The effect of resistance exercises performed at home on swimming performance of adolescent swimmers during the covid-19 pandemic period
Palabras clave:
Adolescent, Pandemic, COVID-19, Resistance Exercises, Swimming, FreestyleResumen
Aim: to examine the effect of resistance exercises performed at home on swimming performance in adolescent swimmers during the COVID-19 pandemic period.
Method: a total of 114 adolescent swimmers aged between 10-17 years, (N=66) male and (N= 48) female, performing at the Turkish Olympic Preparation Center (TOHM) participated in the research voluntarily. The research was designed as a quasi-experimental study, since there was no control group. The resistance exercise program, which was performed at home for 8 weeks during the pandemic period, was applied for the athletes participating in the research through video conference method and by expert swimming trainers. The pre-test swimming degrees of the athletes were requested from the institution with the archive scanning method, and the post-test values were taken by the expert swimming trainer after the applied training program. To determine the effect of the applied training program, 50m, 100m, 200m and 400m swimming degrees of the athletes were determined in the pool environment with the Castimolap D-308 hand chronometer. The data obtained as a result of measurement, calculation and tests in the research were analyzed in the SPSS 22.00 statistical analysis software. Paired-Samples T test was applied to determine the difference between pretest and posttest in the statistical analysis. The significance level was accepted as p<0.05.
Results: as a result of the statistical analysis, a statistically significant difference was determined between the freestyle swimming degrees (50-100-200-400m) pre-test and post-test values of the athletes.
Conclusion: our results demonstrated that resistance exercises performed at home did not have a positive effect on swimming performance. In this respect, it is very important for the athletes in the swimming performance group to train in the pool environment in order to maintain and improve their performance.
Descargas
Citas
Batu, B., & Aydın, A. D. (2020). Investıgatıon of anxıety of swimmers regarding contracting new type of Coronavirus (COVID-19). International Refereed Academic Journal of Sports, Health and Medical Sciences, 36, 12-31.
https://atif.sobiad.com/index.jsp?modul=makale-goruntule&id=eo-A6HYBu-adCBSEiNNP
Bozdoğan, A. (2006). Yüzme. İstanbul: Morpa Kültür Yayınları.
Büyükgebiz, B. (2013). Nutrition in adolescents age group. Turkey Clinical Journal of Pediatric Science, 9(2), 37-47. https://www.turkiyeklinikleri.com/journal/pediatric-sciences-special-topics/1305-435X/issue/2013/9/2-0/adolesan-donemi-ve-sorunlari-ozel-sayisi/en-index.html
Caldwell, B. P., & Peters, D. M. (2009). Seasonal variation in physiological fitness of a semiprofessional soccer team. The Journal of Strength and Conditioning Research, 23(5), 1370-1377. https://doi.org/10.1519/JSC.0b013e3181a4e82f
Chen, P., Mao, L., Nassis, G. P., Harmer, P., Ainsworth, B. E., & Li, F. (2020). Coronavirus disease (COVID-19): the need to maintain regular physical activity while taking precautions. Journal of Sport and Health Science, 9(2), 103. https://doi.org/10.1016/j.jshs.2020.02.001
Christensen, P. M., Krustrup, P., Gunnarsson, T. P., Kiilerich, K., Nybo, L., & Bangsbo, J. (2011). VO2 kinetics and performance in soccer players after intense training and inactivity. Medicine and Science in Sports and Exercise, 43(9), 1716–1724. https://doi.org/10.1249/MSS.0b013e318211c01a
Çakır, E., (2019). Fiziksel aktivite ve egzersiz bağımlılığı. İçinde: G. Hergüner (Ed.), Her Yönüyle Spor (ss.191-211). İstanbul: Güven Plus Grup Danışmanlık AŞ Yayınları.
Demir, G. T., Cicioğlu, H. İ., & İlhan, E. L. (2020). Athlete’s anxiety to catch the novel Coronavirus (Covid-19) Scale (AACNCS): validity and reliability study. International Journal of Human Sciences, 17(2), 458-468.
https://www.j-humansciences.com/ojs/index.php/IJHS/article/view/5988
Deyirmenci, H. S., & Karacan, S. (2017). The effects of 12-weeks thera-band training on swimming performance at 11-13 age group swimmers. Journal of Human Sciences, 14(4), 4958-4968. https://www.j-humansciences.com/ojs/index.php/IJHS/article/view/4858/2463
Dindar, M. D., & Bilir, S. (2019). Spor aktivitelerinin şirket çalışanları üzerindeki etkisi. Ankara: Nobel Akademik Yayıncılık.
Dindar, M. D., & Özen, G. (2020). An experimental investigation of the contribution of regular physical activity to organizational commitment of employees in a food company. Progress in Nutrıtıon, 22(2), 640-644. https://www.mattioli1885journals.com/index.php/progressinnutrition/article/view/9469/8838
Direktör, C. (2021). Covid-19 salgını ve çocuk psikolojisi. Psikiyatride Güncel Yaklaşımlar, 13(4), 739-750. https://www.ceeol.com/search/article-detail?id=968070
Erduğan, F., & Aydoğan, A. (2021.) Küresel Covid-19 salgınının sürekli fiziksel aktivite ve antrenman yapan bireyler üzerindeki etkileri. İçinde: Spor Bilimleri Araştırmaları (ss.149-161). Duvar Yayınları.
