Garcia-Hermoso A, Escalante Y, Arellano R, Navarro F, Dominguez AM, Saavedra JM. Relationship between final performance and block times with the traditional and the new starting platforms with a back plate in international swimming championship 50-m and 100-m freestyle events. Journal of Sports Science and Medicine, 2013;12(4):698–706.
Morais JE, Marinho DA, Arellano R, Barbosa TM. Start and turn performances of elite sprinters at the 2016 European Championships in swimming. Sports biomechanics, 2018. Sports Biomech, 2019;18(1):100–114. https://doi.org/10.1080/14763141.2018.1435713
Gonjo T, Olstad BH. Start and Turn Performances of Competitive Swimmers in Sprint Butterfly Swimming. J. Sports Sci.Med, 2020;19(4):727–734.
Veiga, S., Roig, A. Underwater and Surface Strategies of 200 M World Level Swimmers. J. Sports Sci, 2016;34(8):766–771. https://doi.org/10.1080/02640414.2015.1069382
Veiga, S, Roig A, Gómez-Ruano M. A. Do faster swimmers spend longer underwater than slower swimmers at World Championships? European Journal of Sport Science, 2016;1(8):919–26. https://doi.org/10.1080/17461391.2016.1153727
David S, Grove T, Duijven MV, Koster P, Beek PJ. Improving tumble turn performance in swimming—the impact of wall contact time and tuck index. Frontiers in Sports and Active Living, 2022;4: 936695. https://doi.org/10.3389/fspor.2022.936695
Takeda T, Sakai S, Takagi H. Underwater flutter kicking causes deceleration in start and turn segments of front crawl. Sports Biomech, 2022;21(10):1224–1233. https://doi.org/10.1080/14763141.2020.1747528
Gonjo T, Olstad HB, Štastný J, Conceicao A, Seifert L. Intra- and inter-individual variability in the underwater pull-out technique in 200 m breaststroke turns. PLoS One, 2023;18(3):e0283234. https://doi.org/10.1371/journal.pone.0283234
Zacca R, Vilas-Boas, JP, David P, de Souza Castro F, Ricardo F. Longitudinal Data over the International Symposium in Biomechanics and Medicine in Swimming: 1970 to 2014. In: XIII International Symposium on Biomechanics and Medicine in Swimmingat. Tsukuba,:Japan; 2018. P. 100-109.
Tor E, Pease D, Ball K. Characteristics of an elite swimming start. International Symposium on Biomechanics and Medicine in Swimming, 2014;257–263. https://doi.org/10.13140/2.1.2350.2087
Matúš I, Ružbarský P, Vadašová B. Key Parameters Affecting Kick Start Performance in Competitive Swimming. Int. J. Environ. Res. Public Health, 2021;18(22):11909. https://doi.org/10.3390/ijerph182211909
Vantorre J, Seifert L, Bideau B, Nicolas G, Fernandes RJ, Vilas-Boas JP, Chollet D. Influence of swimming start styles on biomechanics and angular momentum. In: Kjendlie P, Stallman RK, Cabri J, editors. XIth International Symposium Biomechanics and Medicine in Swimming. Oslo: Norway, Norwegian school of sports sciences; 2010. P.180-182.
Vantorre J, Seifert L, Fernandes RJ, Vilas-Boas JP, Bideau B, Nicolas G, Chollet D. Biomechanical analysis of starting preference for expert swimmers. In: Vias-Boas JP, Machado L, Kim W, Velos AP, Alves F, Fernandes AR, Concelcao F, editors. 29 Internaltional Conference on Biomechanics in Sports. Portugal: Porto; 2011. P.415-418.
Elipot M, Hellard P, Taïar R, Boissière E, Rey JL, Lecat S, Houel N. Analysis swimmers´ velocity during the underwater gliding motion following grab start. Journal of Biomechanics, 2009;42(9):1367–1370. https://doi.org/10.1016/j.biomech.2009.03.032
Fischer S, Kibele A. On the movement behavior of elite simmers during the entry phase. In: B. Mason B., editor. XIIth International Symposium on Biomechanics and Medicine in Swimming. Canberra: Australia Australian Institute of Sport; 2014. P.131¬136.
Schaffert N, Engel A, Schluter S, Mattes K. The sound of the underwater dolphin-kick: developing real-time audio feedback in swimming. Displays, 2019;59:53¬62. https://doi.org/10.1016/j.displa.2019.08.001
Tanaka T, Sato T, Hashizume S, Shiozawa N, Isaka T. The relationship between trunk kinematic variables and underwater undulatory swimming performance in competitive swimmers. In: 38th International society of biomechanics in sports, 2020;38(1):185.
Yamakawa KK, Shimojo H, Takagi H, Sengoku Y. Changes in Kinematics and Muscle Activity With Increasing Velocity During Underwater Undulatory Swimming. Front Sports Act Living, 2022;15(4):829618. https://doi.org/10.3389/fspor.2022.829618
Veiga S, Pla R, Qiu X, Boudet D, Guimard A. Effects of Extended Underwater Sections on the Physiological and Biomechanical Parameters of Competitive Swimmers. Front Physiol, 2022;13:815766. https://doi.org/10.3389/fphys.2022.815766
Viega S, Qui X, Trinidad A, Suz P, Bazuelo B, Navarro E. Kinematic change in the undulatory kicking during underwater swimming. Sports Biomech, 2023;9:1–15. https://doi.org/10.1080/14763141.2023.2177192
Tor E, Pease DL, Ball KA. How does drag affect the underwater phase of a swimming start? Journal of Applied Biomechanics, 2015;31(1):8–12. https://doi.org/10.1123/JAB.2014-0081
Cossor J, Mason B. Swim start performances at the Sydney 2000 Olimpics Games. In: Blackwell JR, Sanders RH, editors. XXV International Symposium on Biomechanics in Sports. San Francisco: University of California at San Francisco; 2001. P.25- 30.
