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Functional connectivity of cortical-cerebellar networks in relation to sensorimotor behavior and clinical features in autism spectrum disorder

Kathryn E. Unruh, James Bartolotti, Walker S. McKinney, Lauren Schmitt, John A. Sweeney, Matthew W. Mosconi

2023Cerebral Cortex15 citationsDOIOpen Access PDF

Abstract

Sensorimotor issues are present in the majority of individuals with autism spectrum disorder (ASD) and are associated with core symptoms. The neural systems associated with these impairments remain unclear. Using a visually guided precision gripping task during functional magnetic resonance imaging, we characterized task-based connectivity and activation of cortical, subcortical, and cerebellar visuomotor networks. Participants with ASD (n = 19; ages 10-33) and age- and sex-matched neurotypical controls (n = 18) completed a visuomotor task at low and high force levels. Relative to controls, individuals with ASD showed reduced functional connectivity of right primary motor-anterior cingulate cortex and left anterior intraparietal lobule (aIPL)-right Crus I at high force only. At low force, increased caudate, and cerebellar activation each were associated with sensorimotor behavior in controls, but not in ASD. Reduced left aIPL-right Crus I connectivity was associated with more severe clinically rated ASD symptoms. These findings suggest that sensorimotor problems in ASD, particularly at high force levels, involve deficits in the integration of multimodal sensory feedback and reduced reliance on error-monitoring processes. Adding to literature positing that cerebellar dysfunction contributes to multiple developmental issues in ASD, our data implicate parietal-cerebellar connectivity as a key neural marker underlying both core and comorbid features of ASD.

Topics & Concepts

NeurotypicalAutism spectrum disorderFunctional magnetic resonance imagingNeurosciencePsychologyIntraparietal sulcusAutismSupplementary motor areaInferior parietal lobuleDevelopmental psychologyAutism Spectrum Disorder ResearchAttention Deficit Hyperactivity DisorderFunctional Brain Connectivity Studies
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