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2012 | 13 | 4 | 367-371
Tytuł artykułu

Estimation of VO2MAX According to The 3’Bike Test

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose. The aim of this study was to derive the regression equation for predicting VO2max of athletes by the relatively new submaximal 3'Bike Test. Methods. This test was conducted on 1501 active football male players, aged 16÷35 years. A medical anamnesis was administered and then the athletes’ weight was measured. Afterwards, the athletes performed the 3'Bike Test followed by the Astrand Bike Test for comparison reasons. Results. Linear regression of the data indicated that the produced regression model, as a whole, is statistically significant. In addition, the system of predictive variables was able to explain for 48% of total variability of the criterion variable VO2maxAST. According to the regression coefficients that had been derived, a regression equation that could predict VO2max was created. A significant high correlation (r = 0.688) and a non-significant paired t-test (p = 0.782) found between the measured VO2max (Astrand test) and the predicted VO2max (3'Bike Test) indicates a large similarity between the predicted and measured VO2max values. Conclusions. The 3'Bike Test was found to be a capable measurement tool of aerobic endurance, more reliable and valid than the Astrand submaximal test, as well as being shorter, more easily executed and a better predictor of VO2max.
Wydawca

Czasopismo
Rocznik
Tom
13
Numer
4
Strony
367-371
Opis fizyczny
Daty
wydano
2012-11-01
online
2013-01-26
Twórcy
  • Institute of Sports Anthropology, Pristina, Kosovo, agronmrexhepi@gmail.com
  • Sport Center for Increasing of Morpho-functional Abilities, Fitness & Nutrition “Corpore Sano”, Pristina, Kosovo
  • University College for Sport Education – Universi, Pristina, Kosovo
  • Institute of Sports Anthropology, Pristina, Kosovo
  • Faculty of Special Education and Rehabilitation, University of Zagreb, Zagreb, Croatia
Bibliografia
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  • 2. Assessing Cardiorespiratory Endurance. Available from: http://academic.wsc.edu/faculty/taeveto1/ped470/lecture/ppt/aerobic.ppt#338,1,Assessing Cardiorespiratory Endurance [Accessed: 11.02.2012].
  • 3. Astorino T.A., Robergs R.A., Ghiasvand F., Marks D., Burns S., Incidence of the oxygen plateau at VO2max during exercise testing to volitional fatigue. JEPonline, 2000, 3 (4), 1-12. Available from: http://faculty.css.edu/tboone2/asep/Astorino.pdf [Accessed: 25.10.2012].
  • 4. Liverpool John Moores University. Fitness Testing. Available from: URL: https://www.ljmu.ac.uk/ECL/digitalresources/86831.htm
  • 5. Foss M.L., Keteyian S.J., Fox’s Physiological Basis for Exercise and Sport. 6th ed. McGraw-Hill International, New York 1998.
  • 6. McArdle W.D., Katch F.I., Katch V.L., Exercise physiology. 4th ed., Lippincott Williams & Wilkins, Baltimore, 1996.
  • 7. Powers S.K., Howley E.T., Exercise physiology. International edition. McGraw-Hill International, New York 2001, 279-292.
  • 8. Rexhepi A.M., Mjekësia Sportive - Sports Medicine [in Albanian]. Mozaiku, Prishtina 2009.
  • 9. Rexhepi A., Brestovci B., Comparison of the 3'Bike Test with the Astrand Bike Test by VO2max. Hum Mov, 2011, 12 (4), 348-352, doi: 10.2478/v10038-011-0040-8. Available from: http://www.degruyter.com/view/j/humo.2011.12.issue-4/v10038-011-0040-8/v10038-011-0040-8. xml?format=INT [Accessed: 28.12.2011].[Crossref]
  • 10. Stykes K., Roberts A., The Chester step test - a simple yet effective tool for the prediction of aerobic capacity. Physiother, 2004, 90 (4), 183-188, doi: 10.1016/j.physio.2004.03.008.[Crossref]
  • 11. Akalan C., Robergs R.A., Kravitz L., Prediction of VO2max from an individualized submaximal cycle ergometer protocol. JEPonline, 2008, 11 (2). Available from: http://faculty.css.edu/tboone2/asep/AkalanJEPonlineApril2008.pdf [Accessed: 11.02.2012].
  • 12. Sanada K., Midorikawa T., Yasuda T., Kearns C.F., Abe T., Development of non-exercise prediction models of maximal oxygen uptake in healthy Japanese young men. EurJ Appl Physiol, 2007, 99 (2), 143-148, doi: 10.1007/s00421- 006-0325-3.[WoS][Crossref]
  • 13. Stahn A., Terblanche E., Grunert S., Strobel G., Estimation of maximal oxygen uptake by bioelectrical impedance analysis. Eur J Appl Physiol, 2006, 96 (3), 265-273, doi: 10.1007/s00421-005-0025-4.[PubMed][Crossref]
  • 14. Moon J.R., Dalbo V.J., Roberts M.D., Kerksick Ch.M., Stout J.R., Usefulness of bioelectrical impedance in the prediction of VO2max in healthy men and women. Sport J, 2011, 14. Available from: http://www.thesportjournal.org/article/usefulness-bioelectrical-impedance-predictionvo2max-healthy-men-and-women [Accessed: 15.02.2012].
  • 15. Heyward V.H., Advanced fitness assessment and exercise prescription. 5th ed. Human Kinetics, Champaign 2006, 57-58.
  • 16. Southard T.L., Pugh J.W., Effect of hydration state on heart rate-based estimates of VO2max. JEPonline, 2004, 7 (1), 19-25. Available from: http://www.asep.org/files/SouthardV2.pdf [Accessed: 05.11.2011].
  • 17. American College of Sports Medicine. ACSM’s guidelines for exercise testing and prescription. 6th ed. Williams & Wilkins, Baltimore 2000.
  • 18. George J.D., Vehrs P.R., Babcock G.J., Etchie M.P., Chinevere T.D., Fellingham G.W., A modified submaximal cycle ergometer test designed to predict treadmill VO2max. Meas Phys Educ Exerc Sci, 2000, 4 (4), 229-243. Available from: http://www.informaworld.com/smpp/content~db=all?content=10.1207/S15327841MPEE0404_3 [Accessed:05.05.2010].
  • 19. Verma S.S., Prediction of maximal aerobic power in man: a nomographic approach. Ergonomics, 1994, 37 (9), 1491- 1494, doi:10.1080/00140139408964928.[Crossref]
  • 20. NLREG. Understanding the results of an analysis. Available from: http://nlreg.com/results.htm [Accessed: 12.02.2012].
  • 21. Princeton University. Data and statistical services - Interpreting regression output, 2007. Available from: http://dss.princeton.edu/online_help/analysis/interpreting_regression.htm [Accessed: 12.02.2012]. Paper received by the Editors: March 22, 2012 Paper accepted for publication: October 9, 2012
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.-psjd-doi-10_2478_v10038-012-0044-z
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