Int J Sports Med 2006; 27(7): 546-552
DOI: 10.1055/s-2005-865922
Training & Testing

© Georg Thieme Verlag KG Stuttgart · New York

Bioenergetics of a Slalom Kayak (K1) Competition

P. Zamparo1 , 3 , S. Tomadini2 , F. Didonè2 , F. Grazzina3 , E. Rejc3 , C. Capelli1
  • 1Dipartimento di Scienze e Tecnologie Biomediche, Facoltà di Medicina e Chirurgia, Università degli Studi di Udine, Udine, Italy
  • 2Canoa Club Udine, Federazione Italiana Canoa-Kayak, Udine, Italy
  • 3Corso di Laurea in Scienze Motorie, Università degli Studi di Udine, Gemona del Friuli (Udine), Italy
Further Information

Publication History

Accepted after revision: May 30, 2005

Publication Date:
30 August 2005 (online)

Abstract

The aim of this study was: i) to compute an energy balance of a slalom kayak competition by measuring the percentage contributions of the aerobic and anaerobic energy sources to total metabolic power (Ėtot); and ii) to compare these data with those obtained, on the same subjects, over a flat-water course covered at maximal speed in a comparable time. Experiments were performed on eight middle- to high-class slalom kayakers (24.8 ± 8.1 years of age, 1.75 ± 0.04 m of stature, and 69.8 ± 4.7 kg of body mass) who completed the slalom race in 85.8 ± 5.3 s and covered the flat water course in 88.1 ± 7.7 s. Ėtot was calculated from measures of oxygen consumption and of blood lactate concentration: it was about 30 % larger during the flat water all-out test (1.72 ± 0.18 kW) than during the slalom race (1.35 ± 0.12 kW). However, in both cases, about 50 % of Ėtot derives from aerobic and about 50 % from anaerobic energy sources. These data suggest that, besides training for skill acquisition and for improving anaerobic power, some high intensity, cardiovascular conditioning should be inserted in the training programs of the athletes specialised in this sport.

References

  • 1 Binzoni T, Ferretti G, Schenker K, Cerretelli P. Phosphocreatine hydrolysis by 31P-NMR at the onset of constant load exercise in humans.  J Appl Physiol. 1992;  73 1644-1649
  • 2 Capelli C, Pendergast D R, Termin B. Energetics of swimming at maximal speeds.  Eur J Appl Physiol. 1998;  78 385-393
  • 3 Cerretelli P, Aghemo P, Rovelli E. Aspetti fisiologici dell'adolescente in relazione alla pratica dell'esercizio fisico.  Med Sport Turin. 1968;  21 731-743
  • 4 di Prampero P E. Energetics of muscular exercise.  Rev Physiol Biochem Pharmacol. 1981;  89 143-222
  • 5 di Prampero P E. The energy cost of human locomotion on land and in water.  Int J Sports Med. 1986;  7 55-72
  • 6 di Prampero P E, Capelli C, Pagliaro P, Antonutto G, Girardis M, Zamparo P. Energetics of best performances in middle distance running.  J Appl Physiol. 1993;  74 2318-2342
  • 7 Jackson A S, Pollock M L. Generalized equations for predicting body density of man.  Br J Nut. 1978;  40 497-504
  • 8 Kearney J T, McKenzie D C. Physiology of canoe sport. Garrett WE, Kirkendall DT Exercise and Sport Science. Philadelphia; Lippincott, Williams and Williams 2000: 745-757
  • 9 Medbø J I, Tabata I. Anaerobic energy release in working muscles during 30 s to 3 min of exausting bicycling.  J Appl Physiol. 1993;  75 1654-1660
  • 10 Pendergast D R, Bushnell D, Wilson W, Cerretelli P. Energetics of kayaking.  Eur J Appl Physiol. 1989;  59 342-350
  • 11 Pendergast D R, Zamparo P, di Prampero P E, Capelli C, Cerretelli P, Termin A, Craig Jr A, Bushnell D, Paschke D, Mollendorf J. Energy balance of human locomotion in water.  Eur J Appl Physiol. 2003;  90 377-386
  • 12 Siri W E. Body composition from fluid space and density. Brozek J, Hanschels A Techniques for Measuring Body Composition. Washington; National Academy of Science 1961: 223-224
  • 13 Tesch P, Pihel K, Wilson G, Karlsson J. Physiological investigations of Swedish elite canoe competitors.  Med Sci Sports. 1976;  8 214-218
  • 14 Wilkie D R. Equations describing power imput by humans as a function of duration of exercise. Ceretelli P, Whipp BJ Exercise Bioenergetics and Gas Exchange. Amsterdam; Elsevier 1980: 75-80
  • 15 Zamparo P, Capelli C, Guerrini G. Energetics of kayaking at submaximal and maximal speeds.  Eur J Appl Physiol. 1999;  80 542-548

Paola Zamparo

Dipartimento di Scienze e
Tecnologie Biomediche

P. le Kolbe 4

33100 Udine

Italy

Phone: + 390432891399

Fax: + 39 04 32 49 43 01

Email: PZamparo@mail.dstb.uniud.it

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