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Updated: Apr 13, 2026

Probing the Brain in Autism Using fMRI and Diffusion Tensor Imaging
Published on: September 12, 2011
Altered corpus callosum morphology associated with autism over the first 2 years of life
Jason J Wolff1, Guido Gerig2, John D Lewis3
11 Department of Educational Psychology, University of Minnesota, Minneapolis, MN, USA jjwolff@umn.edu.
Insights
Infants who develop autism spectrum disorder (ASD) show a larger corpus callosum in early development. This finding contrasts with older individuals and suggests early brain development differences in ASD.
Area of Science:
- Neuroimaging
- Developmental Neuroscience
- Autism Spectrum Disorder Research
Background:
- Previous studies show a smaller corpus callosum in older children and adults with autism spectrum disorder (ASD).
- Limited research exists on the corpus callosum's development in infants at high risk for ASD.
Purpose of the Study:
- To investigate the morphological development of the corpus callosum in infants at high risk for ASD.
- To compare corpus callosum development between infants at high risk for ASD and low-risk controls.
Main Methods:
- Magnetic resonance imaging (MRI) data collected from 270 high-risk and 108 low-risk infants at 6, 12, and 24 months.
- Automated segmentation used to measure corpus callosum area, length, and thickness.
- Diffusion tensor imaging (DTI) used to assess white matter microstructural properties.
Main Results:
- Infants later diagnosed with ASD exhibited significantly larger corpus callosum area and thickness starting at 6 months.
- These differences were most pronounced in the anterior corpus callosum at 6 and 12 months.
- Corpus callosum size in the first year correlated with later repetitive behaviors; DTI suggested microstructural differences.
Conclusions:
- The corpus callosum may be larger in infants who develop ASD, contrary to findings in older populations.
- Observed morphological differences appear to diminish by 2 years of age.
- Early microstructural properties of callosal white matter may underlie observed developmental differences in ASD.
Abstract:
Numerous brain imaging studies indicate that the corpus callosum is smaller in older children and adults with autism spectrum disorder. However, there are no published studies examining the morphological development of this connective pathway in infants at-risk for the disorder. Magnetic resonance imaging data were collected from 270 infants at high familial risk for autism spectrum disorder and 108 low-risk controls at 6, 12 and 24 months of age, with 83% of infants contributing two or more data points. Fifty-seven children met criteria for ASD based on clinical-best estimate diagnosis at age 2 years. Corpora callosa were measured for area, length and thickness by automated segmentation. We found significantly increased corpus callosum area and thickness in children with autism spectrum disorder starting at 6 months of age. These differences were particularly robust in the anterior corpus callosum at the 6 and 12 month time points. Regression analysis indicated that radial diffusivity in this region, measured by diffusion tensor imaging, inversely predicted thickness. Measures of area and thickness in the first year of life were correlated with repetitive behaviours at age 2 years. In contrast to work from older children and adults, our findings suggest that the corpus callosum may be larger in infants who go on to develop autism spectrum disorder. This result was apparent with or without adjustment for total brain volume. Although we did not see a significant interaction between group and age, cross-sectional data indicated that area and thickness differences diminish by age 2 years. Regression data incorporating diffusion tensor imaging suggest that microstructural properties of callosal white matter, which includes myelination and axon composition, may explain group differences in morphology.
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Autism Spectrum Disorder
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