OLYMPIC TEAM ROWER STROKE TECHNICAL ANALYSIS
DOI:
https://doi.org/10.17770/sie2019vol4.3940Keywords:
rowers, stroke technical analysis, stroke rateAbstract
It is much spoken about and researched how to increase the speed of moving in rowing. Many scientists have researched the technical aspects in rowing. Most part of researches is based on oxygen maximal consumption and other physiological changes during a load. Although there are various researches, stating the technical nuances of leg and arm work, comparatively little attention is paid to the role of the arm work. The cycle length in different distances and having different water flow – before the wind, against the wind and with the side wind is stated. The aim was to research one stroke technical nuances in rowing looking for stroke rate from 24 till 34. A pilot study was carried out. One Lithuanian Olympic team rower was participated this pilot study and he was tested in different stroke rate. The following methods were used in study: test exercise, video analysis with KinezioVideoAnalyzer 3.0. and mathematical statistics. The results: having stated the result average of stroke rate was 28,6 and speed of stroke was 0,82 sec. Conclusions: the obtained data from rower show small differences changing stroke rate.
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References
Cornett, J., Bush, P., & Cummings, N. (2008). An 8-factor model for evaluating crew race performance. International Journal of Sports Science and Engineering, 2(03), 169-184.
Découfour, N., & Pudlo, P. (2007). Effets de l'augmentation de la cadence sur le geste du rameur. Staps, 2, 9-30.
Fung, Y.C. (2013). Biomechanics: mechanical properties of living tissues. Springer Science & Business Media.
Green, E.A. (1980). Comfort to contortion: the last ten years of rowing. British journal of sports medicine, 14(2-3), 109.
Halladay, E. (1990). Rowing in England: a social history: the amateur debate. Manchester University Press.
Hawkins, D.A. (2000). A new instrumentation system of trainig rewers. Journal of biomechanics, 33, 241-245.
Ivancevic, V.G., & Ivancevic, T.T. (2008). Human-like biomechanics: a unified mathematical approach to human biomechanics and humanoid robotics, 28. Springer Science & Business Media.
Kleshnev, V. (2004). Rowing biomechanics: Technology and technique. Technical Report.
Kleshnev, V. (2006). Rowing biomechanics. Technical Report.
Kleshnev, V. (2007). Temporal analysis of stroke cycle in rowing. In ISBS-Conference Proceedings Archive, 1, 1.
Kleshnev, V. (2010). Rowing biomechanics newslater,106, Vol.10.
Kleshnev, V. (2011). Rowing biomechanics newsletter,.118, Vol.11.
Krauksts, V. (1994). Airēšanas apmācības metodika. Rīga, LSPA.
Krauksts, V. (1997). Airēšana. Rīga: LSPA.
Lanka, J. (1995). Biomehānika. Rīga: LSPA.
Mazzone, T. (1988). Sports performance series: kinesiology of the rowing stroke. Strength & Conditioning Journal, 10(2), 4-13.
Nilsson, J., Tesch, P., & Thorstensson, A. (1977). Fatigue and EMG of repeated fast voluntary contractions in man. Acta Physiologica Scandinavica, 101(2), 194-198.
Panjkota, A., Šupuk, T., & Zanchi, V. (2006). Correlation of EMG activity and kinematics in case of ergometer rowing. In Proceedings of the 7th WSEAS International Conference on Automation & Information, Cavtat, Croatia. 1362942: World Scientific and Engineering Academy and Society (WSEAS) (pp. 23-28).
Wigglesworth, N. (2013). The Social History of English Rowing. Routledge.
Winter, D. A. (2009). Biomechanics and motor control of human movement. John Wiley & Sons.