dc.contributorTellez Tinjaca, Luis Andres
dc.contributorUniversidad Santo Tomas
dc.creatorMonroy Salas, Juan Camilo
dc.creatorHernandez Arteaga, Andres Felipe
dc.date.accessioned2023-07-26T19:39:01Z
dc.date.accessioned2023-09-06T14:09:20Z
dc.date.available2023-07-26T19:39:01Z
dc.date.available2023-09-06T14:09:20Z
dc.date.created2023-07-26T19:39:01Z
dc.date.issued2023-05-29
dc.identifierMonroy, J., Hernandez, A. (2023). Relacion de la composición corporal, la temperatura corporal cutánea y la potencia de la articulación femorotibial en bailarines profesionales de folclor. Tesis pregrado. Universidad Santo Tomas. Tunja.
dc.identifierhttp://hdl.handle.net/11634/51465
dc.identifierreponame:Repositorio Institucional Universidad Santo Tomás
dc.identifierinstname:Universidad Santo Tomás
dc.identifierrepourl:https://repository.usta.edu.co
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/8680264
dc.description.abstractDance is a practice of a motor and aesthetic nature which implies neuromuscular, physiological and characteristic demands in body composition, associated with physical exercise and high performance, for which the dancer is considered an aesthetic athlete that combines motor execution and the physical demand with the artistic and cultural performance of their practice. The objective of this study is to establish a non-invasive method for measuring skin body temperature using an infrared thermographic camera and its relationship with body composition and muscle power in the lower limbs of professional dancers. Variables of body composition, skin body temperature and muscle power in lower limbs were evaluated through vertical jumps in professional dancers belonging to the Paipa International Dance Company, Boyacá. Within the results, a total of 20 aesthetic athletes were intervened, Men (n=11) and Women (n=9) where the measurements were made at different moments of the practical session. Finally, the degree of relationship between the variables of skin body temperature, body composition and muscular power in the femorotibial joint of professional dancers is determined.
dc.languagespa
dc.publisherUniversidad Santo Tomás
dc.publisherPregrado Cultura Física, Deporte y Recreación
dc.publisherFacultad de Cultura Física, Deporte y Recreación
dc.relationVan Middelkoop M, Kolkman J, Van Ochten J, Bierma‐Zeinstra SMA, Koes B. Prevalence and incidence of lower extremity injuries in male marathon runners. Oxford, UK: Blackwell Publishing Ltd; 2008;18:140–4. Available from: https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1600-0838.2007.00683.
dc.relationCardozo LA, Cuervo Guzman YA, Murcia Torres JA. Porcentaje de grasa corporal y prevalencia de sobrepeso - obesidad en estudiantes universitarios de rendimiento deportivo de Bogotá, Colombia. 2016;36:68–75. Available from: https://medes.com/publication/114642
dc.relationHildebrandt C, Raschner C, Ammer K. An Overview of Recent Application of Medical Infrared Thermography in Sports Medicine in Austria. Switzerland: MDPI AG; 2010;10:4700–15. Available from: https://www.ncbi.nlm.nih.gov/pubmed/22399901
dc.relationLiiv H, Wyon MA, Jürimäe T, Saar M, Mäestu J, Jürimäe J. Anthropometry, somatotypes, and aerobic power in ballet, contemporary dance, and dancesport. United States: Science & Medicine; 2013;28:207–11. Available from: https://www.ncbi.nlm.nih.gov/pubmed/24337032
dc.relationGaragiola U, Giani E. Use of Telethermography in the Management of Sports Injuries. New Zealand; 1990;10:267–72. Available from: https://www.ncbi.nlm.nih.gov/pubmed/2247727
dc.relationKoutedakis Y, Jamurtas A. The Dancer as a Performing Athlete: Physiological Considerations. Cham: Adis International; 2004;34:651–61. Available from: http://www.ingentaconnect.com/content/adis/smd/2004/00000034/00000010/art00003
dc.relationMerla A, Mattei P, Di Donato L, Romani G. Thermal Imaging of Cutaneous Temperature Modifications in Runners During Graded Exercise. Boston: Springer US; 2010;38:158–63. Available from: https://www.ncbi.nlm.nih.gov/pubmed/19798579
dc.relationJiménez-Reyes, Cuadrado-Peñafiel P., González-Badillo V., Cultura JJA de variables medidas en salto vertical relacionadas con el rendimiento deportivo y su aplicación al entrenamiento, Deporte C y, vol. 6, et al. Cultura, Ciencia y Deporte ISSN: 1696-5043 ccd@ucam.edu Universidad Católica San Antonio de Murcia España.
dc.relationXue EY, Chandler LK, Viviano SL, Keith JD. Use of FLIR ONE smartphone thermography in burn wound assessment. LWW; 2018;80:S236–8.
dc.relationBronner S, Ojofeitimi S, Spriggs J. Occupational Musculoskeletal Disorders in Dancers. Taylor & Francis; 2003;8:57–68. Available from: http://www.tandfonline.com/doi/abs/10.1179/108331903225002416
dc.relationChaudhry S, Fernando R, Screen H, Waugh C, Tucker A, Morrissey D. The use of medical infrared thermography in the detection of tendinopathy: a systematic review. Taylor & Francis; 2016;21:75–82. Available from: http://www.tandfonline.com/doi/abs/10.1080/10833196.2016.1223575
dc.relationFernández-Palazzi D, F., Hernández DR, S., Torrens DP, Y. Lesiones en bailarines de Ballet Clásico (Estudio estadístico de cuatro años).