Garrido, N., Marinho, D.A., Barbosa, T. M., Costa, A. M., Silva, A. J., Perez-Turpin, J. A., Marques, M. C. (2010). The relationship between dryland strength, power variables and short sprint performance in young competitive swimmers. Offical Journal of the Area of Physical Education and Sport, 5(11),240-249. https://doi.org 10.4100/jhse
Gelen, M., Eler, S., & Eler, N. (2020). Detraınıng: Covıd-19 ve üst düzey performans. Milli Eğitim Dergisi, 49(227), 447-464.
https://dergipark.org.tr/en/pub/milliegitim/issue/56322/747508 adresinden erişildi
Gökhan, İ., Kürkçü, R., Devecioğlu, S., & Aysan, H. (2011). The effect of swimming on pulmonary functions, blood pressure and body composition. Journal of Clinical and Experimental Investigations, 2(1), 35-41. https://www.researchgate.net/publication/50361330
Halabchi, F., Ahmadinejad, Z., & Selk-Ghaffari, M. (2020). Covid-19 epidemic: exercise or not to exercise; that is the question. Asian Journal Sports Medicine, 11(1), e102630. https://brief.land/asjsm/articles/102630.html
Hannula, D., & Thornton, N. (2001). The swim coaching bible, worlds swimming coaches association. United States of America: Human Kinetics.
Hyatt, J. P., Brown, E. A., Deacon, H. M., & McCall, G. E. (2019). Muscle-specific sensitivity to voluntary physical activity and detraining. Frontiers in Physiology, 10, 1328. https://doi.org/10.3389/fphys.2019.01328
Joo, C. H. (2018). The effects of short term detraining and retraining on physical fitness in elite soccer players. Plos One, 13(5), e0196212. https://doi.org/10.1371/journal.pone.0196212
Jukic, I., Calleja-González, J., Cos, F., Cuzzolin, F., Olmo, J., Terrados, N., Alcaraz, PE., et al. (2020). Strategies and solutions for team sports athletes in isolation due to Covid-19. Sports, 8(4), 56. https://doi.org/10.3390/sports8040056
Karakurt, K. (2020). Statik ve dinamik kor antrenmanın yüzme performansı ve motorik beceriler üzerine etkisi. (Yayımlanmamış Yüksek Lisans Tezi). Hitit Üniversitesi, Sağlık Bilimleri Enstitüsü, Beden Eğitimi ve Spor Ana Bilim Dalı, Çorum. https://tez.yok.gov.tr/UlusalTezMerkezi/tezSorguSonucYeni.jsp
Koundourakis, N. E., Androulakis, N. E., Malliaraki, N., Tsatsanis, C., Venihaki, M., & Margioris, A. N. (2014). Discrepancy between exercise performance, body composition, and sex steroid response after a six-week detraining period in professional soccer players. Plos One, 9(2), e87803. https://doi.org/10.1371/journal.pone.0087803
Letieri, R. V., Teixeira, A. M., Furtado, G. E., Lamboglia, C. G., Rees, J. L., & Gomes, B. B. (2018). Effect of 16 weeks of resistance exercise and detraining comparing two methods of blood flow restriction in muscle strength of healthy older women: a randomized controlled trial. Experimental Gerontology, 114, 78–86. https://doi.org/10.1016/j.exger.2018.10.017
Lu, R., Zhao, X., Li, J., Niu, P., Yang, B., Wu, H., Wang, W., Song, H., et al. (2020). Genomic characterisation and epidemiology of 2019 novel coronavirus: implications for virus origins and receptor binding. Lancet, 395(10224), 565–574.
https://doi.org/10.1016/S0140-6736(20)30251-8
Lloyd, R. S., & Oliver, J. L. (2012). The youth physical development model: a new approach to long-term athletic development. Strength and Conditioning Journal, 34(3), 61-72. https://www.researchgate.net/publication/271953822_The_Youth_Physical_Development_Model
Mujika, I., & Padilla, S. (2000). Detraining: loss of training-induced physiological and performance adaptations. Part I. Sports Medicine, 30(2), 79-87. https://link.springer.com/article/10.2165/00007256-200030020-00002
Muratlı, S. (2013). Çocuk ve Spor. Ankara: Nobel Akademik Yayıncılık.
Nakamura, D., Suzuki, T., Yasumatsu, M., & Akimoto, T. (2012). Moderate running and plyometric training during off-season did not show a significant difference on soccer-related high-intensity performances compared with no-training controls. Journal of Strength and Conditioning Research, 26(12), 3392–3397. https://doi.org/10.1519/JSC.0b013e3182474356
Öner, S., Çınar V., Sarıkaya, M., & Akbulut, T. (2018). Yüzme sporcularına uygulanan core egzersizi ve dayanıklılık çalışmalarının sudaki performanslarına etkisi. Uluslararası Müzik Dans ve Sağlık Kongresi 11–13 Ekim. Antalya.
