Dynamic Shoulder and Hip Flexibility in Indoor Boulder Climbers

Abstract

This descriptive study aimed to analyze the dynamic shoulder and hip flexibility of indoor Boulder climbers. The two-dimensional kinematics was used as a method. The participants selected for the study consisted of 15 amateur athletes of the modality. For evaluation, the climbers performed a climb to a bouldering-type trajectory idealized by a Route Setter. The calculation of the relative angles of the shoulder and hip joints were calculated using trigonometric functions. The amplitude of these articulations was calculated from the maximum and minimum peaks presented as a function of the test time. The performance of the athletes was determined by the time of the test. The results showed that only the shoulder joint showed a significant difference, with the amplitude value being greater for the right shoulder compared to the left. It was observed that there is a negative correlation between the amplitude of the shoulder articulation and the amplitude of the hip articulation, as well as a positive correlation between the amplitude of the shoulder with the test time and the amplitude of the hip with the practice time. It was also observed that there is only one negative correlation, which is between the amplitude of the shoulder joint and the practice time. It is concluded that the pathway was deterministic in the angular kinematics of the shoulder; hip and shoulder amplitude were important for the performance of the modality and time can be a control variable in the performance analysis process.

Keywords: Climbing, Boulder, Joint angle, Biomchanics

References

Araújo, C.G.S. (2008). Avaliação da flexibilidade: valores normativos do flexiteste dos 5aos 91 anos de idade. Arquivos Brasileiros de Cardiologia, 90, 280-287. https://doi.org/10.1590/S0066-782X2008000400008.

Associação Brasileira de Escalada Esportiva (2022). Regulamentos. ABEE. https://abee.com.br/regulamentos/

Ávila, AOV, Amadio, AC, Guimarães, ACS, David, AC, Mota, CB, Borges, DM, Guimarães, FJSP, Menzel, HJ, Carmo, J., Loss, JF, Serrão, JC, Sá, MR, e Barros, RML (2002). Métodos de medição em biomecânica do esporte: descrição de protocolos para aplicação nos centros de excelência esportiva (Rede CENESP-MET). Rev Bras Biomecanic, 3, 57-67. https://repositorio.usp.br/item/001348067

Bertuzzi, R., e Lima-Silva, A. E. (2013). Principais características dos estilos de escalada em rocha e indoor. Acta Brasileira do Movimento Humano, 3(3), 31-46. http://posgrad.ulbra.br/periodicos/index.php/actabrasileira/article/view/2876

Billat, V., Palleja, P., Charlaix, T., Rizzardo, P., e Janel, N. (1995). Energy specificity of rock climbing and aerobic capacity in competitive sport rock climbers. The Journal of sports medicine and physical fitness, 35(1), 20-24. https://www.researchgate.net/publication/15724089

Draga, P., Ozimek, M., Krawczyk, M., Rokowski, R. Nowakowska, M., Ochwat, P., e Stanula, A. (2020). Importance and diagnosis of flexibility preparation of male sport climbers. International journal of environmental research and public health, 17(7), 2512. https://doi.org/10.3390/ijerph17072512

Draper, N., Brent, S., Hodgson, C., e Blackwell, G. (2009). Flexibility assessment and the role of flexibility as a determinant of performance in rock climbing. International Journal of Performance Analysis in Sport, 9(1), 67-89. http://dx.doi.org/10.1080/24748668.2009.11868465

Draper, N., Giles, D., Taylor, N., Vigouroux, L., España-Romero, V., Baláš, J., Altamirano, IA, Mally, F., Beeretz, I., Canalejo, JC, Josseron, G., Kodejška, J., Téllez, MJA, e De Vaca, GGC (2021). Performance assessment for rock climbers: the international rock climbing research association sport-specific test battery. International Journal of Sports Physiology and Performance, 16(9), 1242-1252.

https://doi.org/10.1123/ijspp.2020-0672

Grant, S., Hynes, V., Whittaker, A., e Aitchison, T.C. (1996). Anthropometric, strength, endurance and flexibility characteristics of elite and recreational climbers. Journal of sports sciences, 14(4), 301-309. https://doi.org/10.1080/02640419608727715

Grant, S., Hasler, T., Davies, C., Aitchison, T.C., Wilson, J., e Whittaker, A. (2001). A comparison of the anthropometric, strength, endurance and flexibility characteristics of female elite and recreational climbers and non-climbers. Journal of sports sciences, 19(7), 499-505. https://doi.org/10.1080/026404101750238953

Godoffe, J. (2017). My keys to route setting (1ª ed.). Jacky Godoffe.

Hatch, T., e Leonardon, F. (2022). Rules 2022. IFSC. International Federation of Sport Climbing. https://cdn.ifsc-climbing.org/images/Website/2022_IFSC_Rules_201.pdf

Imba Zurita, K.A.(2021). Evaluación del nivel de flexibilidad y su relación con la fuerza y resistencia en deportistas que practican escalada en la provincia de Imbabura, periodo 2021 [Bachelor's thesis. Lic. en Terapia Física Médica, Facultad de Ciencias de la Salud, Universidad Técnica del Norte]. http://repositorio.utn.edu.ec/handle/123456789/11713

Pereira, D.W., e Nista-Piccolo, V.L. (2010). Escalada: um esporte na ponta dos dedos. Rev. Bras. Ciênc. Mov, 18(1), 73-80. https://doi.org/10.18511/rbcm.v18i1.1083

Orth, D., Davids, K., e Seifert, L. (2016). Coordination in climbing: effect of skill, practice and constraints manipulation. Sports Medicine, 46, 255-268. https://doi.org/10.1007/s40279-015-0417-5

Seifert, L., Coeurjolly, J.F., Hérault, R., Wattebled, L., e Davids, K. (2013). Temporal dynamics of inter-limb coordination in ice climbing revealed through change-point analysis of the geodesic mean of circular data. Journal of Applied Statistics, 40(11), 2317-2331. https://doi.org/10.1080/02664763.2013.810194

Souto, V.I.V., e Alchieri, R. (2015). Metodologia de treinamento em muro artificial para escalada em rocha. Fiep Bulletin - Online, 85(2). https://www.fiepbulletin.net/fiepbulletin/article/view/85.a2.88

Vujić, S., Mirkov, D., Dikjć, N., Küpper, T., Totić, S., Đoković, A., Radivojevic N., Andjelkovic, M., Oblakovic, B.J., Baralic, I., e Manovski, K. (2021). Anthropometric, strength, endurance and flexibility characteristics of male elite ice climbers and sport climbers. Deutsche Zeitschrift fur Sportmedizin, 72(2), 75-80. http://dx.doi.org/10.5960/dzsm.2020.452

Wall, C.B., Starek, S.J., Fleck, S.J., e Byrnes, W.C. (2004). Prediction of indoor climbing performance in women rock climbers. The Journal of Strength & Conditioning Research, 18(1), 77-83. https://pubmed.ncbi.nlm.nih.gov/14971979/

Weineck, J. (1999). Treinamento de Resistência. In: Treinamento ideal (pp. 136-222). Editora Manole.

Author Biographies

Andria Watanabe de Godoy,

 

 

 

 

 

 

Pedro Paulo Deprá,

http://lattes.cnpq.br/1068980185495185

Published
2024-02-05
How to Cite
Godoy, A. W. de, & Deprá, P. P. (2024). Dynamic Shoulder and Hip Flexibility in Indoor Boulder Climbers. Lecturas: Educación Física Y Deportes, 28(309), 16-29. https://doi.org/10.46642/efd.v28i309.7238
Section
Research Articles