The Use of Dry-Land and Water Tests to Evaluate Swimmers: Scoping Review
Abstract
Swimming is one of the Olympic sports that brings the most medals to the Olympic score, meaning that more and more research is being carried out on the sport to get the most out of the athlete's performance during a competitive event. For this, it is necessary to evaluate the physical capabilities that swimming requires from the athlete, including the ability to produce force. Furthermore, for accurate and reliable results, it is necessary that the tests reach swimming specificity. Currently, aquatic tests such as the tethered swim test and ground tests such as vertical jumps are used and described in the literature and can measure the swimmer's strength production. This scoping review aimed to explore and identify the main aquatic and dry-land tests for evaluating strength and swimming performance. Searches were carried out in the PubMed, Capes, Web of Science and Scielo databases. The identification of the studies evaluated began with reading only the title and abstract, followed by the full reading and finally the proposed inclusion and exclusion criteria. Duplicate articles were removed before the first stage of evaluation. 128 articles were found and after the screening and identification process, 13 articles were included in this review. Our results indicate that the use of strength tests on the ground seems to be a viable option for evaluating the performance of swimmers, however, the use of aquatic tests is essential for the technical team.
References
Bartolomei, S., Gatta, G., e Cortesi, M. (2020). A Comparison between elite swimmers and kayakers on upper body push and pull strength and power performance. International Journal of Environmental Research and Public Health, 17(22), 8301. https://doi.org/10.3390/ijerph17228301
Born, D.P., Stöggl, T., Petrov, A., Burkhardt, D., Lüthy, F., e Romann, M. (2020). Analysis of freestyle swimming sprint start performance after maximal strength or vertical jump training in competitive female and male junior swimmers. Journal of Strength and Conditioning Research, 34(2), 323-331. https://doi.org/10.1519/JSC.0000000000003390
Cañas-Jamett, R., Figueroa-Puig, J., Ramirez-Campillo, R., e Tuesta, M. (2020). Plyometric training improves swimming performance in recreationally-trained swimmers. Revista Brasileira de Medicina do Esporte, 26, 436-440. https://doi.org/10.1590/1517-8692202026052019_0052
Detanico, D., Heidorn, S.I., Schütz, G.R., e Santos, S.G. dos (2011). Aspectos cinemáticos e neuromusculares relacionados com o desempenho da saída do bloco na natação. Revista Brasileira de Educação Física e Esporte, 25, 559-566. https://doi.org/10.1590/S1807-55092011000400002
Espada, M.C., Costa, M.J., Costa, A.M., Silva, A.J., Barbosa, T.M., e Pereira, A.F. (2016). Relationship between performance, dry-land power and kinematics in master swimmers. Acta of Bioengineering and Biomechanics, 18(2), 145-151. https://pubmed.ncbi.nlm.nih.gov/27406135/
FINA. Federação Internacional de Natação. (2017). Regulamentos da FINA. https://www.worldaquatics.com/rules/competition-regulations
Jones, J.V., Pyne, D.B., Haff, G.G., e Newton, R.U. (2018). Comparison between elite and subelite swimmers on dry land and tumble turn leg extensor force-time characteristics. Journal of Strength and Conditioning Research, 32(6), 1762-1769. https://doi.org/10.1519/JSC.0000000000002041
Kalva-Filho, C.A., Toubekis, A., Zagatto, A.M., Silva, A.S.R. da, Loures, J.P., Campos, E.Z., e Papoti, M. (2018). Reliability and validity of tethered swimming lactate minimum test and their relationship with performance in young swimmers. Pediatric Exercise Science, 30(3), 383-392. https://doi.org/10.1123/pes.2016-0247
Keiner, M., Wirth, K., Fuhrmann, S., Kunz, M., Hartmann, H., e Haff, G.G. (2021). The influence of upper- and lower-body maximum strength on swim block start, turn, and overall swim performance in sprint swimming. Journal of Strength and Conditioning Research, 35(10), 2839-2845. https://doi.org/10.1519/JSC.0000000000003229
Kwok, W.Y., So., B.C.L., Tse, D.H.T., Ng, S.S.M. (2021). A Systematic Review and Meta-Analysis: Biomechanical Evaluation of the Effectiveness of Strength and Conditioning Training Programs on Front Crawl Swimming Performance. Journal of Sports Science and Medicine, 20, 564-585. https://doi.org/10.52082/jssm.2021.564
Lopes, T.J., Neiva, H.P., Gonçalves, C.A., Nunes, C., e Marinho, D.A. (2021). The effects of dry-land strength training on competitive sprinter swimmers. Journal of Exercise Science and Fitness, 19(1), 32-39. https://doi.org/10.1016/j.jesf.2020.06.005
Maglischo, E.W. (2010). Nadando o mais rápido possível (3ª edição). Editora Manole.
