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Original Articles

Validity of judo-specific tests to assess neuromuscular performance of judo athletes

ORCID Icon, , ORCID Icon, , & ORCID Icon
Pages 178-189 | Received 28 Mar 2018, Accepted 18 Sep 2018, Published online: 09 Nov 2018

References

  • Agostinho, M. F., Júnior, J. A. O., Stankovic, N., Escobar-Molina, R., & Franchini, E. (2018). Comparison of special judo fitness test and dynamic and isometric judo chin-up tests’ performance and classificatory tables’ development for cadet and junior athletes. Journal of Exercise Rehabilitation, 14, 244–252. doi:10.12965/jer.1836020.010
  • Almansba, R., Franchini, E., & Sterkowicz, S. (2007). An uchi-komi with load, a physiological approach of a new special judo test proposal. Science & Sports, 22, 216–223. doi:10.1016/j.scispo.2007.06.006
  • Almansba, R., Franchini, E., Sterkowicz, S., Imamurad, R. T., Calmet, M., & Ahmaidi, S. (2008). A comparative study of speed expressed by the number of throws between heavier and lighter categories in judo. Science & Sports, 23, 186–188. doi:10.1016/j.scispo.2007.10.014
  • Almansba, R., Sterkowicz, S., Sterkowicz-Przybycien, K., & Comtoisa, A. S. (2012). Reliability of the uchikomi fitness test: A pilot study. Reliability of the uchikomi fitness test. Science & Sports, 27, 115–118. doi:10.1016/j.scispo.2011.09.001
  • Aloui, A., Chtourou, H., Masmoudi, L., Chaouachi, A., Chamari, K., & Souissi, N. (2013). Effects of Ramadan fasting on male judokas’ performances in specific and non-specific judo tasks. Biological Rhythm Research, 44, 645–654. doi:10.1080/09291016.2012.722454
  • Bonitch-Góngora, J., Bonitch-Domınguez, J. G., Padial, P., & Feriche, B. (2012). The effect of lactate concentration on the handgrip strength during judo bouts. Journal of Strength & Conditioning Research, 26, 1863–1871. doi:10.1519/JSC.0b013e318238ebac
  • Bosco, C., Luhtanen, P., & Komi, P. (1983). A simple method for measurement of mechanical power in jumping. European Journal of Applied Physiology, 50, 273–282. doi:10.1007/BF00422166
  • Calmet, M., Miarka, B., & Franchini, E. (2010). Modeling of grasps in judo contests. International Journal Performance Analysis in Sport, 10, 229–240. doi:10.1080/24748668.2010.11868518
  • Calmet, M., Pierantozzi, E., Sterkowicz, D., Takito, M. Y., & Franchini, E. (2017). Judo rules: Searching for a wind of changes. International Journal of Performance Analysis in Sport, 17, 863–871. doi:10.1080/24748668.2017.1405612
  • Currel, K., & Jeukendrup, A. E. (2008). Validity, reliability and sensitivity of measures of sporting performance. Sports Medicine, 38, 297–316. doi:10.2165/00007256-200838040-0000
  • Detanico, D., Dal Pupo, J., Franchini, E., & Santos, S. G. (2012). Relationship of aerobic and neuromuscular indexes with specific actions in judo. Science & Sports, 1, 16–22. doi:10.1016/j.scispo.2011.01.010
  • Detanico, D., Dal Pupo, J., Franchini, E., & Santos, S. G. (2015). Effects of successive judo matches on fatigue and muscle damage markers. Journal of Strength and Conditioning Research, 29, 1010–1016. doi:10.1519/JSC.0000000000000746
  • Detanico, D., Dal Pupo, J., Graup, S., & Santos, S. G. (2016). Vertical jump performance and isokinetic torque discriminate advanced and novice judo athletes. Kinesiology, 48, 103–114.
  • Detanico, D., & Santos, S. G. (2012). Specific evaluation in judo: A review of methods. Brazilian Journal of Kinanthropometric and Human Performance, 14, 738–748. doi:10.5007/1980-0037.2012v14n6p738
  • Ellenbecker, T. S., & Davis, G. J. (2000). The application of isokinetics in testing and rehabilitation of the shoulder complex. Journal of Athletic Training, 35, 338–350.
