Fatigue effects on motor unit activity daring submaximal contractions

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Abstract

Objective: To examine motor unit changes during the development of fatigue in healthy subjects. Design: Automated decomposition-enhanced spike-triggered averaging was used to characterize motor unit size and firing rate in the dominant vastus medialis during maintained contractions at 10% and 30% of maxima voluntary contraction (MVC). Setting: Academic outpatient neuromuscular clinic. Participants: Healthy laboratory personnel. Main Outcome Measures: Surface electromyogram, surface-detected motor unit action potential amplitude (S-MUAP), mean firing rate, force (MVC), motor unit index. Results: Surface electromyogram values and S-MUAP amplitudes increased during both 10% and 30% MVC fatiguing contractions, while mean firing rates decreased. A motor unit index, indicating the degree of motor unit pool activation, increased similarly to S-MUAP size, implying that new and larger units were recruited to maintain the contraction. Repeated contractions led to earlier motor unit changes and fatigue. Conclusion: During submaximal fatiguing contractions, additional motor units are activated to maintain strength. These changes begin early, within the first minute, particularly after a previous fatiguing effort. (C) 2000 by the American Congress of Rehabilitation Medicine and the American Academy of Physical Medicine and Rehabilitation.

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APA

Conwit, R. A., Stashuk, D., Suzuki, H., Lynch, N., Schrager, M., & Metter, E. J. (2000). Fatigue effects on motor unit activity daring submaximal contractions. Archives of Physical Medicine and Rehabilitation, 81(9), 1211–1216. https://doi.org/10.1053/apmr.2000.6975

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