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  Contracted functional connectivity profiles in autism

Weber, C. F., Kebets, V., Benkarim, O., Lariviere, S., Wang, Y., Ngo, A., et al. (2024). Contracted functional connectivity profiles in autism. bioRxiv. doi:10.1101/2024.02.21.581260.

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 Creators:
Weber, Clara F., Author
Kebets, Valeria, Author
Benkarim, Oualid, Author
Lariviere, Sara, Author
Wang, Yezhou, Author
Ngo, Alexander, Author
Jiang, Hongxiu, Author
Chai, Xiaoqian, Author
Park, Bo-yong, Author
Milham, Michael P., Author
Martino, Adriana Di, Author
Valk, Sofie L.1, Author                 
Hong, Seok-Jun, Author
Bernhardt, Boris C., Author
Affiliations:
1Otto Hahn Group Cognitive Neurogenetics, MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_3222264              

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 Abstract: Objective Autism spectrum disorder (ASD) is a pervasive neurodevelopmental condition that is associated with atypical brain network organization, with prior work suggesting differential connectivity alterations with respect to functional connection length. Here, we tested whether functional connectopathy in ASD specifically relates to disruptions in long-relative to short-range functional connectivity profiles. Our approach combined functional connectomics with geodesic distance mapping, and we studied associations to macroscale networks, microarchitectural patterns, as well as socio-demographic and clinical phenotypes.

Methods We studied 211 males from three sites of the ABIDE-I dataset comprising 103 participants with an ASD diagnosis (mean±SD age=20.8±8.1 years) and 108 neurotypical controls (NT, 19.2±7.2 years). For each participant, we computed cortex-wide connectivity distance (CD) measures by combining geodesic distance mapping with resting-state functional connectivity profiling. We compared CD between ASD and NT participants using surface-based linear models, and studied associations with age, symptom severity, and intelligence scores. We contextualized CD alterations relative to canonical networks and explored spatial associations with functional and microstructural cortical gradients as well as cytoarchitectonic cortical types.

Results Compared to NT, ASD participants presented with widespread reductions in CD, generally indicating shorter average connection length and thus suggesting reduced long-range connectivity but increased short-range connections. Peak reductions were localized in transmodal systems (i.e., heteromodal and paralimbic regions in the prefrontal, temporal, and parietal and temporo-parieto-occipital cortex), and effect sizes correlated with the sensory-transmodal gradient of brain function. ASD-related CD reductions appeared consistent across inter-individual differences in age and symptom severity, and we observed a positive correlation of CD to IQ scores.

Conclusions Our study showed reductions in CD as a relatively stable imaging phenotype of ASD that preferentially impacted paralimbic and heteromodal association systems. CD reductions in ASD corroborate previous reports of ASD-related imbalance between short-range overconnectivity and long-range underconnectivity.

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Language(s): eng - English
 Dates: 2024-02-23
 Publication Status: Published online
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 Identifiers: DOI: 10.1101/2024.02.21.581260
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Title: bioRxiv
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