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Updated: Jun 20, 2026

A Murine Model of Muscle Training by Neuromuscular Electrical Stimulation
Published on: May 9, 2012
Effects of unilateral electromyostimulation superimposed on voluntary training on strength and cross-sectional area
Pedro Bezerra1, Shi Zhou, Zachary Crowley
1Department of Exercise Science, Southern Cross University, P.O. Box 157, Lismore, NSW 2480, Australia. j.bezerra.10@scu.edu.au
Abstract:
In this study we investigate the effects of unilateral voluntary contraction (VC) and electromyostimulation superimposed on VC (EV) training on maximal voluntary (MVC) force and cross-sectional area (CSA), as assessed by magnetic resonance imaging of knee extensors. Thirty young men were randomly assigned to either a control group (CG), VC group (VG), or EV group (EVG). The VG and EVG trained the right leg isometrically three sessions per week for 6 weeks. After training, MVC increased in the right leg in the VG and in both legs in the EVG, and EVG was significantly different from CG (all P < 0.01). Increased CSA was found only in the right leg in the VG and EVG (P < 0.01), and correlated with improvements of MVC (r = 0.49, P = 0.01). It appeared that the EV training was equally effective as VC at increasing MVC and CSA, while having a greater cross-education effect. Increased strength without muscle hypertrophy in the unexercised leg of the EVG indicated that neural adaptation was responsible for the cross-education effect.
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