Skeletal muscle hypertrophy in response to isometric, lengthening, and shortening training bouts of equivalent duration
Open Access
- 1 May 2004
- journal article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 96 (5) , 1613-1618
- https://doi.org/10.1152/japplphysiol.01162.2003
Abstract
Movements generated by muscle contraction generally include periods of muscle shortening and lengthening as well as force development in the absence of external length changes (isometric). However, in the specific case of resistance exercise training, exercises are often intentionally designed to emphasize one of these modes. The purpose of the present study was to objectively evaluate the relative effectiveness of each training mode for inducing compensatory hypertrophy. With the use of a rat model with electrically stimulated (sciatic nerve) contractions, groups of rats completed 10 training sessions in 20 days. Within each training session, the duration of the stimulation was equal across the three modes. Although this protocol provided equivalent durations of duty cycle, the torque integral for the individual contractions varied markedly with training mode such that lengthening > isometric > shortening. The results indicate that the hypertrophy response did not track the torque integral with mass increases of isometric by 14%, shortening by 12%, and lengthening by 11%. All three modes of training resulted in similar increases in total muscle DNA and RNA. Isometric and shortening but not lengthening mode training resulted in increased muscle insulin-like growth factor I mRNA levels. These results indicate that relatively pure movement mode exercises result in similar levels of compensatory hypertrophy that do not necessarily track with the total amount of force generated during each contraction.Keywords
This publication has 35 references indexed in Scilit:
- Acute molecular responses of skeletal muscle to resistance exercise in able-bodied and spinal cord-injured subjectsJournal of Applied Physiology, 2003
- Fatigue is not a necessary stimulus for strength gains during resistance trainingBritish Journal of Sports Medicine, 2002
- Mechanical load increases muscle IGF-I and androgen receptor mRNA concentrations in humansAmerican Journal of Physiology-Endocrinology and Metabolism, 2001
- Effects of resistance training on neuromuscular junction morphologyMuscle & Nerve, 2000
- Time course of changes in markers of myogenesis in overloaded rat skeletal musclesJournal of Applied Physiology, 1999
- Phosphorylation of p70S6kcorrelates with increased skeletal muscle mass following resistance exerciseAmerican Journal of Physiology-Cell Physiology, 1999
- The relationships among IGF-1, DNA content, and protein accumulation during skeletal muscle hypertrophyJournal of Applied Physiology, 1996
- Relative changes in maximal force, EMG, and muscle cross-sectional area after isometric trainingMedicine & Science in Sports & Exercise, 1992
- A new animal model for modulating myosin isoform expression by altered mechanical activityJournal of Applied Physiology, 1992
- Effects of eccentric and concentric muscle actions in resistance trainingActa Physiologica Scandinavica, 1990