makaruk H., Starzak M., Lopez J.L. (2015). The role of a check-mark in step length adjustment in long jump. Journal of Human Sport and Exercise 10(3), 756-763.10.14198/jhse.2015.103.01
  21. 21. Makaruk H., Starzak M., Sadowski J. (2015). Does step length adjustment determine accuracy of take-off and approach run velocity in long and triple jumps? Human Movement 16(3), 124-129.10.1515/humo-2015-0038
  22. 22. Lundin P., Berg W. (1993). Developing the approach in the jumps. New Studies of Athletic 8(1), 45-50.
  23. 23. Galloway M., Connor K. (1999). The effect of steering on stride pattern and velocity in long jump. Scientific proceedings “XVII International Symposium on Biomechanics in Sports” (pp. 41-44). Perth, Western Australia: Edith Cowan University.
  24. 24. Makaruk B., Makaruk H., Sacewicz T. (2009). The efficacy of speed training conducted by applying runs between guide strips. Wychowanie Fizyczne i Sport 53(3), 167-172.
  25. 25. Veligekas P., Bogdanis G.C., Stabolitis C., Frantzis D. (2012). Rest interval between jumps during track and field jumping competitions. Book of Abstracts of the 17th Annual Congress of the European College of Sport Science (pp. 604). Bruges, Belgium: E.C.S.S.
  26. 26. Hay J.G., Koh T.J. (1988). Evaluating the approach in horizontal jumps. International Journal of Sport Biomechanics 4, 372-392.10.1123/ijsb.4.4.372
  27. 27. Seifert L., Button C., Davids K. (2013). Key properties of expert movement systems in sport: An ecological dynamics perspective. Sports Medicine 43, 167-178.10.1007/s40279-012-0011-z23329604
  28. 28. Newell K.M. (1985). Coordination, control and skill. In D. Goodman, R.B. Wilberg, I.M. Franks (eds), Differing perspectives in motor learning, memory, and control (pp. 295-317). Amsterdam: Elsevier.
  29. 29. Montagne G., Cornus S., Glize D., Quaine F., Laurent M. (2000). A perception-action coupling type of control in long jumping. Journal of Motor Behavior 32, 37-43.10.1080/0022289000960135811008270
  30. 30. 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/h0055392
  31. 31. 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.10.1.61
  32. 32. MacPherson A.C., Collins D., Graham-Smith P., Turner A.P. (2013). Using rhythmicity to promote performance in horizontal jumps: An exemplar of the need for intra-individual intervention. International Journal of Sport Psychology 44, 93-110.
  33. 33. Bradshaw E.J., Aisbett B. (2006). Visual guidance during competition performance and run-through training in long jumping. Sports Biomechanics 5(1), 1-14.10.1080/14763141.2006.962822116521619
  34. 34. Glize D., Laurent M. (1997). Controlling locomotion during the acceleration phase in sprinting and long jumping. Journal of Sports Sciences 15, 181-189.10.1080/0264041973674529258848
DOI: https://doi.org/10.1515/pjst-2016-0019 | Journal eISSN: 2082-8799 | Journal ISSN: 1899-1998
Language: English
Page range: 145 - 152
Submitted on: Jun 10, 2016
|
Accepted on: Sep 20, 2016
|
Published on: Dec 17, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Marcin Starzak, Hubert Makaruk, Anna Starzak, published by University of Physical Education in Warsaw
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.