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Somatotype variables related to strength and power output in male basketball players

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of this study was to investigate the relationship between somatotype, muscular strength, power output measured in maximal cycle ergometer exercise bouts, and maximal power output and height of rise of the body mass centre (jump height) measured in akimbo counter movement jump (ACMJ), counter movement jump (CMJ) and spike jump (SPJ), in male basketball players. Methods: Thirteen male basketball players (second division, age 19.4±0.8 years, body height 192.9±5.6 cm, body mass 88.8±8.6 kg, training experience 9.3±0.8 years) participated in the study. Somatotype was determined using the Heath-Carter method. Maximal joint torques were measured under static conditions. Power output was measured in 2 maximal cycle ergometer exercise bouts, 10 s each, with increasing external loads equal to 7.5 and 10.0% of the body weight (BW). All jump trials (ACMJ, CMJ and SPJ) were performed on a force plate. Results: The mean somatotype of basketball players amounted to: 2.8-4.2-3.2. Sum of the joint torques for left and right lower extremities (0.613), trunk (0.631) and all six measured muscle groups (0.647) were significantly correlated (p<0.05) with mesomorphy and ectomorphy. Conclusion: It can be assumed that basketball players’ anthropometric characteristics can influence their level of performance but it is not a decisive factor.
Słowa kluczowe
Rocznik
Strony
161--167
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
  • Institute of Physical Culture, Kazimierz Wielki University, Bydgoszcz, Poland
autor
  • Department of Biomechanics, Institute of Sport – National Research Institute, Warsaw, Poland
autor
  • Josef Pilsudski University of Physical Education in Warsaw, Poland
autor
  • Department of Basketball, Josef Pilsudski University of Physical Education in Warsaw, Poland
Bibliografia
  • [1] Boguszewska K., Boguszewski D., Buśko K., Specjal Judo Fitness Test and biomechanics measurements as a way to control of physical fitness in young judoists, Arch. Bud., 2010, 6(4), OA205-209.
  • [2] Buśko K., Lewandowska J., Lipińska M., Michalski R., Pastuszak A., Somatotype variables related to muscle torque and power output in female volleyball players, Acta Bioeng Biomech, 2013, 15(2), 119-126.
  • [3] Carter J.E.L., Heath B.H., Somatotyping - development and applications, Cambridge Studies in Biological Anthropology. Cambridge University Press, CambridgeNewYork-Port Chester-Melbourne-Sydney, 1990.
  • [4] Gualdi-Russo E., Zaccagni L., Somatotype, role and performance in elite volleyball players, J Sports Med Phys Fitness, 2001, 41(2), 256–262.
  • [5] Köklü Y., Alemdaroğlu U., Koçak F.U., Erol A.E., Fındıkoğlu G., Comparison of chosen physical fitness characteristics of Turkish professional basketball players by division and playing position. J. Human Kinetics, 2011, 30, 99–106. DOI: 10.2478/v10078-011-0077-y 99
  • [6] Krawczyk B., Skład M., Majle B., Body components of male and female athletes representing various sports, Biol Sport, 1995, 12(4), 243-250.
  • [7] Lewandowska J., Buśko K., Pastuszak A., Boguszewska K., Somatotype variables related to muscle torque and power in judoists, J Human Kinetics, 2011, 30, 21-28.
  • [8] Malousaris G.G., Bergeles N.K., Barzouka K.G., Bayios I.A., Nassis G.P., Koskolou M.D., Somatotype, size and body composition of competitive female volleyball players, J Sci Med Sport, 2008, 11, 337-344.
  • [9] Nikolaidis P.T., Calleja J., Padulo J., The effect of age on positional differences in anthropometry, body composition, physique and anaerobic power of elite basketball players, Sport Sciences for Health, 2014, 10(3), 225-233.
  • [10] Norton K., Whittingham N., Carter L., Kerr D., Gore C., Marfell-Jones M., Measurement techniques in anthropometry, In K. Norton, and T. Olds (eds.), Anthropometrica. University of New South Wales, Sydney, 1996, p. 25-75.
  • [11] Ostojic S.M., Mazic S., Dikic N., Profiling in basketball: Physical and physiological characteristics of elite players, J Strength Cond Res, 2006, 20(4), 740-744.
  • [12] Pelin C., Kürkçüoðlu1 A., Özener B., Yazýcý A.C., Anthropometric characteristics of Young Turkish Male Athletes, Coll Antropol, 2009, 33(4), 1057-1063.
  • [13] Piechaczek H., Body structure of male and female basketball players, Biol Sport, 1990, 7(4), 273–284.
  • [14] Pietraszewski B., Rutkowska-Kucharska A., Relative power of the lower limbs in drop jump, Acta Bioeng Biomech, 2011, 13(1), 13-18.
  • [15] Pilis W., Wojtyna J., Langfort J., Zając A., Manowska B., Chmura J., Zarzeczny R., Relationships between sport results, somatic variables and anaerobic power in elite weight lifters, Biol Sport 1997, 14(4), 275-281.
  • [16] Quarrie K.L., Handcock P., Toomey M.J., Waller A.E., The Rugby Injury and Performance Project. IV, Anthropometric and physical performance comparisons between positional groups of senior A rugby players. British J Sports Med, 1996, 30, 53-56.
  • [17] Quarrie K.L., Wilson B.D., Force production in the rugby union scrum, J Sports Sci, 2000, 18, 237-246.
  • [18] Szpala A., Rutkowska-Kucharska A., Drapała J., Brzostkowski K., Zawadzki J., Asymmetry of electromechanical delay (EMD) and torque in the muscle stabilizing spinal column, Acta Bioeng Biomech, 2010, 12(4), 11-18.
  • [19] Viviani F., The somatotype of medium class Italian basketball players, J Sports Med Phys Fitness, 1994, 34(1), 70-75.
  • [20] Ziv G., Lidor R., Vertical jump in female and male basketball players: a review of observational and experimental studies, Scand J Med Sci Sports , 2010, 20, 556-567.
  • [21] Ziv G., Lidor R,. Physical Attributes, Physiological Characteristics, On-Court Performances and Nutritional Strategies of Female and Male Basketball Players, Sports Med, 2009, 39 (7), 547-568.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-20d2e337-87b3-4de4-a71d-bbab6f04c656
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