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Altered Patterns of Dynamic Functional Connectivity Underpin Reduced Expressions of Social–Emotional Reciprocity in Autistic Adults

  • Kristína Czekóová*
  • , Radek Mareček
  • , Rostislav Staněk
  • , Calum Hartley
  • , Klaus Kessler
  • , Pavlína Hlavatá
  • , Hana Ošlejšková
  • , Milan Brázdil
  • , Daniel Joel Shaw
  • *Corresponding author for this work
  • Behavioural and Social Neuroscience, Central European Institute of Technology (CEITEC) Masaryk University Brno Czechia,First Department of Neurology, Faculty of Medicine Masaryk University and St. Anne's University Hospital Brno Czechia
  • Multimodal and Functional Neuroimaging Laboratory (MAFIL), Central European Institute of Technology (CEITEC) Masaryk University Brno Czechia
  • Department of Economics, Faculty of Economics and Administration Masaryk University Brno Czechia
  • Department of Psychology, Faculty of Science and Technology, Lancaster University, United Kingdom
  • Behavioural and Social Neuroscience Research Group, Central European Institute of Technology (CEITEC) Masaryk University Brno Czechia
  • Department of Child Neurology University Hospital Brno and Masaryk University Brno Czechia

Research output: Contribution to journalArticlepeer-review

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Abstract

To identify the neurocognitive mechanisms underpinning the social difficulties that characterize autism, we performed functional magnetic resonance imaging on pairs of autistic and non‐autistic adults simultaneously whilst they interacted with one another on the iterated Ultimatum Game (iUG)—an interactive task that emulates the reciprocal characteristic of naturalistic interpersonal exchanges. Two age‐matched sets of male–male dyads were investigated: 16 comprised an autistic Responder and a non‐autistic Proposer, and 19 comprised non‐autistic pairs of Responder and Proposer. Players' round‐by‐round behavior on the iUG was modeled as reciprocal choices, and dynamic functional connectivity (dFC) was measured to identify the neural mechanisms underpinning reciprocal behaviors. Behavioral expressions of reciprocity were significantly reduced in autistic compared with non‐autistic Responders, yet no such differences were observed between the non‐autistic Proposers in either set of dyads. Furthermore, we identified latent dFC states with temporal properties associated with reciprocity. Autistic interactants spent less time in brain states characterized by dynamic inter‐network integration and segregation among the Default Mode Network and cognitive control networks, suggesting that their reduced expressions of social–emotional reciprocity reflect less efficient reconfigurations among brain networks supporting flexible cognition and behavior. These findings advance our mechanistic understanding of the social difficulties characterizing autism.
Original languageEnglish
Pages (from-to)725-740
Number of pages16
JournalAutism Research
Volume18
Issue number4
Early online date24 Feb 2025
DOIs
Publication statusPublished - Apr 2025

Bibliographical note

Copyright © 2025 The Author(s). Autism Research published by International Society for Autism Research and Wiley Periodicals LLC. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

Funding

We acknowledge the core facility MAFIL supported by the Czech-BioImaging large RI project (LM2023050 funded by MEYS CR), part of Euro-BioImaging (www.eurobioimaging.eu) ALM and the Medical Imaging Node (Brno, CZ), for their support with obtaining scientific data presented in this paper. This project was further supported by project no. LX22NPO5107 (MEYS CR). D.J.S. was supported partly by the Biotechnology and Biological Sciences Research Council (project no. BB/X017095/1).

Keywords

  • dynamic functional connectivity
  • social interaction
  • autism
  • reciprocity

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