Javelin Thrower’s Upper Arm Effect on the Elbow Joint Muscles, Ligaments and Reaction Forces during the Release Stage


(*) Corresponding author


Authors' affiliations


DOI's assignment:
the author of the article can submit here a request for assignment of a DOI number to this resource!
Cost of the service: euros 10,00 (for a DOI)

Abstract


Our understanding of athletic and sports injuries, and sports medicine has grown immensely as we have become more aware of the importance of exercise and team sports. With the increased number of sports and games played, the risk of injury and the number of people affected have increased. Athletic injuries can occur when an individual is careless, or not fit enough to undertake sports and games. In some cases people become injured during the use of sports equipment. Athletic injuries result from over stress put on bones or muscles. Most common injuries are soft tissue; muscles, tendons, and ligaments injuries. Also, a dislocation occurs when two bones are jolted apart at a joint and is often accompanied by a ligament tear in the joint. In this study, a three-dimensional dynamic model analysis of the human elbow joint during javelin throw has been developed. The model was used to compare between the muscle, ligament, and reaction forces at the human elbow region of two athletes; a professional one and a beginner. The effect of the trajectory of the thrower's upper limb on the distance and on the muscles forces, ligaments forces, and reaction forces was investigated. The javelin throw distance recorded for the professional subject was as twice as that recorded for the beginner subject. The model results showed that the professional subject mainly depended on the upper limb major muscles to achieve his longer throw, while the beginner subject did not, mainly, depend on these muscles. In summary, identification of root causes, either in techniques or training programs, will minimize injury recurrences. The presented model may help in choosing the right techniques or training programs by which injuries, for human elbow joint, can be avoided or at least can be minimized
Copyright © 2014 Praise Worthy Prize - All rights reserved.

Keywords


Elbow joint; Javelin throwing; Muscle forces

Full Text:

PDF


References


Fleisig GS, Escamilla RF. "Biomechanics of the elbow in the throwing athlete. Operative Techniques", Operation Techniques Sports Medicine, Vol. 4, No.2, 1996, pp. 62–70.
http://dx.doi.org/10.1016/s1060-1872(96)80050-5

Alejandro Badia, and Charleen Stennett, Sports-related Injuries of the Elbow, Journal of Hand Therapy, Vol. 19, 2006, pp. 206–233.
http://dx.doi.org/10.1197/j.jht.2006.02.006

King JW, Brelsford JH, Tullos HS: Analysis of the pitching arm of the professional baseball pitcher, Clin Orthop, Vol. 67, 1969, pp. 67-76.
http://dx.doi.org/10.1097/00003086-196911000-00018

E. Lyle C. Jr., Jeffrey R. D., Robert S. W. and James R. A., "Elbow Injuries in Throwing Athletes: A Current Concepts Review", American Journal of Sports Medicine, 2003, Vol.31, pp. 621-637.

Whiting C.W., George RJ. and Halushka M. “Body segment and release parameter contribution to new-rules javelin throwing”, International Journal of Sport Biomechanics, Vol.7, 1991, pp.111-124.

Morriss C., and Bartlett R., "Biomechanical factors critical for performance in the men's javelin throw", Sports Medicine, 1996, Vol.21, No.6, pp.438-446.
http://dx.doi.org/10.2165/00007256-199621060-00005

Bartlett R.M, and Best, R.J “the biomechanics of javelin throwing”: a review. Journal of Sports Sciences, Vol.6, 1988, pp. 1-38.
http://dx.doi.org/10.1080/02640418808729791

Best R.J., Bartlett R.M., and Morriss C.J., “A three-dimensional analysis of javelin throwing technique” Journal of Sports Sciences, Vol.11, 1993, pp. 315-328.
http://dx.doi.org/10.1080/02640419308730001

Saratlija P, Zagorac N, and Babić V., "Influence of kinematic parameters on result efficiency in javelin throw.", Coll Antropol. 2013, Vol.37, No.2, pp.31-37.

Bartonietz K., “Javelin throwing: An approach to performance development”, Biomechanics in Sport, edited by Zatorsky V, 2000,pp. 404-434, London, Blackwell Science Ltd.
http://dx.doi.org/10.1002/9780470693797.ch20

Arpad I. and Rita M., "Shoulder muscle activity during pushing, pulling, elevation and overhead throw", Journal of Electromyography and Kinesiology, 2005, Vol. 15 pp. 282–289.
http://dx.doi.org/10.1016/j.jelekin.2004.10.005

Adel A. M., Khaled T. M., El-Araby M. M., and Taher H. A., "A comprehensive three dimensional dynamic model of the human elbow joint.", International Review of Physics, Vol. 3 No.2 April 2009. (Praise Worthy Prize).

Mohamed A.A,Mohamed K T. Attia E.M. and Awad T.H. "A comprehensive three dimensional dynamic model of the human elbow joint", M.Sc. Thesis, Alexandria University, Mechanical Engineering Department, 2006.

Zatorsky V., “The mass and inertia characteristics of the main segments of the human body”, Journal of Biomechanics, Vol.16, 1983, pp. 1152-1159.

Jose Campos et. al, “Three dimensional kinematic analysis of elite javelin throwers at 1999 IAAF world championships in athletics”, New studies Athletics, Vol. 2, 2004, pp. 47-57.

Feras M.H., Saad M.K., Abdel-Halim H., and Khaled T., “The effect of using the suggestion of instructional technique on javelin throw for beginners”, M. Sc. Thesis, Faculty of Physical education, Alexandria University- 2003.

An K.N., Hui F.C., Morrey B.F., Linschied R.L, and Chao E.Y., “Muscles across the elbow joint: a biomechanical analysis”, Journal of Biomechanics, Vol.14, 1981, pp. 659-669.
http://dx.doi.org/10.1016/0021-9290(81)90048-8

Brand P., Beach R., and Thompson D., “Relative tension and potential excursion of muscles in the forearm and hand”, Journal of Hand Surgery, Vol. 6, 3, 1981, pp.210-219.
http://dx.doi.org/10.1016/s0363-5023(81)80072-x

Amis A., Dowson D., and Wright V., “Muscle strengths and muscle-skeletal geometry of the upper limb”, Journal of Engineering in Medicine, Vol.8, 1979, 41-48.
http://dx.doi.org/10.1243/emed_jour_1979_008_010_02

Amis A., Dowson D., and Wright V., “Elbow joint force predictions for some strenuous isometric actions”, Journal of Biomechanics, Vol. 13, 1980, pp.765-775.
http://dx.doi.org/10.1016/0021-9290(80)90238-9

Amis A., Dowson D., and Wright V., “Analysis of elbow forces due to high-speed forearm movements”, Journal of Biomechanics, Vol.13, 1980, 825-831.
http://dx.doi.org/10.1016/0021-9290(80)90170-0

Breme N, Heydinger G., and Engin A. ,1985,“Biomechanics of the joints of the upper-limb 115 -135” in “Biomechanics of normal and pathological human articulating joints”(edited by Breme N., Engin A., and Correia K.), Martinus Nijhoff Publishers, in cooperation with NATO Scientific Affairs Division, Dordrecht/ Boston/ Lancaster.
http://dx.doi.org/10.1007/978-94-009-5117-4_7


Refbacks

  • There are currently no refbacks.



Please send any question about this web site to info@praiseworthyprize.com
Copyright © 2005-2024 Praise Worthy Prize