Muscle activation and the slow component rise in oxygen uptake during cycling
- 1 December 2000
- journal article
- clinical trial
- Published by Wolters Kluwer Health in Medicine & Science in Sports & Exercise
- Vol. 32 (12) , 2040-2045
- https://doi.org/10.1097/00005768-200012000-00012
Abstract
During constant-rate high-intensity exercise, a steady state for oxygen uptake (VO2) is not achieved and, after the initial rapid increase, VO2 continues to increase slowly. The mechanism underlying the slow-component rise in VO2 during high-intensity exercise is unknown. It has been hypothesized that increased muscle use may be a contributing factor, but only limited electromyograph (EMG) data are available supporting this hypothesis. The purpose of this study was to determine whether there is an association between the VO2 slow component and muscle use assessed by contrast shifts in magnetic resonance images (magnetic resonance imaging (MRI)). The VO2 slow component was measured in 16 subjects during two 15-min bouts of cycling performed at high and low intensities. EMG and MRI transverse relaxation times (T2) were obtained after 3 and 15 min to determine muscle activity at each intensity. Low-intensity cycling produced no VO2 slow component, and no increases in muscle activity, except for a small increase (P < 0.05) in the T2 of the vastus lateralis. During high-intensity cycling, VO2, T2 of the vastus lateralis, rectus femoris and whole leg, and EMG activity and median power frequency of the vastus lateralis rose significantly (P < 0.05) from 3 to 15 min. Percent increases in VO2 and muscle T2 were related during high-intensity cycling (r = 0.63), but not during low-intensity cycling (r = 0.00). We conclude that increased muscle use is in part responsible for the slow component rise in oxygen uptake. The results support the hypothesis that during constant-rate exercise at intensities above lactate threshold, progressively greater use of fast-twitch motor units increases energy demand and causes concomitant progressive increases in VO2 and lactate.Keywords
This publication has 27 references indexed in Scilit:
- Effect of acute head-down tilt on skeletal muscle cross-sectional area and proton transverse relaxation timeJournal of Applied Physiology, 1996
- Noninvasive Analysis of Human Neck Muscle FunctionSpine, 1995
- EMG median power frequency in an exhausting exerciseJournal of Electromyography and Kinesiology, 1993
- Magnetic resonance imaging and electromyography as indexes of muscle functionJournal of Applied Physiology, 1992
- Absence of exercise-induced MRI enhancement of skeletal muscle in McArdle's diseaseJournal of Applied Physiology, 1991
- Direct Relationship Between Proton T2 and Exercise Intensity in Skeletal Muscle MR ImagesInvestigative Radiology, 1990
- Acute effects of exercise on MR imaging of skeletal muscle in normal volunteersAmerican Journal of Roentgenology, 1988
- Does the Gas Exchange Anaerobic Threshold Occur at a Fixed Blood Lactate Concentration of 2 or 4 mM?International Journal of Sports Medicine, 1983
- Chemical energetics of slow- and fast-twitch muscles of the mouse.The Journal of general physiology, 1982
- Conduction velocity and EMG power spectrum changes in fatigue of sustained maximal effortsJournal of Applied Physiology, 1981