Effects of an official duathlon sprint competition on lower limb temperature: response according to moments and dominance
DOI:
https://doi.org/10.33233/rbfex.v20i4.4081Keywords:
thermography; running; cycling; competitionAbstract
Introduction: Infrared Thermography has contributed to detect physiological changes caused by sports with the use of skin temperature. Objective: To verify the lower limb temperature after a sprint duathlon competition. Methods: Seven duathletes (37 ± 8 years, 72.3 ± 6 kg, 15.7 ± 3% and 171 ± 7 cm) participated. A FLIR® E8 thermal imager (sensitivity ≤ 0.06 ° C) was used to collect images of regions of interest (ROI): quadriceps, tibialis, hamstrings, and calves before (M0), immediately after (M1) and 10 minutes after competition (M2). Results: The measures indicate a decrease (p > 0.05) in the temperature of the quadriceps, tibialis, and hamstrings in M1 compared to M0. In M2, a higher temperature than M0 and M1 is observed in the quadriceps, tibial and calf muscles. Compared to the beginning, competition resulted in a decrease in temperature immediately after in all regions, except calves, followed by an increase in the skin temperature of the analyzed ROI and did not cause asymmetries between dominant and non-dominant members. Conclusion: Thermography can be used in the analysis of duathletes and asymmetry between limbs and can help in the planning and organization of training in this modality.
References
Ronconi M, Alvero-Cruz JR. Respuesta de la frecuencia cardíaca y consumo de oxígeno de atletas varones em competiciones de duatlón sprint. Apunts Med Esport 2011;46(172):183-8. doi: 10.1016/j.apunts.2011.02.008
Confederação Brasileira de Triathlon. Site CBTri. [cited 2020 Jan 2]. http://www.cbtri.org.br. Atualizado em 2020
Hottenrott K. ed. El entrenamiento del Duatlón. Badalona, Espanha: Paidotribo; 2017.
International Triathlon Union. Site ITU. [cited 2020 Jan 2]. https://www.triathlon.org/
Tanda G. The use of infrared thermography to detect the skin temperature response to physical activity. J Phys Conf Ser 2015;655(1):1-10. doi: 10.1088/1742-6596/655/1/012062
Korman P, Straburzynska-Lupa A, Kusy K, Kantanista A, Zielinski J. Changes in body surface temperature during speed endurance work-out in highly-trained male sprinters. Infrared Phys Tech 2016;78:209-13. doi: 10.1016/j.infrared.2016.08.003
Santos RMC, Souza ES, Silva SJ, Arruda JRL, Santa Cruz RAR. Análise termográfica dos esforços no futsal. Coleç Pesqui Educ Fís [Internet]. 2017 [cited 2021 Jun 26];16(1):15-22. Available from: https://www.fontouraeditora.com.br/periodico/upload/artigo/1296_1505737539.pdf
Santa Cruz RAR, Araújo VA, Sousa PAC, Arruda JRL. Perfil termográfico de atletas de handebol após um jogo oficial. Rev Movimenta [Internet]. 2018 [cited 2021 Jun 21];11(1):12-9. Available from: https://www.revista.ueg.br/index.php/movimenta/article/view/6429
Corte ACR, Pedrinelli A, Marttos A, Souza IFG, Grava J, Hernandez AJ. Infrared thermography study as a complementary method of screening and prevention of muscle injuries: pilot study. BMJ Open 2019;5:1-5. doi: 10.1136/bmjsem-2018-000431
Sillero-Quintana M, Fernández-Jaén T, Fernández-Cuevas I, et al. Infrared thermography as a support tool for screening and early diagnosis in emergencies. J Med 2015;5(6):1223-8. doi: 10.1166/jmihi.2015.1511
Corte ACR, Hernandez AJ. Termografia médica infravermelha aplicada à medicina do esporte. Rev Bras Med Esporte 2016;22(4):315-9. doi: 10.1590/1517-869220162204160783
