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DOI: 10.1055/s-2005-837468
© Georg Thieme Verlag KG Stuttgart · New York
Influence of Pacing Strategy on Oxygen Uptake During Treadmill Middle-Distance Running
Publikationsverlauf
Accepted after revision: December 6, 2004
Publikationsdatum:
11. April 2005 (online)

Abstract
The oxygen uptake (V·O2) attained during a constant speed 800-m pace trial on a treadmill is less than the maximal V·O2 (V·O2max) in male middle-distance runners with a high V·O2max (i.e., > 65 ml · kg-1 · min-1). We therefore investigated whether the V·O2 attained was influenced by the pacing strategy adopted. Eight male middle-distance runners (age 25.8 ± 3.3 years; height 1.78 ± 0.10 m; mass 67.8 ± 4.7 kg) with a personal best 800-m time of 112.0 ± 3.3 s volunteered to participate. Subjects undertook a speed ramped progressive test to determine V·O2max and three 800-m pace runs to exhaustion all in a randomised order. The three 800-m pace runs included constant speed, acceleration, and race simulation runs. Oxygen uptake was determined throughout each test using 15-s Douglas bag collections. Following the application of a 30-s rolling average, the highest V·O2 during the progressive test (i.e., V·O2max) and the highest V·O2 during the 800-m pace runs (i.e., V·O2peak) were compared. For the eight runners, V·O2max was 67.2 ± 4.3 ml · kg-1 · min-1. V·O2peak was 60.1 ± 5.1 ml · kg-1 · min-1, 61.1 ± 5.2 ml · kg-1 · min-1, and 62.2 ± 4.9 ml · kg-1 · min-1, yielding values of 89.3 ± 2.4 %, 90.8 ± 2.8 %, and 92.5 ± 3.1 % V·O2max for the constant speed, acceleration and race simulation runs, respectively. Across runs, repeated measures ANOVA revealed a significant effect (p = 0.048). Trend analysis identified a significant linear trend (p = 0.025) with the % V·O2max attained being higher for the acceleration run than the constant speed run, and higher still for the race simulation run. These results demonstrate that in middle-distance runners a) pacing strategy influences the V·O2 attained, with a race simulation run elevating the V·O2 attained compared with other pacing strategies, and b) regardless of pacing strategy the V·O2 attained in an 800-m pace run on a treadmill is less than V·O2max.
Key words
Pacing - maximal oxygen uptake - middle-distance running
References
- 1 Ariyoshi M, Tanaka H, Kanamori K, Obara S, Yoshitake H, Yamaji K, Shephard R J. Influence of running pace upon performance: effects upon oxygen intake, blood lactate, and rating of perceived exertion. Can J Appl Sports Sci. 1979; 4 210-213
- 2 Beaver W L, Wasserman K, Whipp B J. A new method for detecting anaerobic threshold by gas exchange. J Appl Physiol. 1986; 60 2020-2027
- 3 di Prampero P E, Capelli C, Pagliaro P, Antonutto G, Girardis M, Zamparo P, Soule R G. Energetics of best performances in middle-distance running. J Appl Physiol. 1993; 74 2318-2324
- 4 Draper S B, Wood D M. The V·O2 response for an exhaustive treadmill run at 800 m pace: a breath-by-breath analysis. Eur J Appl Physiol. 2005; 93 381-389
- 5 Draper S B, Wood D M, Fallowfield J L. The V·O2 response to exhaustive square wave exercise: influence of exercise intensity and mode. Eur J Appl Physiol. 2003; 90 92-99
- 6 Gerbino A, Ward S A, Whipp B J. Effects of prior exercise on pulmonary gas-exchange kinetics during high-intensity exercise in humans. J Appl Physiol. 1996; 80 99-107
- 7 Hill D W, Ferguson C S. A physiological description of critical velocity. Eur J Appl Physiol. 1999; 79 290-293
- 8 Hill D W, Halcomb J N, Stevens E C. Oxygen uptake kinetics during severe intensity running and cycling. Eur J Appl Physiol. 2003; 89 612-618
- 9 Huynh H, Feldt L S. Estimation of the Box correction for degrees of freedom from sample data in the randomised block and split plot designs. J Educ Statist. 1976; 1 69-82
- 10 James D VB, Barnes A J, Lopes P, Wood D M. Heart rate variability: response following a single bout of interval training. Int J Sports Med. 2002; 23 247-251
- 11 Léger L A, Ferguson R J. Effect of pacing on oxygen uptake and peak lactate for a mile run. Eur J Appl Physiol. 1974; 32 251-257
- 12 Lipsey M W. Design Sensitivity: Statistical Power for Experimental Research. London; Sage 1990
- 13 Poole D C. Role of exercising muscle in slow component of V·O2. Med Sci Sports Exerc. 1994; 26 1335-1340
- 14 Pringle J S, Doust J H, Carter H, Tolfrey K, Campbell I T, Sakkas G K, Jones A M. Oxygen uptake kinetics during moderate, heavy and severe intensity “submaximal” exercise in humans: the influence of muscle fibre type and capillarisation. Eur J Appl Physiol. 2003; 89 289-300
- 15 Scheuermann B W, Barstow T J. O2 uptake kinetics during exercise at peak O2 uptake. J Appl Physiol. 2003; 95 2014-2022
- 16 Sejersted O M, Vollestad N K. Increased metabolic rate associated with muscle fatigue. Med Sports Sci. 1992; 34 115-130
- 17 Svedenhag J, Sjodin B. Maximal and submaximal oxygen uptakes and blood lactate levels in elite male middle distance runners. Int J Sports Med. 1984; 5 255-261
- 18 Vollestad N K, Wesche J, Sejersted O M. Gradual increase in leg oxygen uptake during repeated submaximal contractions in humans. J Appl Physiol. 1990; 68 1150-1156
- 19 Wasserman K, Stringer W W, Casaburi R. Is the slow component of exercise V·O2 a respiratory adaptation to anaerobiosis?. Adv Exp Med Biol. 1995; 393 187-194
- 20 Whipp B J. The slow component of O2 uptake kinetics during heavy exercise. Med Sci Sports Exerc. 1994; 26 1319-1326
D. V. B. James
School of Sport and Leisure, University of Gloucestershire, Oxstalls Campus
Oxstalls Lane
Gloucester
United Kingdom
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