Recruitment Patterns in Human Skeletal Muscle During Electrical Stimulation

Author:

Gregory Chris M1,Bickel C Scott2

Affiliation:

1. CM Gregory, PT, PhD, is Research Associate, Department of Physical Therapy, University of Florida, Room 1142, HPNP Bldg, 101 S Newell Dr, Gainesville, FL 32610 (USA)

2. CS Bickel, PT, PhD, is Assistant Professor, Department of Physical Therapy, Louisiana State University Health Sciences Center, New Orleans, La

Abstract

Abstract Electromyostimulation (EMS) incorporates the use of electrical current to activate skeletal muscle and facilitate contraction. It is commonly used in clinical settings to mimic voluntary contractions and enhance the rehabilitation of human skeletal muscles. Although the beneficial effects of EMS are widely accepted, discrepancies concerning the specific responses to EMS versus voluntary actions exist. The unique effects of EMS have been attributed to several mechanisms, most notably a reversal of the recruitment pattern typically associated with voluntary muscle activation. This perspective outlines the authors' contention that electrical stimulation recruits motor units in a nonselective, spatially fixed, and temporally synchronous pattern. Furthermore, it synthesizes the evidence that supports the contention that this recruitment pattern contributes to increased muscle fatigue when compared with voluntary actions. The authors believe the majority of evidence suggests that EMS-induced motor unit recruitment is nonselective and that muscle fibers are recruited without obvious sequencing related to fiber types.

Publisher

Oxford University Press (OUP)

Subject

Physical Therapy, Sports Therapy and Rehabilitation

Reference31 articles.

1. Dietary creatine supplementation and muscular adaptation to resistive overload;Stevenson;Med Sci Sports Exerc,2001

2. Electrical stimulation for therapy and mobility after spinal cord injury;Stein;Prog Brain Res,2002

3. Electrical stimulation: can it increase muscle strength and reverse osteopenia in spinal cord injured individuals;Belanger;Arch Phys Med Rehabil,2000

4. A simple means of increasing muscle size after spinal cord injury: a pilot study;Dudley;Eur J Appl Physiol Occup Physiol,1999

5. Hypertrophy, resistance training, and the nature of skeletal muscle activation;Ruther;J Strength Cond Res,1995

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