Merla A, Mattei PA, Di Donato L, Romani GL. Thermal imaging of cutaneous temperature modifications in runners during graded exercise. Ann Biomed Eng 2009;38:158-163. doi: 10.1007/s10439-009-9809-8
Morais NA, Araújo VA, Carvalho LS, Sousa PAC, Santa Cruz RAR. Respostas termográficas dos esforços em atletas de voleibol. Corpoconsciência [Internet]. 2017 [cited 2021 Jun 20];21(2):8-14. Available from: http://cev.org.br/biblioteca/respostas-termograficas-dos-esforcos-em-atletas-de-voleibol/
Balci GA, Basaran T, Colakoglu M. Analysing visual pattern of skin temperature during submaximal and maximal exercises. Infrared Phys Tech 2016;74:57-62. doi: 10.1016/j.infrared.2015.12.002
Silva AG, Albuquerque MR, Brito CJ, Oliveira SAF, Stroppa GM, Sillero-Quintana M, Marins JCB. Resposta térmica da pele ao exercício em remoergômetro de alta versus moderada intensidade em homens fisicamente ativos. Rev Port Ciênc Desporto 2017;17:125-37. doi: 10.5628/rpcd.17.s4a.125
Cogo WT, Nogueira PHR, Silva AG, Marins JCB. Perfil térmico de membros inferiores de jogadores de futebol de categoria de base. Revista Brasileira de Futebol [Internet]. 2017 [cited 2021 Jun 20];10(2):4-24. Available from: http://cev.org.br/biblioteca/perfil-termografico-dos-membros-inferiores-jogadores-futebol/
Pinto TWS, Guimarães ASP, Barreto TC, Santa Cruz RAR. Alterações termográficas na musculatura abdominal após exercício estático e dinâmico em jovens ativas. Rev Perspectiva [Internet]. 2018 [cited 2021 Jun 20];3(1):11-19. Available from: http://sys.facos.edu.br/ojs/index.php/perspectiva/article/viewFile/189/186
Marins JCB, Fernandez-Cuevas I, Arnaiz-Lastras J, Fernandes AA, Sillero-Quintana M. Applications of infrared thermography in sports: a review. Rev Int Med Cienc Act Fís [Internet]. 2015 [cited 2021 Jun 21];15(60):805-24. Available from: http://www.termografia.ufv.br/wp-content/uploads/Marins-2015-Applications-of-Infrared-Thermography-in-Sports.-A-Review.pdf
Marins JCB, Fernandes AA, Moreira DG, Silva FS, Costa CMA, Pimenta E. Thermographic profile of soccer players' lower limb. Rev Andal Med Deport 2014;7(1):1-6. doi: 10.1016/S1888-7546(14)70053-X. (b)
Marins JCB, Moreira DG, Cano SP, Quintana MS, Soares DD, Fernandes AA, et al. Time required to stabilize thermographic images at rest. Infrared Phys Tech 2014;65:30-5. doi: 10.1016/j.infrared.2014.02.008. (a)
Bourdon PC, Cardinal M, Murray A, Gastin P, Kellman M, Varley MC, et al. Monitoring athlete training loads: consensus statement. Int J Sport Physiol 2017;12(2):161-70. doi: 10.1123/IJSPP.2017-0208
Rios ET, Rodrigues FC, Rocha LF, Salemi VMC, Miranda DP. Influência do volume semanal e do treinamento resistido sobre a incidência de lesão em corredores de rua. Revista Brasileira de Prescrição e Fisiologia do Exercício [Internet] 2017 [cited 2021 Jun 21];11(64):104-9. Available from: http://www.rbpfex.com.br/index.php/rbpfex/article/view/1086/889
Stroppa GM, Silva AG, Moreira DG, Cerqueira MS, Fernandes AA, Bouzas JCM. Análise da temperatura da pele em joelhos de jogadoras de futebol profissional. Revista Brasileira de Futebol [Internet] 2017[cited 2021 Jun 21];8(2):36-42. Available from: https://rbf.ufv.br/index.php/RBFutebol/article/view/225
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Copyright (c) 2021 Angélica Tamara Tuono, Andressa Mella Pinheiro, Nathália Arnosti Vieira, Tiago Marques de Rezende, Sérgio Henrique Borin, Charlini Simoni Hartz, Carlos Roberto Padovani, João Paulo Borin
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