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Very low-amplitude muscle activity increases probability of motor evoked potentials in healthy individuals and in amyotrophic lateral sclerosis

  • Séamus O'Sullivan
  • , Yasmine Tadjine
  • , Gabriel R. Palma
  • , Narin Suleyman
  • , Eva Woods
  • , Antonio Fasano
  • , Cathal Walsh
  • , Friedemann Awiszus
  • , Orla Hardiman
  • , Richard G. Carson
  • , Roisin McMackin
  • Trinity College Dublin
  • Royal College of Surgeons in Ireland
  • Otto von Guericke University Magdeburg

Research output: Contribution to journalArticlepeer-review

Abstract

Muscle contraction increases motor evoked potential (MEP) amplitude, decreasing motor threshold (MT). Correspondingly, trials where baseline EMG amplitude exceeds a specified threshold are often rejected. We aimed to investigate the influence of motor activity below such a threshold of MEP amplitude. We retrospectively analysed TMS-EMG data collected during resting MT (RMT) measurement in 45 healthy control subjects (1794 data points) and 35 people with amyotrophic lateral sclerosis (ALS; 1229 data points). Trials with de-meaned root mean squared (RMS) EMG amplitude of >10 µV throughout the 200 ms prior to stimulation were rejected. Generalised linear mixed-effects models assessed effects of muscle activity below this rejection threshold on the probability of evoking an MEP with peak-to-peak amplitude of ≥50 µV. Greater sub-rejection-threshold activity significantly increases MEP probability in control subjects and people with ALS. Models predicted a 38%–43% increase in MEP probability when baseline RMS-EMG amplitude increased from (Formula presented.) to 9 µV. Sub-rejection-threshold baseline activity was significantly greater in ALS than control subjects. Below a typical rejection threshold, greater baseline RMS-EMG amplitudes markedly increase the probability of evoking MEPs with peak-to-peak amplitude of ≥50 µV. Effects of sub-rejection-threshold muscle activity should be accounted for when comparing RMT measures, particularly between cohorts where such activity differs, such as ALS and control subjects.

Original languageEnglish
Pages (from-to)3492-3501
Number of pages10
JournalExperimental Physiology
Volume111
Issue number8
DOIs
Publication statusPublished - 1 Aug 2026
Externally publishedYes

Keywords

  • amyotrophic lateral sclerosis
  • resting motor threshold
  • transcranial magnetic stimulation

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