4.7 Article

Intermittent theta burst stimulation over the parietal cortex has a significant neural effect on working memory

期刊

HUMAN BRAIN MAPPING
卷 43, 期 3, 页码 1076-1086

出版社

WILEY
DOI: 10.1002/hbm.25708

关键词

contralateral delay activity; parietal cortex; theta burst stimulation; working memory

资金

  1. National Natural Science Foundation of China [31771242]

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This study identified the crucial role of the parietal cortex in working memory storage and found that repeated parietal intermittent theta-burst stimulation (iTBS) can improve neural indicators of working memory. However, further optimization is needed to produce a behavioral effect.
The crucial role of the parietal cortex in working memory (WM) storage has been identified by fMRI studies. However, it remains unknown whether repeated parietal intermittent theta-burst stimulation (iTBS) can improve WM. In this within-subject randomized controlled study, under the guidance of fMRI-identified parietal activation in the left hemisphere, 22 healthy adults received real and sham iTBS sessions (five consecutive days, 600 pulses per day for each session) with an interval of 9 months between the two sessions. Electroencephalography signals of each subject before and after both iTBS sessions were collected during a change detection task. Changes in contralateral delay activity (CDA) and K-score were then calculated to reflect neural and behavioral WM improvement. Repeated-measures ANOVA suggested that real iTBS increased CDA more than the sham one (p = .011 for iTBS effect). Further analysis showed that this effect was more significant in the left hemisphere than in the right hemisphere (p = .029 for the hemisphere-by-iTBS interaction effect). Pearson correlation analyses showed significant correlations for two conditions between CDA changes in the left hemisphere and K score changes (ps <.05). In terms of the behavioral results, significant K score changes after real iTBS were observed for two conditions, but a repeated-measures ANOVA showed a nonsignificant main effect of iTBS (p = .826). These results indicate that the current iTBS protocol is a promising way to improve WM capability based on the neural indicator (CDA) but further optimization is needed to produce a behavioral effect.

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