dc.relationRedín, M. I. (2008). Biomecanica y Bases Neuromusculares de la Actividad Fisica y el Deporte/Biomechanics and Neuromuscular Bases of Physical Activity and Sport. Ed. Médica Panamericana.
dc.relationJi, L., Shu, C., Laouadi, A., Wang, L. L., & Lacasse, M. (2021). Predicting Older People's Thermal Sensation by a New Integrated Physiological-based and Data-driven Model. In ASHRAE Topical Conference Proceedings (pp. 1-11). American Society of Heating, Refrigeration and Air Conditioning Engineers, Inc..
dc.relationTaylor, N. A., Tipton, M. J., & Kenny, G. P. (2014). Considerations for the measurement of core, skin and mean body temperatures. Journal of thermal biology, 46, 72-101.
dc.relationWeigert, M., Nitzsche, N., Kunert, F., Lösch, C., & Schulz, H. (2018). The influence of body composition on exercise-associated skin temperature changes after resistance training. Journal of thermal biology, 75, 112-119.
dc.relationChudecka, M., & Lubkowska, A. (2012). The use of thermal imaging to evaluate body temperature changes of athletes during training and a study on the impact of physiological and morphological factors on skin temperature. Human movement, 13(1), 33-39.
dc.relationSalamunes, A. C. C., Stadnik, A. M. W., & Neves, E. B. (2017). The effect of body fat percentage and body fat distribution on skin surface temperature with infrared thermography. Journal of thermal biology, 66, 1-9.
dc.relationChicharro, J. L., & Vaquero, A. F. (2006). Fisiologa del ejercicio/Physiology of Exercise. Ed. Médica Panamericana.
dc.relationScialom, M., Gonçalves, A., & Padovani, C. R. (2006). Work and injuries in dancers: survey of a professional dance company in Brazil. Medical Problems of Performing Artists, 21(1), 29-33.
dc.relationRoussel, N. A., Nijs, J., Mottram, S., Van Moorsel, A., Truijen, S., & Stassijns, G. (2009). Altered lumbopelvic movement control but not generalized joint hypermobility is associated with increased injury in dancers. A prospective study. Manual therapy, 14(6), 630-635.
dc.relationMajewski, M., Susanne, H., & Klaus, S. (2006). Epidemiology of athletic knee injuries: A 10-year study. The knee, 13(3), 184-188.
dc.relationReid, D. C. (1988). Prevention of hip and knee injuries in ballet dancers. Sports Medicine, 6, 295-307.
dc.relationLeón Valladares, D., & Barrio Mateu, L. A. (2021). Cambios en el patrón ecográfico de miembros inferiores en bailarines folclóricos del norte de Chile. Criterios para diseñar un plan de prevención de lesiones. MediSur, 19(1), 71-82.
dc.relationCardoso, A. A., Reis, N. M., Vieira, M. D. C. S., Borgatto, A. F., Folle, A., & Guimarães, A. C. D. A. (2020). Associated factors and profile of injuries in professional ballroom dancers in Brazil: A cross-sectional study. Motriz: Revista de Educação Física, 26. Steinberg, N., Stern, M., Tenenbaum, S., Blankstein, A., Zeev, A., & Siev-Ner, I. (2018). Ultrasonography and clinical examination of knee injuries in pre-and post-menarche dancers. Research in Sports Medicine, 26(3), 289-305.
dc.relationCuan, C. Y., Correa-Mesa, J. F., García, A. M., & Correa-Morales, J. C. (2016). Proporción de lesiones y factores correlacionados en bailarines de ballet clásico de una academia en Bogotá, DC. Revista de la Facultad de Medicina, 64, 127-133.
dc.relationAndrade Lema, I. P. (2022). Factores relacionados a la prevalencia de lesiones osteomusculares de rodilla en bailarines de ballet (Bachelor's thesis, PUCE-Quito).
dc.relationCosta, M. S., Ferreira, A. S., Orsini, M., Silva, E. B., & Felicio, L. R. (2016). Characteristics and prevalence of musculoskeletal injury in professional and non-professional ballet dancers. Brazilian journal of physical therapy, 20, 166-175.
dc.relationOrishimo, K. F., Kremenic, I. J., Pappas, E., Hagins, M., & Liederbach, M. (2009). Comparison of landing biomechanics between male and female professional dancers. The American journal of sports medicine, 37(11), 2187-2193.
dc.relationTanda, G. (2015, October). The use of infrared thermography to detect the skin temperature response to physical activity. In Journal of Physics: Conference Series (Vol. 655, No. 1, p. 012062). IOP Publishing.
dc.relationQuesada, J. I. P. (Ed.). (2017). Application of infrared thermography in sports science (pp. 327-327). Berlin, Germany:: Springer.
dc.relationRosas, M. R. (2011). Lesiones deportivas. Clínica y Tratamiento. Recuperado de: http://www. dfarmacia. com/farma/ctl_servlet, 30(3), 36-42.
dc.rightsAbierto (Texto Completo)
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightshttp://purl.org/coar/access_right/c_abf2
dc.titleRelacion de la composición corporal, la temperatura corporal cutánea y la potencia de la articulación femorotibial en bailarines profesionales de folclor.


Este ítem pertenece a la siguiente institución