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Slavenko Likic1, Izet Bajramovic1, Damira Vranesic-Hadzimehmedovic1, , ,

1University of Sarajevo, Faculty for Sport and Physical Education, Sarajevo, Bosnia and Herzegovina
2

Relationship Between Morphological Characteristics and Dynamic Running Parameters in the Case of Boys Aged 10-12 years

J. Anthr. Sport Phys. Educ. 2018, 2(1), 27-30 | DOI: 10.26773/jaspe.180105

Abstract

The aim of the research is to determine the relationship between morphological characteristics and dynamic parameters of running in the case of boys aged 10-12 years. The study was conducted on a sample of 75 respondents, who are separated from the fourth-grade elementary school population. Morphological characteristics are measured by a set of fifteen variables: longitudinal dimensionality (3 variables), transversal dimensionality (4 variables), volume and body mass (4 variables), fatt tissue (4 variables), and body mass index. Dynamic parameters of running were estimated by measuring the passing time at 5m segments of the whole distance. Variables of dynamic running parameters have achieved statistically significant correlation with variables of transversal dimensionality, volume and body mass and fat tissue (p<0.05). Also, statistically significant correlation (p<0.01) of mean intensity was obtained between body mass index and all variables of dynamic running parameters. Based on the results of dynamic running parameters it can be concluded that the analyzed sample of boys aged 10-12 years is characterized by the following pattern of running structure at 50 meters: the acceleration phase lasts from the start to the fifteen meters section; stable running phase lasts from 15 to 40 meters, indicating that the maintenance length of the maximum speed level is 25 meters; and the deceleration phase of running lasts from 40 to 50 meters.

Keywords

Bio-Motor Potential, Model of Running Structure, Boys Aged 10-12 Years



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References

Ae, M., Itto, A. & M. Suzuki (1992). The men’s 100 m. New Studies in Athletics, 7 (1), 47-52.

Bračič, M., K. Tomažin, M. Čoh (2009). Dejavniki razvoja maksimalne hitrosti pri mladih atletinjah starih od 7 do 14 let. Ljubljana: Fakulteta za šport, Inštitut za kineziologijo.

Buenen, G., & Malina, R. (1988). Growth and Physical Perfomance Relative to the Timing the Adolescent Spurt. Exercise & Sport Sciences Reviews (16), 503-540.

Chapman A.E., & G.E. Caldwell (1983). Kinematic limitations of maximal sprinting speed. Journal of Biomechanics, 16 (1), 79-83.

Čoh, M., S. Mihajlovič, i U. Praprotnik (2001). Morfološke in kinematične značilnosti vrhunskih šprinterjev. U M. Čoh (ur.) Biomehanika atletike. Ljubljana: Fakulteta za šport.

Čoh, M., M. Bračić i N. Smajlović (2010). Methodical aspects of maximum speed development. Sport Science, 3(2), 11-14.

Malina, R. M. (1984). Human growth, maturation and regular physical activity. V: Boileau R. A. (ed.) Advances in pediatric sport sciences (vol. 1). Biological issues. Champaign, Illinois: Human Kinetics, 59-83.

Mero, A., P.V. Komi, & R.J. Gregor (1992). Biomechanics of sprint running: A rewiew. Sports Medicine, 13, 376-392.

Prapotnik, U. & M. Čoh (2001). Razlike v šprinterskem teku mladih atletov, starih 10 do 15 let. Biomehanika atletike. Fakulteta za šport Univerze v Ljubljani.

Smajlović, N. (2010). Atletika. Fakultet sporta i tjelesnog odgoja Univerziteta u Sarajevu.