Abstract
The purpose of this study was to investigate energy system contributions and energy costs in combat situations. The sample consisted of 10 male taekwondo athletes (age: 21 ± 6 years old; height: 176.2 ± 5.3 cm; body mass: 67.2 ± 8.9 kg) who compete at the national or international level. To estimate the energy contributions, and total energy cost of the fights, athletes performed a simulated competition consisting of three 2 min rounds with a 1 min recovery between each round. The combats were filmed to quantify the actual time spent fighting in each round. The contribution of the aerobic (W AER), anaerobic alactic (W PCR), and anaerobic lactic \( (W_{ [{\rm La}^-]}) \) energy systems was estimated through the measurement of oxygen consumption during the activity, the fast component of excess post-exercise oxygen consumption, and the change in blood lactate concentration in each round, respectively. The mean ratio of high intensity actions to moments of low intensity (steps and pauses) was ~1:7. The W AER, W PCR and \( (W_{ [{\rm La}^-]}) \) system contributions were estimated as 120 ± 22 kJ (66 ± 6%), 54 ± 21 kJ (30 ± 6%), 8.5 kJ (4 ± 2%), respectively. Thus, training sessions should be directed mainly to the improvement of the anaerobic alactic system (responsible by the high-intensity actions), and of the aerobic system (responsible by the recovery process between high-intensity actions).
Similar content being viewed by others
References
Beneke R, Bleif I, Leithauser RM, Hutler M (2002) How anaerobic is the Wingate test? Eur J Appl Physiol 87:388–392
Beneke R, Beyer T, Jachner C, Erasmus J, Hutler M (2004) Energetics of karate kumite. Eur J Appl Physiol 92:518–523
Bertuzzi RCM, Franchini E, Kokubun E, Kiss MAPDM (2007) Energy system contributions in indoor rock climbing. Eur J Appl Physiol 101:293–300
Bouhlel E, Jouini A, Gmada N, Nefzi A, Abadía KB, Tabka Z (2006) Heart rate and blood lactate responses during taekwondo training and competition. Sci Sports 21:285–290
Bridge CA, Jones MA, Hitchen P, Sanchez X (2007) Heart rate responses to taekwondo training in experienced practitioners. J Strength Cond Res 21:718–723
Bridge CA, Jones MA, Drust B (2009) Physiological responses and perceived exertion during international taekwondo competition. Int J Sports Physiol Perfor 4:485–493
Butios S, Tasika N (2007) Changes in heart rate and blood lactate concentration as intensity parameters during simulated taekwondo competition. J Sports Med Phys Fit 47:179–185
Capranica L, Lupo C, Cortis C, Chiodo S, Cibelli G, Tessitore A (2011) Salivary cortisol and alpha-amylase reactivity to taekwondo competition in children. Eur J Appl Physiol [Epub ahead of print]
Chiodo S, Tessitore A, Cortis C, Lupo C, Ammendolia A, Iona T, Capranica L (2011a) Effects of official taekwondo competitions on all-out performances of elite athletes. J Strength Cond Res 25:334–339
Chiodo S, Tessitore A, Cortis C, Cibelli G, Lupo C, Ammendolia A, De Rosas M, Capranica L (2011b) Stress-related hormonal and psychological changes to official youth taekwondo competitions. Scand J Med Sci Sports 21:111–119
Crisafulli A, Vitelli S, Cappai I, Milia R, Tocco F, Melis F, Concu A (2009) Physiological responses and energy cost during a simulation of a muay thai boxing match. Appl Physiol, Nutr, Metab 34:143–150
di Prampero PE, Ferretti G (1999) The energetics of anaerobic muscle metabolism: a reappraisal of older and recent concepts. Respir Physiol 118:10–115
Doria C, Veicsteinas A, Limonta E, Maggioni MA, Aschieri P, Eusebi F, Fano G, Pietrangelo T (2009) Energetics of karate (kata and kumite techniques) in top-level athletes. Eur J Appl Physiol 107:603–610
Gaitanos GC, Williams C, Boobis LH, Brooks S (1993) Human muscle metabolism during intermittent maximal exercise. J Appl Physiol 75:712–719
Gastin P (2001) Energy system interaction and relative contribution during maximal exercise. Sports Med 31:725–741
Glaister M (2005) Multiple sprint work: physiological responses, mechanisms of fatigue and the influence of aerobic fitness. Sports Med 35:757–777
Hausswirth C, Bigard AX, Le Chevalier JM (1997) The Cosmed K4 telemetry system as an acurate device for oxygen uptake measurements during exercise. Int J Sports Med 18:449–553
Heller J, Peric T, Dlouha R, Kohlikova E, Melichna J, Novakova H (1998) Physiological profiles of male and female taekwondo (ITF) black belts. J Sports Sci 16:243–249
Marcon G, Franchini E, Jardim Jr, Barros Neto TL (2010) Structural analysis of action and time in sports: Judo. J Quant Anal Sports 6 (article 10)
Markovic G, Misigoj-Durakovic M, Trninic S (2005) Fitness profile of elite Croatian female taekwondo athletes. Coll Anthopol 29:93–99
Markovic G, Vucetic V, Cardinale M (2008) Heart rate and lactate responses to taekwondo fight in elite women performers. Biol Sport 25:135–146
Matsushigue KA, Hartmann K, Franchini E (2009) Taekwondo: physiological responses and match analysis. J Strength Cond Res 23:1112–1117
Mello FC, Bertuzzi RCM, Grangeiro PM, Franchini E (2009) Energy systems contributions in 2,000 m race simulation: a comparison among rowing ergometers and water. Eur J Appl Physiol 107:615–619
Pilz-Burstein R, Ashkenazi Y, Yaakobovitz Y, Cohen Y, Zigel L, Nemet D, Shamash N, Eliakim A (2010) Hormonal response to taekwondo fighting simulation in elite adolescent athletes. Eur J Appl Physiol 110:1283–1290
Salvador A, Suay F, Martinez-Sanchis S, Simon VM, Brain PF (1999) Correlating testosterone and fighting in male participants in judo contests. Physiol Behav 68:205–209
Santos VG, Franchini E, Lima-Silva AE (2011) Relationship between attack and skipping in taekwondo contests. J Strength Cond Res 25:1743–1751
Vecchio FB, Franchini E, Vecchio AHM, Pieter W (2011) Energy absorbed by electronic body protector from kicks in a taekwondo competition. Biol Sport 28:75–78
Zar JH (1999) Biostatistical analysis. Prentice Hall New Jersey
Acknowledgments
We would like to thank all of the athletes who participated in the study and National coach Fernando Madureira. We also thank Dr. Luiz Claudio Reeberg Stanganélli and Dr. Ronaldo José Nascimento for helpful technical suggestions and Felipe Nunes Rabelo and Bruno Natale Pasquarelli for discussing the data.
Conflict of interest
The authors declare that they have no conflicts of interest. This study received no financial support.
Author information
Authors and Affiliations
Corresponding author
Additional information
Communicated by Jean-René Lacour.
Rights and permissions
About this article
Cite this article
Campos, F.A.D., Bertuzzi, R., Dourado, A.C. et al. Energy demands in taekwondo athletes during combat simulation. Eur J Appl Physiol 112, 1221–1228 (2012). https://doi.org/10.1007/s00421-011-2071-4
Received:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1007/s00421-011-2071-4