  • Franchini, E., Miarka, B., Matheus, L. M., & Del Vecchio, F. B. (2011). Endurance in judogi grip strength tests: Comparison between elite and non-elite judo players. Archives of Budo, 7, 1–4.
  • Franchini, E., Sterkowicz, S., Szmatlan-Gabrys, U., Gabrys, T., & Garnys, M. (2011). Energy system contributions to the special judo fitness test. International Journal of Sports Physiology and Performance, 6, 334–343. doi:10.1123/ijspp.6.3.334
  • Franchini, E., Takito, M. Y., & Bertuzzi, R. C. M. (2005). Morphological, physiological and technical variables in high-level college judoists. Archives of Budo, 1, 1–7.
  • Hopkins, W. G. (2002, December 10). A scale of magnitudes for effect statistics. A New View of Statistics, Retrieved from http://www.sportsci.org/resource/stats/effectmag.html
  • International Judo Federation. (2017, December 12). IJF Rules 2017-2020. Retrieved from http://www.ijf.org
  • Linthorne, N. L. (2001). Analysis of standing vertical jumps using a force platform. American Journal of Physics, 69, 1198–1204. doi:10.1119/1.1397460
  • Markovic, G., Dizdar, D., Jukic, I., & Cardinale, M. (2004). Reliability and factorial validity of squat and countermovement jump tests. Journal of Strength & Conditioning Research, 18, 551–555. doi:10.1519/00124278-200408000-00028
  • Miarka, B., Cury, R., Julianetti, R., Battazza, R., Julio, U. F., Calmet, M., & Franchini, E. (2014). A comparison of time-motion and technical-tactical variables between age groups of female judo matches. Journal of Sports Sciences, 32, 1529–1538. doi:10.1080/02640414.2014.903335
  • Miarka, B., Panissa, V., Julio, U. F., Vecchio, F. B. D., Calmet, M., & Franchini, E. (2012). A comparison of time-motion performance between age groups in judo matches. Journal of Sports Sciences, 30, 899–905. doi:10.1080/02640414.2012.679675
  • Monteiro, L. F., Massuça, L. M., García, J. G., Carratala, V., & Proença, J. (2011). Plyometric muscular action tests in judo- and non-judo athletes. Isokinetics and Exercise Sciences, 19, 287–289. doi:10.3233/IES-2011-0429
  • Petroski, E. L., & Pires-Neto, C. S. (1996). Validation of anthropometric equations for estimating body density in men. [In Portuguese.] Brazilian Journal of Physical Activity and Health, 1, 5–14.
  • Ruivo, R., Pezarat-Correia, P., & Carita, A. I. (2012). Elbow and shoulder muscles strength profile in judo athletes. Isokinetics and Exercise Science, 20, 41–45. doi:10.3233/IES-2012-0439
  • Siri, W. E. (1961). Body composition from fluid spaces and density: Analysis of methods. In J. Brozek & A. Henschel (Eds.), Techniques for measuring body composition (pp. 223–244). Washington, D.C.: National Academy of Sciences.
  • Smith, D. (2003). A framework for understanding the training process leading to elite performance. Sports Medicine, 33, 1103–1126. doi:10.2165/00007256-200333150-00003
  • Torres-Luque, G., Hernandez-Garcia, R., Garatachea, N., & Nikolaidis, P. T. (2015). Anthropometric characteristics and neuromuscular function in young judo athletes by sex, age and weight category. Sports Science for Health, 11, 117–124. doi:10.1007/s11332-015-0218-0
  • Trava, M., Franchini, E., & Krstulovic, S. (2016). Discriminant and factorial validity of judo specific tests in female athletes. Archives of Budo, 12, 93–99.
  • Zaggelidis, G., Lazaridis, S. N., Malkogiorgos, A., & Mavrovouniotis, F. (2012). Differences in vertical jumping performance between untrained males and advanced Greek judokas. Archives of Budo, 8, 87–90. doi:10.12659/AOB.882775

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