Linking functional and structural brain organisation with behaviour in autism: A multimodal EU-AIMS Longitudinal European Autism Project (LEAP) study

Author:

Oblong Lennart M1,Llera Alberto1,Mei Ting1,Haak Koen1,Isakoglou Christina1,Floris Dorothea L2,Durston Sarah3,Moessnang Carolin4,Banaschewski Tobias4,Baron-Cohen Simon5,Loth Eva6,Dell’Acqua Flavio6,Charman Tony7,Murphy Declan G M6,Ecker Christine6,Buitelaar Jan K1,Beckmann Christian F1,group the EU-AIMS LEAP group the EU-AIMS LEAP7,Forde Natalie J1

Affiliation:

1. Radboud University Nijmegen Medical Centre

2. University of Zurich

3. University Medical Center Utrecht

4. Central Institute of Mental Health, University of Heidelberg

5. University of Cambridge

6. King’s College

7. King’s College London

Abstract

Abstract Neuroimaging analyses of brain structure and function in autism have typically been conducted in isolation, missing the sensitivity gains of linking data across modalities. Here we focus on the integration of structural and functional organisational properties of brain regions. We aim to identify novel brain-organisation phenotypes of autism. We utilised multimodal MRI (T1-, diffusion-weighted and resting state functional), behavioural and clinical data from the EU AIMS Longitudinal European Autism Project (LEAP) from autistic (n = 206) and non-autistic (n = 196) participants. Of these, 97 had data from 2 timepoints resulting in a total scan number of 466. Grey matter density maps, probabilistic tractography connectivity matrices and connectopic maps were extracted from respective MRI modalities and were then integrated with Linked Independent Component Analysis. Linear mixed-effects models were used to evaluate the relationship between components and group while accounting for covariates and non-independence of participants with longitudinal data. Additional models were run to investigate associations with dimensional measures of behaviour. We identified one component that differed significantly between groups (coefficient = 0.33, padj = 0.02). This was driven (99%) by variance of the right fusiform gyrus connectopic map 2. While there were multiple nominal associations with behavioural measures, none were significant following multiple comparison correction. Our analysis considered the relative contributions of both structural and functional brain phenotypes simultaneously, finding that functional phenotypes drive associations with autism. These findings expanded on previous unimodal studies by revealing the topographic organisation of functional connectivity patterns specific to autism and warrant further investigation.

Publisher

Research Square Platform LLC

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