The Estimation of the RAST Test Usefulness in Monitoring the Anaerobic Capacity of Sprinters in Athletics
By: Jakub Adamczyk
Open Access
|Oct 2011References
- Nummela, A., Mero A. & Rusko H. (1996). The effects of sprint training on the determinants of maximal anaerobic running test.17(2), 114-119 (suppl.).
- Spencer, M. R. & Gastin P. B. (2001). Energy system contribution during 200- to 1500-m running in highly trained athletes.1, 157-162.
- Jastrzębski, Z. (1995). Selected aspects of the assessment of anaerobic capacity by applying the Wingate-test.12(3), 131-135.
- Calbet, J. A. L., Chavarren J. & Dorato C. (1997). Fractional use of aerobic capacity during a 30 and 45-s Wingate test.76, 308-313.
- Van Ingen Schenau, G. J., Jacobs R. & de Koning J. J. (1991). Can cycle power predict sprint running performance.63, 255-260.
- Nummela, A., Hämäläinen I. & Rusko H. (2007). Comparison of maximal anaerobic running tests on a treadmill and track.25(1), 87-96.
- MacKenzie, B. (2005).(pp. 44-46). London: Electric Word plc.
- Dotan, R. & Bar-Or O. (1983). Load optimization for Wingate Anaerobic Test.51, 409-417.
- Staniak, Z. (1994). The system of information technology to the aid of efficiency tests led on cycloergometres.1, 251-257. [in Polish]
- Tharp, G. D., Newhouse R. K., Uffelman W. G., Thorland H. G. & Johnson G. O. (1985). Comparison of sprint and run times with performance on the Wingate Anaerobic Test.56, 73-76.
- Nesser, T. W., Latin R. W., Berg K. & Prentice E. (1996). Physiological determinants of 40-meter sprint performance in young male athletes.10, 263-267.
- Almuzaini, K. S. (2000). Optimal peak and mean power on the Wingate test: relationship with sprint ability, vertical jump and standing long jump in boys.4, 349-359.
- Iskra, J., Zając A. & Waśkiewicz Z. (2006). Laboratory and field tests in evaluation of anaerobic fitness in elite hurdlers.16, 25-38.
- Jaskólski, A. & Jaskólska A. (2005).Wrocław: AWF Wrocław. [in Polish]
- Bosco, C. (1983). A simple method for measurement of mechanical power in jumping.50, 273-282.
- Duncan, M. J. & Hankey J. (2010). Concurrent validity of the backwards overhead medicine ball throw as a test of explosive power in adolescents.14(3), 102-107.
- Smirnotou, A., Katsikas C., Paradisis G., Argeitaki P., Zacharogiannis E. & Tziortzis S. (2008). Strength-power parameters as predictors of sprinting performance.48(4), 447-454.
- Rusko, H., Nummela A. & Mero A. (1993). A new method for the evaluation of anaerobic running power in athletes.66, 97-101.
- Nummela, A., Alberts M., Rijntjes R., Luhtanen P. & Rusko H. (1996). Reliability and validity of the maximal anaerobic running test.17(2), 97-102 (suppl.).
- Nummela, A., Mero A., Stray-Gundersen J. & Rusko H. (1996). Important determinants of anaerobic running performance in male athletes and non-athletes.17(2), 91-96 (suppl.).
- Zagatto, A. M., Beck W. R., Gobatto C. A. (2009). Validity of the Running Anaerobic Sprint Test for assessing anaerobic power and predicting short-distance performances.23(6), 1820-1827.
- Vandewalle, H., Pérès G. & Monod H. (1987). Standard anaerobic exercise tests.4(4), 268-289.
- Carvalho, H. M., Silva M. J., Figueiredo A. J., Gonçalves C. E., Philippaerts R. M., Castagna C. & et al. (2011). Predictors of maximal short-term power outputs in basketball players 14-16 years.111, 789-796.
- Oliver, J. L. (2009). Is a fatigue index a worthwhile measure of repeated sprint ability?12, 20-23.
- Iskra, J. (2001).Katowice: AWF Katowice. [in Polish]
Language: English
Page range: 214 - 218
Published on: Oct 12, 2011
Published by: University of Physical Education in Warsaw
In partnership with: Paradigm Publishing Services
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© 2011 Jakub Adamczyk, published by University of Physical Education in Warsaw
This work is licensed under the Creative Commons License.