4.5 Article

Greater functional connectivity between sensory networks is related to symptom severity in toddlers with autism spectrum disorder

期刊

JOURNAL OF CHILD PSYCHOLOGY AND PSYCHIATRY
卷 62, 期 2, 页码 160-170

出版社

WILEY
DOI: 10.1111/jcpp.13268

关键词

Brain networks; functional connectivity; early childhood; autism spectrum disorders; neuroimaging

资金

  1. National Institutes of Health [R01 MH107802]

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The study found increased functional connectivity between visual and sensorimotor networks in young children with ASD, with the degree of overconnectivity associated with greater autism symptoms. Age-related weakening of visual-auditory network connectivity was observed in the ASD group but not in the TD group.
Background Symptoms of autism spectrum disorder (ASD) emerge in the first years of life. Yet, little is known about the organization and development of functional brain networks in ASD proximally to the symptom onset. Further, the relationship between brain network connectivity and emerging ASD symptoms and overall functioning in early childhood is not well understood. Methods Resting-state fMRI data were acquired during natural sleep from 24 young children with ASD and 23 typically developing (TD) children, aged 17-45 months. Intrinsic functional connectivity (iFC) within and between resting-state functional networks was derived with independent component analysis (ICA). Results Increased iFC between visual and sensorimotor networks was found in young children with ASD compared to TD participants. Within the ASD group, the degree of overconnectivity between visual and sensorimotor networks was associated with greater autism symptoms. Age-related weakening of the visual-auditory between-network connectivity was observed in the ASD but not the TD group. Conclusions Taken together, these results provide evidence for disrupted functional network maturation and differentiation, particularly involving visual and sensorimotor networks, during the first years of life in ASD. The observed pattern of greater visual-sensorimotor between-network connectivity associated with poorer clinical outcomes suggests that disruptions in multisensory brain circuitry may play a critical role for early development of behavioral skills and autism symptomatology in young children with ASD.

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