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Reducing motor evoked potential amplitude variability through normalization

Bibliographic Data

ID15516149
AuthorsFrancisco Faro Viana (0000-0001-8639-0983, Champalimaud Foundation), Gonçalo Cotovio (0000-0002-1267-645X, Champalimaud Foundation), Daniel Rodrigues da Silva (0000-0002-4774-4352, Champalimaud Foundation), Carolina Seybert (0000-0003-4028-5648, Champalimaud Foundation), Patrícia Pereira (0000-0002-4742-6784), Patrı́cia Pereira (0000-0001-7987-1359, Portuguese Army), Artur Silva (0000-0002-4082-1132, Champalimaud Foundation), Filipe Carvalho (0000-0002-8834-7062, Champalimaud Foundation), Albino J Oliveira-Maia (0000-0001-5071-3007, Universidade Nova de Lisboa, corresponding author)
Year2024
Volume15
Pages1279072-1279072
Publication date2024-01-31
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Psychiatry (JOURNAL)
Journal identifiersISSN: 1664-0640 • E-ISSN: 1664-0640
PublisherFrontiers Media (PUBLISHER • CH)
DOI10.3389/fpsyt.2024.1279072
PMID38356910
OpenAlexW4391398109
LanguageEN
References cited57

Background Transcranial Magnetic Stimulation (TMS) is used for in vivo assessment of human motor cortical excitability, with application of TMS pulses over the motor cortex resulting in muscle responses that can be recorded with electromyography (EMG) as Motor Evoked Potentials (MEPs). These have been widely explored as potential biomarkers for neuropsychiatric disorders but methodological heterogeneity in acquisition, and inherent high variability, have led to constraints in reproducibility. Normalization, consisting in scaling the signal of interest to a known and repeatable measurement, reduces variability and is standard practice for between-subject comparisons of EMG. The effect of normalization on variability of MEP amplitude has not yet been explored and was assessed here using several methods. Methods Three maximal voluntary isometric contractions (MVICs) and 40 MEPs were collected from the right hand in healthy volunteers, with a retest session conducted 4 to 8 weeks later. MEP amplitude was normalized using either external references (MVICs) or internal references (extreme MEPs). Iterative re-sampling of 30 normalized MEPs per subject was repeated 5,000 times to define, for each normalization method, distributions for between-subject coefficients of variation (CV) of the mean MEP amplitude. Intra-class correlation coefficients (ICC) were used to assess the impact of normalization on test–retest stability of MEP amplitude measurements. Results In the absence of normalization, MEPs collected from the right hand of 47 healthy volunteers were within reported values regarding between-subject variability (95% confidence intervals for the CV: [1.0567,1.0577]) and showed good temporal stability (ICC = 0.77). Internal reference normalization substantially reduced between-subject variability, by values of up to 64%, while external reference normalization had no impact or increased between-subject variability. Normalization with the smallest references reduced test–retest stability, with use of the largest references resulting in slight reduction or improvement of ICCs. Internal reference normalization using the largest MEPs was found to be robust to several sensitivity analyses. Conclusion Internal, but not external, reference normalization reduces between-subject variability of MEP amplitude, and has a minimal impact on within-subject variability when conducted with the largest references. Additional research is necessary to further validate these normalization methods toward potential use of MEPs as biomarkers of neuropsychiatric disorders

Audiology · Electromyography · Isometric exercise · Motor cortex · Normalization (sociology · Physical medicine and rehabilitation · Physical therapy · Reproducibility · Statistics · Stimulation · Transcranial magnetic stimulation · Mathematics · Medicine · Muscle activation and electromyography studies · Neuroscience · Psychology · Stroke Rehabilitation and Recovery · Transcranial Magnetic Stimulation Studies

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