Abstract
The aim was to evaluate the cardiodynamic adjustment during 4 days of prolonged exercises
and to check if the plasma volume (PV) expansion which is observed generally during
such events plays a role in this adaptation. Thirteen subjects exercised 5 hours
per day on a cycle ergometer alternately with a treadmill for 4 days (D1 to D4) (6
× 50 min sessions per day). The individual cycle ergometer load and the treadmill
speed were unchanged during each exercise session and throughout all the sessions,
and corresponded to a moderate exercise intensity: 58 - 63 % of peak oxygen uptake
(V·O2peak). Heart rate (HR) was recorded every 15 s during each exercise session and V·O2 was measured from the expired air at the beginning and the end of each exercise
session. Relative PV changes were measured from haematocrit and haemoglobin changes
in the morning before the exercise bouts. No significant changes of V·O2 were observed between the first and the last exercise session i. e. for cycling:
2.1 ± 0.2 l/min and for running: 2.4 ± 0.3 l/min. Between the first and the last
day, HR decreased from 143 to 129 bpm for cycle (p < 0.0001) and from 147 to 137
bpm (p = 0.01) for treadmill. As compared to D1, PV increased gradually from D2
(+ 1.8 % ± 4.7 %) to D4 (+ 8.5 % ± 4.7 %). The individual PV increases were significantly
correlated with cycling HR decreases from D1 to D4 (r2 = 0.40, p = 0.02). In conclusion, the 4 days’ prolonged exercise induced a HR decrease
during submaximal exercise without V·O2 drift. Here we suggested that this HR decline could be in part linked to the transient
PV expansion.
Key words
Ventricular function - endurance - oxygen pulse
References
- 1
Åstrand P O, Cuddy T E, Saltin B, Stendberg J.
Cardiac output during submaximal and maximal work.
J Appl Physiol.
1964;
19
268-274
- 2
Bailey P S, Messier P S.
Variations in stride length and running economy in male novice runners subsequent
to a seven-week training program.
Int J Sports Med.
1991;
12
299-304
- 3
Bhambhani Y, Norris S, Bell G.
Prediction of stroke volume from oxygen pulse measurements in untrained and trained
men.
Can J Appl Physiol.
1994;
19
49-59
- 4
Convertino V A.
Blood volume: its adaptation to endurance training.
Med Sci Sports Exerc.
1991;
23
1338-1348
- 5
Coyle E F, Hamilton M T, Alonso J G, Montain S J, Ivy J L.
Carbohydrate metabolism during intense exercise when hyperglycemic.
J Appl Physiol.
1991;
70
834-840
- 6
Davies C TM, Thompson M.
Physiological responses to prolonged exercise in ultramarathon athletes.
J Appl Physiol.
1986;
61
611-617
- 7
Fellmann N.
Hormonal and plasma volume alterations following endurance exercise. A brief review.
Sports Med.
1992;
13
37-49
- 8
Fellmann N, Bedu M, Boudet G, Mage M, Sagnol M, Pequignot J M, Claustrat B, Brun J,
Peyrin L, Coudert J.
Inter-relationships between pituitary-adrenal hormones and catecholamines during
a 6-day Nordic ski race.
Eur J Appl Physiol.
1992;
80
258-265
- 9
Fellmann N, Ritz P, Ribeyre J, Beaufrère B, Delaître M, Coudert J.
Intracellular hyperdration induced by a 7-day endurance race.
Eur J Appl Physiol.
1999;
80
353-359
- 10
Galbo H, Holst J J, Christensen N J.
Glucagon and plasma catecholamine responses to graded and prolonged exercise in man.
J Appl Physiol.
1975;
38
70-76
- 11
Gardner W A, Poehlman E T, Corrigan D L.
Effect of endurance training on gross energy expenditure during exercise.
Hum Biol.
1989;
61
559-569
- 12
Gass G C, McLellan T M, Gass E M.
Effects of prolonged exercise at a similar percentage of maximal oxygen consumption
in trained and untrained subjects.
Eur J Appl Physiol.
1991;
63
430-435
- 13
Green H J, Jones L L, Painter D C.
Effects of short-term training on cardiac function during prolonged exercise.
Med Sci Sports Exerc.
1990;
22
488-493
- 14
Green H J, Coates G, Sutton J R, Jones S.
Early adaptations in gas exchange, cardiac function and haematology to prolonged
exercice training in man.
Eur J Appl Physiol.
1991;
63
17-23
- 15
Hausswirth C, Bigard A X, Guezennec C Y.
Relationships between running mechanics and energy cost of running at the end of
a triathlon and a marathon.
Int J Sports Med.
1997;
18
333-339
- 16
Hopper M K, Coggan A R, Coyle E F.
Exercise stroke volume relative to plasma volume expansion.
J Appl Physiol.
1988;
61
404-408
- 17
Kanstrup I, Ekblom B.
Acute hypervolemia, cardiac performance and aerobic power during exercice.
J Appl Physiol.
1982;
52
1186-1191
- 18
Malher D A, Parker H W, Andersen D C.
Physiologic changes in rowing performance associated with training in collegiate
women rowers.
Int J Sports Med.
1985;
6
229-233
- 19
Milledge J S, Bryson E I, Catley D M, Hesp R, Luff N, Minty B D, Older M W, Payne N N,
Ward M P, Withey W R.
Sodium balance, fluid homeostasis and the renin-aldosterone system during the prolonged
exercise of hill walking.
Clin Sci.
1982;
62
595-604
- 20
O’Toole M L, Hiller W DB, Douglas P S, Pisarello J B, Mullen J L.
Cardiovascular responses to prolonged cycling and running.
Ann Sports Med.
1987;
3
124-130
- 21
Pequignot J M, Peyrin L, Mayet M H, Flandrois R.
Metabolic adrenergic changes during submaximal exercise and in the recovery period
in man.
J Appl Physiol.
1979;
47
701-705
- 22
Pickering G P, Fellmann N, Morio B, Ritz P, Amonchot A, Vermorel M, Coudert J.
Effects of endurance training on the cardiovascular system and water compartments
in elderly subjects.
J Appl Physiol.
1997;
83
1300-1306
- 23
Sawka M N, Petrofsky J S, Philips C A.
Energy cost of submaximal isometric contractions in cat fast and slow twitch muscles.
Pflügers Arch.
1991;
390
164-168
- 24
Strauss M B, Davis R K, Rosenbaum J B, Rossmeisl E C.
Water diuresis produced during recumbency by the intravenous infusion of isotonic
saline solution.
J Clin Invest.
1951;
30
862-868
- 25
Wendt I R, Gibbs C L.
Energy production of rat extensor digitorum longus muscle.
Am J Physiol.
1973;
224
1081-1086
- 26
Williams E S, Ward M P, Milledge J S, Withey W R, Older M.
Effect of the exercise of seven consecutive days hill-walking on fluid homeostasis.
Clin Sci.
1979;
56
305-316
- 27
Xu F, Montgomery D L.
Effect of prolonged exercices at 65 and 80 % of V·O2max on running economy.
Int J Sports Med.
1995;
16
309-315
N. Fellmann
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