Social bonding in groups of humans selectively increases inter-status information exchange and prefrontal neural synchronization

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Abstract

ASUoc:iaPl lgeraosuepcosnifnirvmatrhioatuasllshoeacdiainl gslpeevceliesasraerreeporergseanntiezdecdorwreitchtlhy:ierarchical structures that shape group dynamics and the nature of within-group interactions. In-group social bonding, exemplified by grooming behaviors among animals and collective rituals and team-building activities in human societies, is recognized as a practical adaptive strategy to foster group harmony and stabilize hierarchical structures in both human and nonhuman animal groups. However, the neurocognitive mechanisms underlying the effects of social bonding on hierarchical groups remain largely unexplored. Here, we conducted simultaneous neural recordings on human participants engaged in-group communications within small hierarchical groups (n = 528, organized into 176 three-person groups) to investigate how social bonding influenced hierarchical interactions and neural synchronizations. We differentiated interpersonal interactions between individuals of different (inter-status) or same (intra-status) social status and observed distinct effects of social bonding on inter-status and intra-status interactions. Specifically, social bonding selectively increased frequent and rapid information exchange and prefrontal neural synchronization for inter-status dyads but not intra-status dyads. Furthermore, social bonding facilitated unidirectional neural alignment from group leader to followers, enabling group leaders to predictively align their prefrontal activity with that of followers. These findings provide insights into how social bonding influences hierarchical dynamics and neural synchronization while highlighting the role of social status in shaping the strength and nature of social bonding experiences in human groups.

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Ni, J., Yang, J., & Ma, Y. (2024). Social bonding in groups of humans selectively increases inter-status information exchange and prefrontal neural synchronization. PLoS Biology, 22(3). https://doi.org/10.1371/journal.pbio.3002545

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