Impulse propagation and muscle activation in long maximal voluntary contractions
- 1 November 1989
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 67 (5) , 1835-1842
- https://doi.org/10.1152/jappl.1989.67.5.1835
Abstract
With fatigue, force generation may be limited by several factors, including impaired impulse transmission and/or reduced motor drive. In 5-min isometric maximal voluntary contraction, no decline was seen in the peak amplitude of the tibialis anterior compound muscle mass action potential (M wave) either during or immediately after the voluntary effort, provided maximal nerve stimulation was retained. For first dorsal interosseous (FDI) muscle, M wave amplitudes declined by 19.4 +/- 1.6% during the first 2 min but did not change significantly thereafter, despite the continued force reduction (up to 94% in 5 min for both muscles). The duration of the FDI M waves increased (greater than 30%), suggesting that the small decline in amplitude was the result of increased dispersion between the responses of different motor units. Some subjects kept FDI maximally activated throughout, but when they used tibialis anterior, twitch occlusion and tetanic muscle stimulation showed that most subjects were usually only able to do so for the first 60 s and thereafter only during brief “extra efforts.” Thus force loss during isometric voluntary contractions sustained at the highest intensities results mainly from failure of processes within the muscle fibers.This publication has 25 references indexed in Scilit:
- Excitation frequency and muscle fatigue: Mechanical responses during voluntary and stimulated contractionsPublished by Elsevier ,2004
- Extent of motor unit activation during effortJournal of Applied Physiology, 1981
- Influence of joint position on ankle dorsiflexion in humansJournal of Applied Physiology, 1981
- Tetrapartite classification of motor units of cat tibialis posteriorJournal of Neurophysiology, 1980
- Excitation frequency and muscle fatigue: Electrical responses during human voluntary and stimulated contractionsExperimental Neurology, 1979
- Fatigue of maintained voluntary muscle contraction in manThe Journal of Physiology, 1972
- The blood flow through active and inactive muscles of the forearm during sustained hand‐grip contractionsThe Journal of Physiology, 1963
- FAILURE OF NEUROMUSCULAR PROPAGATION IN RATS1958
- Voluntary strength and fatigueThe Journal of Physiology, 1954
- The blood flow through muscle during sustained contractionThe Journal of Physiology, 1939