Noninvasive brain stimulation over M1 and DLPFC cortex enhances the learning of bimanual isometric force control
- Authors
- Jin, Yan; Lee, Jaehyuk; Kim, Sungyong; Yoon, BumChul
- Issue Date
- 8월-2019
- Publisher
- ELSEVIER
- Keywords
- Motor learning; Bimanual force control; Primary motor cortex; Dorsolateral prefrontal cortex; Transcranial direct current stimulation
- Citation
- HUMAN MOVEMENT SCIENCE, v.66, pp.73 - 83
- Indexed
- SCIE
SSCI
SCOPUS
- Journal Title
- HUMAN MOVEMENT SCIENCE
- Volume
- 66
- Start Page
- 73
- End Page
- 83
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/64013
- DOI
- 10.1016/j.humov.2019.03.002
- ISSN
- 0167-9457
- Abstract
- Motor learning plays an important role in upper-limb function and the recovery of lost functionality. This study aimed to investigate the relative impact of transcranial direct current stimulation (tDCS) on learning in relation to the left primary motor cortex (M1) and left dorsolateral prefrontal cortex (DLPFC) during bimanual isometric force-control tasks performed with both hands under different task constraints. In a single-blind cross-over design, 20 right-handed participants were randomly assigned to either the M1 group (n = 10; mean age, 22.90 +/- 1.66 years, mean +/- standard deviation) or the DLPFC group (n = 10; mean age, 23.20 +/- 1.54 years). Each participant received 30 min of tDCS (anodal or sham, applied randomly in two experiments) while performing the bimanual force control tasks. Modal tDCS of the M1 improved the accuracy of maintenance and rhythmic alteration of force tasks, while anodal tDCS of the DLPFC improved only the maintenance of the force control tasks compared with sham tDCS. Hence, tDCS over the left M1 and DLPFC has a beneficial effect on the learning of bimanual force control.
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Collections - College of Health Sciences > School of Health and Environmental Science > 1. Journal Articles
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