PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Effect of increased load on vertical jump mechanical characteristics in acrobats

Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this study, we attempt to answer the following question: To what degree the higher muscular activity determined by increased load in the extension phase (eccentric muscle action) of vertical jump affects its efficiency? Ten high performance acrobats participated in this investigation. The acrobats performed tests that consisted of five single “maximal” standing vertical jumps (counter movement jump – CMJ) and five single vertical jumps, in which the task was to touch a bar placed over the jumping acrobats (special counter movement jump – SCMJ). Subsequently, they performed five single drop jumps from an elevation of 0.40 m (DJ). Ground reaction forces were registered using the KISTLER 9182C force platform. MVJ software was used for signal processing [1] and enabling calculations of kinematic and kinetic parameters of the subject’s jumping movements (on-line system). The results obtained show that the height of jump (h), the mean power (Pmean) and the maximum power (Pmax) are statistically significant, and higher in DJ. The results prove fine adaptation of the nervous system in acrobats to muscle extension and workload, due to the 40 cm high drop jump. Presumably, this height is closest to that which acrobats experience during landing, after performing flic-flacs or round-off.
Rocznik
Strony
33--37
Opis fizyczny
Bibliogr. 22 poz., il.
Twórcy
autor
autor
Bibliografia
  • [1] STANIAK Z., Opis techniczny systemu Multi Vertical Jump (MVJ_v_ 1.0) do pomiaru charakterystyk mechanicznych wyskoków na platformie dynamometrycznej, wydruk komputerowy, 1997.
  • [2] KNUDSON D., Fundamentals of biomechanics, Chico, Springer, 2007.
  • [3] BOBER T., Działanie mięśni w cyklu rozciągnięcie-skurcz a skuteczność techniki sportowej, Sport Wyczynowy, 1995, 1-2.
  • [4] ELLIOTT B.C., BAXTER K.G., BESIER T.F., Internal rotation of the upper-arm segment during a stretch-shortening cycle movement, J. Appl. Biomechanics, 1999, 15, 381-395.
  • [5] WILSON G.J., ELLIOTT B.C., WOOD G.A., The effect on performance of imposing a delay during a stretch-shortening cycle movement, Med. Sci. Sport. Exer., 1991, 23, 364-370. \
  • [6] BIRD M., HUDSON J., Measurement of elastic-like behavior in the power squat, J. Sci. Med. Sport., 1998, 1, 89-99.
  • [7] CRONIN J.B., McNAIR P.J., MARSHALL R.N., Magnitude and decay of stretch-induced enhancement of power output, Eur. J. Appl. Physiol., 2001, 84, 575-581.
  • [8] KOMI P.V., The stretch-shortening cycle and human power output, [in:] Jones N.L., McCartnay N., McComas A.J. (eds.), Human muscle power, IL, Human Kinetics, Champaign, 1986, 27-39.
  • [9] Van INGEN SCHENAU G.J., BOBBRT M.F., De HAAN A., Does elastic energy enhance work and efficiency in the stretch-shortening cycle? J. Appl. Biomech., 1997, 13, 389-415.
  • [10] WILK K.E., VOIGHT M.L., KEIRS M.A., GAMBETTA V., ANDREWS J.R., DILLMAN C.J., Stretch-shortening drills for the upper extremities: theory and clinical application, JOSPT, 1993, Vol., 17 (5), 225-239.
  • [11] KIELAK D., PAC-POMARNACKI A., Ćwiczenia plyometryczne - ich istota i znaczenie (I), Sport Wyczynowy, 2002, 11-12, 13-24.
  • [12] TRZASKOMA Z., TRZASKOMA Ł., Kompleksowe zwiększanie siły mięśniowej sportowców, COS, Biblioteka Trenera, Warszawa, 2001.
  • [13] KOMI P.V., BOSCO C., Utilization of stored elastic energy in leg extensor muscles by men and women, Med. Sci. Sport., 1978, Vol. 10 (4), 261-265.
  • [14] McCLYMONT D., Use of the reactive strength index (RSI) as a plyometric monitoring tool, 5th World Congress of Science in Football, Lisbon, April, 2003.
  • [15] ZATSIORSKY V.M., KRAEMER W.J., Practice and Science of Strength Training, , IL, Human Kinetics, Champaign, 2006.
  • [16] SALE D.G., Neural adaptation to strength training, [in:] Komi P.V. (ed.), Strength and power in sport, Blackwell Scientific Publications, Oxford, 1992, 249-265.
  • [17] BOBER T., RUTKOWSKA-KUCHARSKA A., PIETRASZEWSKI B., Ćwiczenia plyometryczne - charakterystyka biomechaniczna, wskaźniki, zastosowanie, Sport Wyczynowy, 2007, 7-9, 5-23.
  • [18] KRÓL H., The influence of external factors on result of a motor performance, (in Polish), Acta Bioeng. Biomech., 1999, Vol., 1, Suppl. 1, 253-256.
  • [19] ZSHORDOTSHKO R.W., POLISHTSUK W.D., Pryshok v vysatu, (in Russian), Zdorovija, Kijew, 1985.
  • [20] KRÓL H., SOBOTA G., NAWRAT A., Level of strength-speed abilities of footballers, Zeszyty Naukowe Katedry Mechaniki Stosowanej Politechniki Śląskiej, 2006, 26, 203-206.
  • [21] VAVERKA F., GAJDA V., The influence of the intensity of complex movement on the accuracy of its realization, [in:] Juras G., Słomka K., (eds.), Current Research in Motor Control III, The Jerzy Kukuczka University School of Physical Education in Katowice, 2008, 131-136.
  • [22] BOBER T., RUTKOWSKA-KUCHARSKA A., SZPALA A., Hard vs. soft landing in depth jump, Acta Bioeng. Biomech., 2001, Vol. 4, Suppl. 1, 595.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPBA-0009-0037
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.