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Interbrain substrates of role switching during mother-child interaction

Mother-child interaction is highly dynamic and reciprocal. Switching roles in these back-and-forth interactions serves as a crucial feature of reciprocal behaviors while the underlying neural entrainment is still not well-studied. Here, we designed a role-controlled cooperative task with dual EEG re...

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Bibliographic Details
Published in:Human brain mapping 2024-04, Vol.45 (5), p.e26672-e26672
Main Authors: Li, Yamin, Wu, Saishuang, Xu, Jiayang, Wang, Haiwa, Zhu, Qi, Shi, Wen, Fang, Yue, Jiang, Fan, Tong, Shanbao, Zhang, Yunting, Guo, Xiaoli
Format: Article
Language:English
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Summary:Mother-child interaction is highly dynamic and reciprocal. Switching roles in these back-and-forth interactions serves as a crucial feature of reciprocal behaviors while the underlying neural entrainment is still not well-studied. Here, we designed a role-controlled cooperative task with dual EEG recording to explore how differently two brains interact when mothers and children hold different roles. When children were actors and mothers were observers, mother-child interbrain synchrony emerged primarily within the theta oscillations and the frontal lobe, which highly correlated with children's attachment to their mothers (self-reported by mothers). When their roles were reversed, this synchrony was shifted to the alpha oscillations and the central area and associated with mothers' perception of their relationship with their children. The results suggested an observer-actor neural alignment within the actor's oscillations, which was related to the actor-toward-observer emotional bonding. Our findings contribute to the understanding of how interbrain synchrony is established and dynamically changed during mother-child reciprocal interaction.
ISSN:1065-9471
1097-0193
DOI:10.1002/hbm.26672