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Resting-State Functional Connectivity of the Punishment Network Associated With Conformity

  • Yin du
  • , Yinan Wang*
  • , Mengxia Yu
  • , Xue Tian
  • , Jia Liu*
  • *Corresponding author for this work
  • Beijing Normal University
  • Tsinghua University

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Fear of punishment prompts individuals to conform. However, why some people are more inclined than others to conform despite being unaware of any obvious punishment remains unclear, which means the dispositional determinants of individual differences in conformity propensity are poorly understood. Here, we explored whether such individual differences might be explained by individuals’ stable neural markers to potential punishment. To do this, we first defined the punishment network (PN) by combining all potential brain regions involved in punishment processing. We subsequently used a voxel-based global brain connectivity (GBC) method based on resting-state functional connectivity (FC) to characterize the hubs in the PN, which reflected an ongoing readiness state (i.e., sensitivity) for potential punishment. Then, we used the within-network connectivity (WNC) of each voxel in the PN of 264 participants to explain their tendency to conform by using a conformity scale. We found that a stronger WNC in the right thalamus, left insula, postcentral gyrus, and dACC was associated with a stronger tendency to conform. Furthermore, the FC among the four hubs seemed to form a three-phase ascending pathway, contributing to conformity propensity at every phase. Thus, our results suggest that task-independent spontaneous connectivity in the PN could predispose individuals to conform.
Original languageEnglish
Article number617402
JournalFrontiers in behavioral neuroscience
Volume14
DOIs
Publication statusPublished - 16 Dec 2020

Keywords

  • conformity propensity
  • dACC
  • functional connectivity
  • insula
  • postcentral gyrus
  • punishment network
  • thalamus

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