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Original Articles

The effect of auditory stimulus training on swimming start reaction time

, ORCID Icon, & ORCID Icon
Pages 378-389 | Received 14 Mar 2017, Accepted 17 Nov 2017, Published online: 12 Jan 2018

References

  • Benjanuvatra, N., Lyttle, A., Blanksby, B., & Larkin, D. (2004). Force development profile of the lower limbs in the grab and track start in swimming. In. M. Lamontagne, D. G. E. Robertson, & H. Sveistrup (Eds.), Proceedings of the XXII International Symposium on Biomechanics in Sports (pp. 399–402). Ottawa, Canada.
  • Bishop, D. C., Smith, R. J., Smith, M. F., & Rigby, H. E. (2009). Effect of plyometric training on swimming block start performance in adolescents. Journal of Strength and Conditioning Research, 23, 2137–2143.10.1519/JSC.0b013e3181b866d0
  • Blanksby, B., Nicholson, L., & Elliott, B. (2002). Biomechanical analysis of the grab, track and swimming starts: An intervention study. Sports Biomechanics, 1, 11–24.10.1080/14763140208522784
  • Breed, R. V. P., & Young, W. B. (2003). The effect of a resistance training programme on the grab, track and swing starts in swimming. Journal of Sports Sciences, 21, 213–220.10.1080/0264041031000071047
  • Cohen, J. (1992). A power primer. Psychological Bulletin, 112, 155–159.10.1037/0033-2909.112.1.155
  • De Souza, A. C., Yehia, H. C., Sato, M. A., & Callan, D. (2013). Brain activity underlying auditory perceptual learning during short period training: Simultaneous fMRI and EEG recording. Biomedcentral Neuroscience, 14, 3204–3215.
  • Delalija, A., & Babić, V. (2008). Reaction time and sprint results in athletics. International Journal of Performance Analysis in Sport, 8, 67–75.10.1080/24748668.2008.11868436
  • Gavkare, A. M., Nanaware, N. L., & Surdi, A. D. (2013). Auditory reaction time, visual reaction time and whole body reaction time in athletes. Indian Medical Gazette, 6, 214–219.
  • Hohmann, A., Fehr, U., Reuss, A., Straub, S., & Kieser, S. (2010). Specific strength training and start performance in swimming. In P. L. Kjendlie, R. K. Stallman, & J. Cabri (Eds.), Proceedings of the XI International Symposium for Biomechanics and Medicine in Swimming (pp. 114). Oslo, Norway: Norwegian School of Sport Science.
  • International Association of Athletics Federations (IAAF). (2016). 100 Metres. Retrieved January 10, 2016, from https://www.iaaf.org/disciplines/sprints/100-metres
  • Lee, C. W., Huang, C., Lin, D. C., & Lee, C. W. (2002). The strategy of muscular pre-tension during initial block phase in swimming grab start. In K. E. Gianikellis (Ed.), Proceedings of the XX International Symposium on Biomechanics in Sports (pp. 52–55). Cáceres, Spain.
  • Lepretre, P. M., Kazarine, L., Puel, F., Chollet, D., & Fernandes, R. J. P. (2014). Does four weeks of simple reaction time training improve start performance in swimming? In B. Mason (Ed.), Proceedings of the XII International Symposium for Biomechanics and Medicine in Swimming (pp. 437–441). Canberra, Australia: Australian Institute of Sport.
  • Madan, M., Thombre, D. P., Balakumar, B., Nambinarayanan, T. K., Thakur, S., Krishnamurthy, N., & Chandrabose, A. (1992). Effect of yoga training on reaction time, respiratory endurance and muscle strength. Indian Journal of Physiology and Pharmacology, 36, 229–233.
  • Maglischo, E. W. (1982). Swimming faster. Toronto, Canada: Mayfield Publishing Company.
  • Mason, B., Mackintosh, C., & Pease, D. (2012). The development of an analysis system to assist in the correction of inefficiencies in starts and turns for elite competitive swimming. In E. Bradshaw, A. Burnett, & P. Hume (Eds.), Proceedings of the 30th Conference for the International Society of Biomechanics in Sport (pp. 156–158). Melbourne, Australia.
  • Nuri, L., Shadmehr, A., Ghotbi, N., & Attarbashi Moghadam, B. (2013). Reaction time and anticipatory skill of athletes in open and closed-skill dominated sport. European Journal of Sport Science, 13, 431–436.10.1080/17461391.2012.738712
  • Pain, M. T. G., & Hibbs, A. (2007). Sprint starts and the minimum auditory reaction time. Journal of Sport Sciences, 25, 79–86.10.1080/02640410600718004
  • Rebutini, V. Z., Pereira, G., Bohrer, R. C., Ugrinowitsch, C., & Rodacki, A. L. (2014). Plyometric long jump training with progressive loading improves kinetic and kinematic swimming start parameters. Journal of Strength and Conditioning Research, 30, 2392–2398.
  • Ruschel, C., Araujo, L. G., Pereira, S. M., & Roesler, H. (2007). Kinematical analysis of the swimming start: Block, flight and underwater phases. In H. J. Menzel & M. H. Chagas (Eds.), Proceedings of the XXV Symposium on Biomechanics in Sports (pp. 385–388). Ouro Preto, Brazil.
  • Shelton, J., & Kumar, G. P. (2010). Comparison between auditory and visual simple reaction times. Neuroscience and Medicine, 1, 30–32.10.4236/nm.2010.11004
  • Slawinski, J., Bonnefoy, A., Levêque, J. M., Ontanon, G., Riquet, A., Dumas, R., & Chèze, L. (2010). Kinematic and kinetic comparisons of elite and well-trained sprinters during sprint start. Journal of Strength and Conditioning Research, 24, 896–905.10.1519/JSC.0b013e3181ad3448
  • Sleivert, G., & Taingahue, M. (2004). The relationship between maximal jump-squat power and sprint acceleration in athletes. European Journal of Applied Physiology, 91, 46–52.10.1007/s00421-003-0941-0
  • Thompson, P. D., Colebatch, J. G., Brown, P., Rothwell, J. C., Day, B. L., Obeso, J. A., & Marsden, C. D. (1992). Voluntary stimulus-sensitive jerks and jumps mimicking myoclonus or pathological startle syndromes. Movement Disorders, 7, 257–262.10.1002/(ISSN)1531-8257
  • Tor, E., Pease, D., & Ball, K. A. (2014). Characteristics of an elite swimming start. In B. Mason (Ed.), Proceedings of the XII International Symposium for Biomechanics and Medicine in Swimming (pp. 257–263). Canberra, Australia: Australian Institute of Sport.
  • Vantorre, J., Chollet, D., & Seifert, L. (2014). Biomechanical analysis of the swim start: A review. Journal of Sports Science and Medicine, 13, 223–231.
  • Willwacher, S., Herrmann, V., Heinrich, K., & Brüggemann, G. P. (2013). Start block kinetics: What the best do different than the rest. In T. Y. Shiang, W. H. Ho, P. C. Huang, & C. L. Tsai (Eds.), Proceedings of the XXXI International Conference on Biomechanics in Sports. Taipei, Taiwan. Retrieved from https://ojs.ub.uni-konstanz.de/cpa/article/view/5544/5038

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