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Title:Decoding firings of a large population of human motor units from high-density surface electromyogram in response to transcranial magnetic stimulation
Authors:ID Škarabot, Jakob (Author)
ID Ammann, Claudia (Author)
ID Balshaw, Thomas G. (Author)
ID Divjak, Matjaž (Author)
ID Urh, Filip (Author)
ID Murks, Nina (Author)
ID Foffani, Guglielmo (Author)
ID Holobar, Aleš (Author)
Files:.pdf The_Journal_of_Physiology_-_2023_-_Skarabot_-_Decoding_firings_of_a_large_population_of_human_motor_units_from_high‐density.pdf (3,57 MB)
MD5: 66C71B835EBC6072753EEBC0EFC1BFC5
 
URL https://physoc.onlinelibrary.wiley.com/doi/10.1113/JP284043
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FERI - Faculty of Electrical Engineering and Computer Science
Abstract:We describe a novel application of methodology for high-density surface electromyography (HDsEMG) decomposition to identify motor unit (MU) firings in response to transcranial magnetic stimulation (TMS). The method is based on the MU filter estimation from HDsEMG decomposition with convolution kernel compensation during voluntary isometric contractions and its application to contractions elicited by TMS. First, we simulated synthetic HDsEMG signals during voluntary contractions followed by simulated motor evoked potentials (MEPs) recruiting an increasing proportion of the motor pool. The estimation of MU filters from voluntary contractions and their application to elicited contractions resulted in high (>90%) precision and sensitivity of MU firings during MEPs. Subsequently, we conducted three experiments in humans. From HDsEMG recordings in first dorsal interosseous and tibialis anterior muscles, we demonstrated an increase in the number of identified MUs during MEPs evoked with increasing stimulation intensity, low variability in the MU firing latency and a proportion of MEP energy accounted for by decomposition similar to voluntary contractions. A negative relationship between the MU recruitment threshold and the number of identified MU firings was exhibited during the MEP recruitment curve, suggesting orderly MU recruitment. During isometric dorsiflexion we also showed a negative association between voluntary MU firing rate and the number of firings of the identified MUs during MEPs, suggesting a decrease in the probability of MU firing during MEPs with increased background MU firing rate. We demonstrate accurate identification of a large population of MU firings in a broad recruitment range in response to TMS via non-invasive HDsEMG recordings. KEY POINTS: Transcranial magnetic stimulation (TMS) of the scalp produces multiple descending volleys, exciting motor pools in a diffuse manner. The characteristics of a motor pool response to TMS have been previously investigated with intramuscular electromyography (EMG), but this is limited in its capacity to detect many motor units (MUs) that constitute a motor evoked potential (MEP) in response to TMS. By simulating synthetic signals with known MU firing patterns, and recording high-density EMG signals from two human muscles, we show the feasibility of identifying firings of many MUs that comprise a MEP. We demonstrate the identification of firings of a large population of MUs in the broad recruitment range, up to maximal MEP amplitude, with fewer required stimuli compared to intramuscular EMG recordings. The methodology demonstrates an emerging possibility to study responses to TMS on a level of individual MUs in a non-invasive manner.
Keywords:transcranial magnetic stimulation, TMS, electromyiograms
Publication status:Published
Publication version:Version of Record
Submitted for review:29.10.2022
Article acceptance date:17.03.2023
Publication date:23.03.2023
Publisher:Wiley (Cambridge University Press)
Year of publishing:2023
Number of pages:str. 1719-1744
Numbering:Vol. 601, iss. 10
PID:20.500.12556/DKUM-88158 New window
UDC:004.8
ISSN on article:1469-7793
COBISS.SI-ID:148198915 New window
DOI:10.1113/JP284043 New window
Copyright:© 2023 The Authors.
Publication date in DKUM:10.04.2024
Views:596
Downloads:61
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Record is a part of a journal

Title:The journal of physiology
Shortened title:J. physiol.
Publisher:Cambridge University Press
ISSN:1469-7793
COBISS.SI-ID:515030553 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0041-2020
Name:Računalniški sistemi, metodologije in inteligentne storitve

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J2-1731-2019
Name:Dekompozicija sestavljenih mišičnih potencialov

Funder:Other - Other funder or multiple funders
Funding programme:Versus Arthritis Foundation Fellowship
Project number:22 569

Funder:EC - European Commission
Funding programme:HE
Project number:101079392
Name:Hybrid neuroscience based on cerebral and muscular information for motor rehabilitation and neuromuscular disorders
Acronym:HybridNeuro

Funder:Other - Other funder or multiple funders
Funding programme:Comunidad de Madrid fellowship
Project number:2017-T2/BMD-5231

Funder:Other - Other funder or multiple funders
Funding programme:Juan de la Cierva fellowship
Project number:IJC2020-04 5437-I

Funder:Other - Other funder or multiple funders
Funding programme:‘la Caixa’ Foundation
Project number:LCF/PR/HR20/52 400 012

Funder:Other - Other funder or multiple funders
Funding programme:Ministerio de Ciencia e Innovación, Agencia Estatal de Investigación (Spain)

Funder:EC - European Commission
Funding programme:European Regional Development Fund of the European Union
Project number:PID2021-128623OB-I00

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Keywords:magnetna stimulacija, TMS, elektromiogrami


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