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Kinematic evaluation of contrary body movement in sport ballroom dancing

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of the study was to analyse the contrary body movement in Viennese waltz performed by dancesport athletes and to determine its relationship on scores awarded by the adjudicators. Methods: Six high-level and six intermediate dance couples took part in the study. Each couple performed three identical series of three natural turns figure in the Viennese waltz. All of them were recorded on camera while performing to music. All the trials of each couple were evaluated by 6 international adjudicators as to the technical quality component from the Absolute Judging System. A device for measuring triaxial rotational angular velocities was mounted on the dorsal part of the pelvic girdle and on the back of the chest of each athlete. Results: An analysis of covariance revealed that the mean squares of the difference in angular rotation velocity of the pelvic girdle and thoracic spine of the tested dancers were strongly associated with scores given by the adjudicators (F1.9 = 11.5, p = 0.0240, np2 = 0.449) independently of the assignment to the given group. Conclusions: The analysis and comparison of top level and intermediate athletes showed that the suggested method of measurement, presentation and analysis of the profile motion of pelvic girdle and chest motion may become a good tool for a general evaluation of the movement technique as well as a quick and effective qualitative and quantitative biomechanical assessment of selected components of movement technique in dancesport.
Słowa kluczowe
Rocznik
Strony
120--128
Opis fizyczny
Bibliogr.36 poz., rys., tab., wykr.
Twórcy
  • Faculty of Physical Education, Józef Piłsudski University of Physical Education, Warsaw, Poland.
autor
  • Faculty of Physical Education, Józef Piłsudski University of Physical Education, Warsaw, Poland.
Bibliografia
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  • [3] BŁAŻKIEWICZ M., Joint Loads and Muscle Force Distribution During Classical and Jazz Pirouettes, Acta Bioeng. Biomech., 2021, 23 (1), https://doi.org/10.37190/ABB-01675-2020-02
  • [4] CHANG M., HALAKI M., ADAMS R., COBLEY S., LEE K.Y., O’DWYER N., An Exploration of the Perception of Dance and Its Relation to Biomechanical Motion: A Systematic Review and Narrative Synthesis, J. Dance Med. Sci., 2016, 20 (3), 127–136, https://doi.org/10.12678/1089-313X.20.3.127
  • [5] EUNGJOON KIM, JINOH JEONG, Mixed Method for Development of Preliminary Dancesport Judging Scale, Meas. Phys. Educ. Exerc. Sci., 2008, 10 (1), https://doi.org/10.21797/Ksme.2008.10.1.002
  • [6] Hearn G., A Technique of Advanced Standard Ballroom Figures, London 2004.
  • [7] JEONG J.O., KIM E.J., The Judges’ Organization and Objectivity of A Dance Sport Competition, Leis. Stud., 2006, 26, 483–495, https://doi.org/10.51979/Kssls.2006.05.26.483
  • [8] KIM M.S., LIM Y.H., HA HYE SEOK, Trust In Dancesport Competition Judges and Moral Philosophy of Kant, Kspsdm., 2018, 26 (3), https://doi.org/10.31694/Pm.2018.09.26.3.009
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  • [15] Moore A., Ballroom Dancing, Tenth Edit., A & C Black Publishers Limited, London 2007.
  • [16] MUELAS PÉREZ R., SABIDO SOLANA R., BARBADO MURILLO D., MORENO HERNÁNDEZ F.J., Visual Availability, Balance Performance and Movement Complexity in Dancers, Gait Posture, 2014, 40 (4), 556–560, https://doi.org/10.1016/J.Gaitpost.2014.06.021
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  • [18] PAVLESKI V., Judging Objectivity Analysis with Judging Component “Technical Qualities” In Standard Sport Dance “English Waltz”, J. Phys. Educ. Sport, 2020, 9, 201–206. https://doi.org/10.46733/Pesh2090201p.
  • [19] PREMELČ J., VUČKOVIĆ G., JAMES N., LESKOŠEK B., Reliability of Judging in Dancesport, Front. Psychol., 2019, 7 (10), https://doi.org/10.3389/Fpsyg.2019.01001
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  • [21] SHAN G., VISENTIN P., Advances In Arts Biomechanics, Advances in Arts Biomechanics, Canada, 2019.
  • [22] SHIOYA T., Analysis of Sway in Ballroom Dancing and Other Sports, Proc., 2017, https://doi.org/10.1299/Jsmeshd.2017.D-1
  • [23] SHIOYA T., Analysis of Swing Movement in Ballroom Dancing, Proc., 2018b, 2 (6), 224, https://doi.org/10.3390/Proceedings2060224
  • [24] SHIOYA T., Mechanical Comparison of Left Turn and Right Turn In Ballroom Dancing, Proc., 2018, (0), 21. https://doi.org/10.1299/Jsmeshd.2018.C-21
  • [25] SHIOYA T., Analysis of Pivot Turn and Related Movements In Ballroom Dancing, Proc., 2019, (0), C–2, https://doi.org/10.1299/Jsmeshd.2019.C-2
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  • [27] SIETAS M., AMBROS N., CACCIARI D., CACCIARI O., FERRARI M., GUERRA R., BENINCASA G., Viennese Waltz (2i Ed.), 2013.
  • [28] SORAKA A., SAPEZINSKIENE L., Research Methodology For Education Through Partner Dancesport, Procedia Soc., 2015, 191, 1976–1982, https://doi.org/10.1016/J.Sbspro.2015.04.314
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  • [30] WELLS M., YANG F., A Kinetic Analysis of the Triple Step in Recreational Swing Dancers, Sports Biomech., 2021, https://doi.org/10.1080/14763141.2021.1898669
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  • [32] XIAOXI G., The Research on the Sports Biomechanics Analysis of the Basic Movement in Dance, Indian J. Biotechnol., 2014, 10 (12), 6864–6869.
  • [33] YOSHIDA Y., BIZOKAS A., DEMIDOVA K., NAKAI S., NAKAI R., NISHIMURA T., Partnering Effects on Joint Motion Range and Step Length In the Competitive Waltz Dancers, J. Dance. Med. Sci., 2020, 24 (4), 168–174, https://doi.org/10.12678/1089-313X.24.4.168
  • [34] YOSHIDA Y., BIZOKAS A., DEMIDOVA K., NAKAI S., NAKAI R., NISHIMURA T., Determining Partnering Effects In the “Rise and Fall” Motion of Competitive Waltz by the Use of Statistical Parametric Mapping, Balt. J. Sport Health Sci., 2021, 1 (120), 4–12, https://doi.org/10.33607/Bjshs.V1i120.1047
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-553999a5-ae81-44ac-aa56-bb6d3dce3f36
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