Morais, J.E., Silva, A.J., Garrido, N.D., Marinho, D.A., e Barbosa, T.M. (2018). The transfer of strength and power into the stroke biomechanics of young swimmers over a 34-week period. European Journal of Sport Science, 18(6), 787-795. https://doi.org/10.1080/17461391.2018.1453869
Moreno, S.C., e Sánchez-Mateos, R.Z. (2022). Efectos del entrenamiento de la fuerza en nadadores jóvenes de distancia corta en crol. Una revisión sistemática (2017-2022). Revista de investigación en actividades acuáticas, 6(12), 92-100. https://doi.org/10.21134/riaa.v6i12.1941
Nagle, J.A., Abt, J., Beals, K., Connaboy, C., Dever, D., Olenick, A., e Nagle, E.F. (2016). Tethered swimming test: reliability and the association to swimming performance and land-based anaerobic performance. Medicine & Science in Sports & Exercise, 48, 439. https://doi.org/10.1249/01.mss.0000486321.10980.cf
Papoti, M., Silva, A. da, Kalva-Filho, C., Araujo, G., Santiago, V., Martins, L., Cunha, S., e Gobatto, C. (2017). Tethered swimming for the evaluation and prescription of resistance training in young swimmers. International Journal of Sports Medicine, 38(02), 125-133. https://doi.org/10.1055/s-0042-105017
Pérez-Olea, J.I., Valenzuela, P.L., Aponte, C., e Izquierdo, M. (2018). Relationship between dryland strength and swimming performance: pull-up mechanics as a predictor of swimming speed. Journal of Strength and Conditioning Research, 32(6), 1637-1642. https://doi.org/10.1519/JSC.0000000000002037
Sammoud, S., Negra, Y., Chaabene, H., Bouguezzi, R., e Moran, J. (2019). The effects of plyometric jump training on jumping and swimming performances in prepubertal male swimmers. Journal of sports science & medicine, 18(4), 805-811. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873130/
Santos, K.B. dos, Bento, P.C.B., Pereira, G., Payton, C., e Rodacki, A.L.F. (2017). Front crawl swimming performance and bi-lateral force asymmetry during land-based and tethered swimming tests. Journal of Sports Science & Medicine, 16(4), 574-580. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5721189/
Strzała, M., Stanula, A., Krężałek, P., Rejdych, W., Karpiński, J., Maciejczyk, M., e Radecki-Pawlik, A. (2021). Specific and holistic predictors of sprint front crawl swimming performance. Journal of Human Kinetics, 78, 197-207. https://doi.org/10.2478/hukin-2021-0058
Tan, J.Q.J., Lee, M.J.C., Boey, D., Lum, D., Barbosa, T.M. (2021). The transfer of dry-land strength & power into thrust in competitive swimming. Sports Biomechanics, 1-12. https://doi.org/10.1080/14763141.2020.1869815
Thng, S., Pearson, S., Rathbone, E., e Keogh, J.W.L. (2019). The prediction of swim start performance based on squat jump force-time characteristics. PeerJ, 8, e9208. https://doi.org/10.7717/peerj.9208
West, D.J., Owen, N.J., Cunningham, D.J., Cook, C.J., e Kilduff, L.P. (2011). Strength and power predictors of swimming starts in international sprint swimmers. Journal of Strength and Conditioning Research, 25(4), 950-955. https://doi.org/10.1519/JSC.0b013e3181c8656f
Zamparo, P., Gatta, G., e di Prampero, P.E. (2012). The determinants of performance in master swimmers: An analysis of master world records. European Journal of Applied Physiology, 112(10), 3511-3518. https://doi.org/10.1007/s00421-012-2332-x
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