Page, P., & Ellenbecker, T.S. (2005). Strength band training. USA: Human Kinetics.
Reilly, T., Williams, A. M., Nevill, A., & Franks, A. (2000). A multidisciplinary approach to talent identification in soccer. Journal of Sports Sciences, 18(9), 695-702. https://doi.org/10.1080/02640410050120078
Remuzzi, A., & Remuzzi, G. (2020). Covid-19 and Italy: what next? Lancet, 395(10231), 1225-1228. https://doi.org/10.1016/S0140-6736(20)30627-9
Rosania, J. R. (2004). Weight training, not your grandma’s workout. Swimming Technique, 41(1), 17-20. https://memberdesq.sportstg.com/assets/console/customitem/attachments/july-aug2004.pdf
Salo, D., & Riewald, A. S. (2008). Complete conditioning for swimming. Human Kinetics.
Sarto, F., Impellizzeri, F. M., Spörri, J., Porcelli, S., Olmo, J., Requena, B., Suarez-Arrones, L., Arundale, A., et al. (2020). Impact of potential physiological changes due to Covid-19 home confinement on athlete health protection in elite sports: a call for awareness in sports programming. Sports Medicine, 50(8), 1417-1419.
https://doi.org/10.1007/s40279-020-01297-6
Şenol, M., & Gülmez, İ. (2017). Effects of functional exercise band (trx) and body weight resistance training on swimming performance. İstanbul Üniversitesi Spor Bilimleri Dergisi, 7(1), 62-75. https://dergipark.org.tr/en/download/article-file/382194
Sever, M. O. (2021). The effect of 9-12 years old swimmers on 50 m free technical performance before and after Covid-19. Spor Bilimleri Dergisi, 2(1), 96-104. https://doi.org/10.29228/roljournal.48700
Silva, J. R., Nassis, G. P., & Rebelo, A. (2015). Strength training in soccer with a specific focus on highly trained players. Sports medicine-open, 1(1),17.
https://doi.org/10.1186/s40798-015-0006-z
Sönmez, H. O., Becer, E., Gülen, Ö., & Madak, E. (2020). 4 haftalık serbest stil yüzme eğitiminde beceri öğreniminin kaygı düzeyi üzerine etkisi. International Social Mentality and Researcher Thinkers Journal, 6(28): 217-222. http://dx.doi.org/10.31576/smryj.442
Thomassen, M., Christensen, P. M., Gunnarsson, T. P., Nybo, L., & Bangsbo, J. (2010). Effect of 2-wk intensified training and inactivity on muscle Na+-K+ pump expression, phospholemman (FXYD1) phosphorylation, and performance in soccer players. Journal of Applied Physiology, 108(4), 898-905. https://doi.org/10.1152/japplphysiol.01015.2009
Türkmen, M., & Özsarı, A. (2020). Covid-19 salgını ve spor sektörüne etkileri. International Journal of Sport Culture and Science, 8(2), 55-67. https://doi.org/10.14486/IntJSCS.2020.596
Wade, M. G., & Smith, T. J. (2014). Variability in human motor and sport performance. In: T. J. Smith, R. A. Henning, M. G. Wade & T. Fisher, Variability in human performance (pp.31-46). CRC Press. https://doi.org/10.1201/b17319
World Health Organization (2020). Coronavirus disease (COVID-19) advice for the public. https://www.cdc.gov/coronavirus/2019-ncov/needextra-precautions/people-at-higher-risk.html.Erişim:13 Haziran 2020.
World Health Organization (2009). Global health risks: mortality and burden of disease attributable to selectedmajor risks. Geneva. https://apps.who.int/iris/handle/10665/44203
Yanagisawa, N., Wada, K., Spengler, J.D., & Sanchez-Pina, R. (2018). Health preparedness plan for dengue detection during the 2020 summer Olympic and Paralympic games in Tokyo. PLOS Neglected Tropical Diseases, 12(9). https://doi.org/10.1371/journal.pntd.0006755
Descargas
Publicado
Cómo citar
Número
Sección
Licencia
Aquellos autores/as que tengan publicaciones con esta revista, aceptan los términos siguientes:
- Los autores/as conservarán sus derechos de autor y garantizarán a la revista el derecho de primera publicación de su obra, el cuál estará simultáneamente sujeto a la Licencia de reconocimiento de Creative Commons que permite a terceros compartir la obra siempre que se indique su autor y su primera publicación esta revista.
- Los autores/as podrán adoptar otros acuerdos de licencia no exclusiva de distribución de la versión de la obra publicada (p. ej.: depositarla en un archivo telemático institucional o publicarla en un volumen monográfico) siempre que se indique la publicación inicial en esta revista.
- Se permite y recomienda a los autores/as difundir su obra a través de Internet (p. ej.: en archivos telemáticos institucionales o en su página web) antes y durante el proceso de envío, lo cual puede producir intercambios interesantes y aumentar las citas de la obra publicada. (Véase El efecto del acceso abierto).
Licencia Creative Commons
VIREF Revista de Educación Física se encuentra bajo Licencia Creative Commons: Atribución No Comercial Compartir Igual