García-Hermoso A, Saavedra JM, Arellano R, Navarro F. Relationship between Swim Start Wall Contact Time and Final Performance in Backstroke Events in International Swimming Championships. Int. J. Perform. Analysis Sport, 2017;17(3):232–243. https://doi.org/10.1080/24748668.2017.1331573
Simbaña-Escobar D, Hellard P, Seifert L. Modelling Stroking Parameters in Competitive Sprint Swimming: Understanding Inter- and Intra-lap Variability to Assess Pacing Management. Hum. Mov. Sci, 2018;61:219–230. https://doi.org/10.1016/j.humov.2018.08.002
Arellano R, Ruiz-Navarro JJ, Barbosa TM, López-Contreras G, Morales-Ortíz E, Gay A, López-Belmonte Ó, González-Ponce Á and Cuenca-Fernández F. Are the 50 m Race Segments Changed From Heats to Finals at the 2021 European Swimming Championships? Front. Physiol, 2022;13:797367. https://doi.org/10.3389/fphys.2022/797367
Morais JE, Barbosa TM, Silva AJ, Veiga S, Marinho DA. Profiling of Elite Male Junior 50 M Freestyle Sprinters: Understanding the Speed-time Relationship. Scand. J. Med. Sci. Sports, 2021;32:60–68. https://doi.org/10.1111/sms.14058
Cuenca-Fernández F, Ruiz-Navarro JJ, González-Ponce A, López-Belmonte Ó, Gay A, Arellano R. Progression and Variation of Competitive 100 and 200m Performance at the 2021 European Swimming Championships. Sports Biomech, 2021;1–16. https://doi.org/10.1080/14763141.2021.1998591
Swimrankings. Results Orca cup [Internet]. Switzerland: Bern; 2023 [cited 2023 Nov 26]. Avalaible from: https://www.swimrankings.net/index.php?page=CalendarDetail&CalendarId=167250145
Seifert L, Vantorre J, Lemaitre F, Chollet D, Toussaint HM, Vilas-Boas JP. Different Profiles of the Aerial Start Phase in Front Crawl. J. Strength Cond. Res, 2010;24(2):507–16. https://doi.org/10.1519/JSC.0b013e3181c06a0e
Norris BS, Olson SL. Concurrent validity and reliability of two-dimensional video analysis of hip and knee joint motion during mechanical lifting. Physiother. Theory Pract, 2011;27(7):521–30. https://doi.org/10.3109/09593985.2010.533745
World Aquatics. World aqautics competition regulations. [Internet] 2023 [cited 2023 Nov 26]. Available from: https://resources.fina.org/fina/document/2023/08/30/cf0cc0aa-801c-4488-a51b-e8587cccf4cc/World-Aquatics_Competition-regulations_5th-July-2023_Final_1.0.1.pdf
Sánchez L, Arellano R, Cuenca-Fernández F. Analysis and Influence of the Underwater Phase of Breaststroke on Short-Course 50 and 100m Performance. Int. J. Perform. Analysis Sport, 2021;21(2):307–23. https://doi.org/10.1080/24748668.2021.1885838
Swimmrankings. World records [Internet]. Switzerland: Bern; 2023 [cited 2023 Nov 26]. Avalaible from: https://www.swimrankings.net/index.php?page=recordSelect
Silveira RP, Stergiou P, Figueiredo P, de S. Castro F, Katz L, Darren J. Stefanyshyn. Key determinants of time to 5 m in different ventral swimming start techniques. European Journal of Sport Science, 2018;18(10):1317–26. https://doi.org/10.1080/17461391.2018.1486460
Wądrzyk Ł, Staszkiewicz R, Kryst Ł, Żegleń M. Kinematic analysis of above- and underwater swim start phases of male swimmers aged 16–18 years. Hum Mov, 2022; 23(4):123–32. https://doi.org/https://doi.org/10.5114/hm.2021.105573
Barlow H, Halaki M, Stuelcken M, Greene A, Sinclair H. The effect of different kick start positions on OMEGA OSB11 blocks on free swimming time to 15m in developmental level swimmers. Human Movement Science, 2014;34:178-86. https://doi.org/10.1016/j.humov.2014.02.002
Sakai S, Takeda T, Sato S, Tsubakimoto S, Takagi H. Effect of the back plate position on the kick-start performance of competitive swimmers. Japan J. Phys. Educ. Hlth. Sport Sci, 2017;6079:1–12. https://doi.org/10.5432/jjpehss.16079
Đurović M, Vranešić-Hadžimehmedović D, Paunović M, Stojanović N, Madić D, Okičić T. The influence of starting parameters ontime to 10 m in male sprint swimmers. International scientific congress applied sports sciences / balkan scientific congress physical education, sports, health, 2019;159–162. https://doi.org/10.37393/ICASS2019/30
Hermosilla F, Yustres I, Psycharakis S, del Cerro JS, González.Mohíno F, González-Rave J. Which variables may affect underwater glide performance after a swimming start? Eur J Sport Sci, 2022;22(8):1141–48. https://doi.org/10.1080/17461391.2021.1944322
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