Simulating tDCS electrode placement to stimulate both M1 and SMA enhances motor performance and modulates cortical excitability depending on current flow direction

dc.contributorAalto-yliopistofi
dc.contributorAalto Universityen
dc.contributor.authorSato, Takatsuguen_US
dc.contributor.authorKatagiri, Natsukien_US
dc.contributor.authorSuganuma, Sakien_US
dc.contributor.authorLaakso, Ilkkaen_US
dc.contributor.authorTanabe, Shigeoen_US
dc.contributor.authorOsu, Riekoen_US
dc.contributor.authorTanaka, Satoshien_US
dc.contributor.authorYamaguchi, Tomofumien_US
dc.contributor.departmentDepartment of Electrical Engineering and Automationen
dc.contributor.groupauthorElectromagnetics in Health Technologyen
dc.contributor.organizationTokyo Bay Rehabilitation Hospitalen_US
dc.contributor.organizationYamagata Prefectural University of Health Sciencesen_US
dc.contributor.organizationFujita Health Universityen_US
dc.contributor.organizationWaseda Universityen_US
dc.contributor.organizationHamamatsu University School of Medicineen_US
dc.contributor.organizationJuntendo Universityen_US
dc.date.accessioned2024-08-06T07:45:08Z
dc.date.available2024-08-06T07:45:08Z
dc.date.issued2024en_US
dc.descriptionPublisher Copyright: Copyright © 2024 Sato, Katagiri, Suganuma, Laakso, Tanabe, Osu, Tanaka and Yamaguchi.
dc.description.abstractIntroduction: The conventional method of placing transcranial direct current stimulation (tDCS) electrodes is just above the target brain area. However, this strategy for electrode placement often fails to improve motor function and modulate cortical excitability. We investigated the effects of optimized electrode placement to induce maximum electrical fields in the leg regions of both M1 and SMA, estimated by electric field simulations in the T1and T2-weighted MRI-based anatomical models, on motor performance and cortical excitability in healthy individuals. Methods: A total of 36 healthy volunteers participated in this randomized, triple-blind, sham-controlled experiment. They were stratified by sex and were randomly assigned to one of three groups according to the stimulation paradigm, including tDCS with (1) anodal and cathodal electrodes positioned over FCz and POz, respectively, (A-P tDCS), (2) anodal and cathodal electrodes positioned over POz and FCz, respectively, (P-A tDCS), and (3) sham tDCS. The sit-to-stand training following tDCS (2 mA, 10 min) was conducted every 3 or 4 days over 3 weeks (5 sessions total). Results: Compared to sham tDCS, A-P tDCS led to significant increases in the number of sit-to-stands after 3 weeks training, whereas P-A tDCS significantly increased knee flexor peak torques after 3 weeks training, and decreased short-interval intracortical inhibition (SICI) immediately after the first session of training and maintained it post-training. Discussion: These results suggest that optimized electrode placement of the maximal EF estimated by electric field simulation enhances motor performance and modulates cortical excitability depending on the direction of current flow.en
dc.description.versionPeer revieweden
dc.format.extent12
dc.format.mimetypeapplication/pdfen_US
dc.identifier.citationSato, T, Katagiri, N, Suganuma, S, Laakso, I, Tanabe, S, Osu, R, Tanaka, S & Yamaguchi, T 2024, 'Simulating tDCS electrode placement to stimulate both M1 and SMA enhances motor performance and modulates cortical excitability depending on current flow direction', Frontiers in Neuroscience, vol. 18, 1362607. https://doi.org/10.3389/fnins.2024.1362607en
dc.identifier.doi10.3389/fnins.2024.1362607en_US
dc.identifier.issn1662-4548
dc.identifier.otherPURE UUID: 6b9a2984-a629-473a-a6ce-19bc9bb4ffd8en_US
dc.identifier.otherPURE ITEMURL: https://research.aalto.fi/en/publications/6b9a2984-a629-473a-a6ce-19bc9bb4ffd8en_US
dc.identifier.otherPURE FILEURL: https://research.aalto.fi/files/153175636/fnins-18-1362607.pdf
dc.identifier.urihttps://aaltodoc.aalto.fi/handle/123456789/129677
dc.identifier.urnURN:NBN:fi:aalto-202408065250
dc.language.isoenen
dc.publisherFrontiers Media
dc.relation.ispartofseriesFrontiers in Neuroscienceen
dc.relation.ispartofseriesVolume 18en
dc.rightsopenAccessen
dc.subject.keywordlower limben_US
dc.subject.keywordmuscle strengthen_US
dc.subject.keywordnon-invasive brain stimulationen_US
dc.subject.keywordprimary motor cortexen_US
dc.subject.keywordrehabilitationen_US
dc.subject.keywordsupplementary motor areaen_US
dc.titleSimulating tDCS electrode placement to stimulate both M1 and SMA enhances motor performance and modulates cortical excitability depending on current flow directionen
dc.typeA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessäfi
dc.type.versionpublishedVersion

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