Assessment of motor unit firing by high‐density surface electromyography detects motor neuronal hyperexcitable state in amyotrophic lateral sclerosis

Author:

Noto Yu‐ichi1ORCID,Kitaoji Takamasa1ORCID,Watanabe Kohei2ORCID,Mizuno Toshiki1

Affiliation:

1. Department of Neurology, Graduate School of Medical Science Kyoto Prefectural University of Medicine Kyoto Japan

2. Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences Chukyo University Toyota Japan

Abstract

AbstractIntroduction/AimsIn amyotrophic lateral sclerosis (ALS), the impact of motor neuron dysfunction on the motor unit (MU) firing pattern remains to be elucidated. The aim of this study was to clarify the characteristics of the MU firing rate and its association with clinical factors in ALS patients using high‐density surface electromyography (HDSEMG) and MU decomposition analysis.MethodsNineteen ALS patients and 20 controls prospectively underwent HDSEMG recording of the vastus lateralis muscle during ramp‐up (30% of maximum voluntary contraction) and sustained (10% of maximal voluntary contraction for 60 seconds) contractions on performing isometric knee extension. After decomposition analysis, instantaneous firing rates (IFRs) of individually identified MUs were calculated. Comparison of IFRs and clinical variables between ALS patients and controls and analysis of the correlation between individual mean IFR and clinical variables in ALS patients were performed.ResultsThe number of identified MUs was lower in ALS patients than in controls (P = .017). Mean IFRs of MUs (i.e., mean MU firing rates) were higher in ALS patients than in controls at some force levels on ramp‐up contraction (P < .05) and at 50 to 60 seconds during sustained contraction (9.1 [ALS] vs 8.3 [controls] pulses per second; P = .036). There was no correlation between the clinical parameters and mean IFR of each patient.DiscussionALS patients had a higher MU firing rate during muscle contraction at a low force level. Noninvasive assessment of the MU firing rate by HDSEMG can detect a motor neuronal hyperexcitable state in ALS patients.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Physiology (medical),Cellular and Molecular Neuroscience,Neurology (clinical),Physiology

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