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Updated: May 9, 2026

Probing the Brain in Autism Using fMRI and Diffusion Tensor Imaging
Published on: September 12, 2011
Early brain enlargement and elevated extra-axial fluid in infants who develop autism spectrum disorder
Mark D Shen1, Christine W Nordahl, Gregory S Young
1The Medical Investigation of Neurodevelopmental Disorders Institute and Department of Psychiatry and Behavioural Sciences, UC Davis School of Medicine, University of California, Davis, Sacramento, CA 95817, USA.
Insights
Infants later diagnosed with autism spectrum disorder showed excess fluid around the brain as early as 6 months. This early brain anomaly, along with larger brain volume, may aid in earlier autism detection.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Radiology
Background:
- Autism spectrum disorder (ASD) diagnosis is typically made at 18 months.
- Early behavioral symptoms are studied, but brain differences in infants aged 6-12 months are less researched.
- Identifying early brain markers could improve diagnostic timelines.
Purpose of the Study:
- To use magnetic resonance imaging (MRI) to find consistent brain anomalies in 6-9 month old infants who later develop ASD.
- To investigate early brain growth trajectories in high-risk infants.
Main Methods:
- Prospective infant sibling study with longitudinal MRI scans at 6-9, 12-15, and 18-24 months.
- Behavioral assessments were conducted alongside imaging.
- Participants included 33 high-risk and 22 low-risk infants.
Main Results:
- Infants who developed ASD (n=10) had significantly greater extra-axial fluid (excess cerebrospinal fluid) from 6-9 months, persisting through 24 months.
- This early extra-axial fluid predicted more severe ASD symptoms.
- Infants with ASD showed larger total cerebral volumes at 12-15 and 18-24 months.
Conclusions:
- Excessive extra-axial fluid in infancy is a novel brain anomaly in children who later develop ASD.
- This study provides the first MRI evidence of brain enlargement in ASD before age 2.
- Structural MRI may help in the early detection of ASD and other neurodevelopmental disorders.
Abstract:
Prospective studies of infants at risk for autism spectrum disorder have provided important clues about the early behavioural symptoms of autism spectrum disorder. Diagnosis of autism spectrum disorder, however, is not currently made until at least 18 months of age. There is substantially less research on potential brain-based differences in the period between 6 and 12 months of age. Our objective in the current study was to use magnetic resonance imaging to identify any consistently observable brain anomalies in 6-9 month old infants who would later develop autism spectrum disorder. We conducted a prospective infant sibling study with longitudinal magnetic resonance imaging scans at three time points (6-9, 12-15, and 18-24 months of age), in conjunction with intensive behavioural assessments. Fifty-five infants (33 'high-risk' infants having an older sibling with autism spectrum disorder and 22 'low-risk' infants having no relatives with autism spectrum disorder) were imaged at 6-9 months; 43 of these (27 high-risk and 16 low-risk) were imaged at 12-15 months; and 42 (26 high-risk and 16 low-risk) were imaged again at 18-24 months. Infants were classified as meeting criteria for autism spectrum disorder, other developmental delays, or typical development at 24 months or later (mean age at outcome: 32.5 months). Compared with the other two groups, infants who developed autism spectrum disorder (n = 10) had significantly greater extra-axial fluid at 6-9 months, which persisted and remained elevated at 12-15 and 18-24 months. Extra-axial fluid is characterized by excessive cerebrospinal fluid in the subarachnoid space, particularly over the frontal lobes. The amount of extra-axial fluid detected as early as 6 months was predictive of more severe autism spectrum disorder symptoms at the time of outcome. Infants who developed autism spectrum disorder also had significantly larger total cerebral volumes at both 12-15 and 18-24 months of age. This is the first magnetic resonance imaging study to prospectively evaluate brain growth trajectories from infancy in children who develop autism spectrum disorder. The presence of excessive extra-axial fluid detected as early as 6 months and the lack of resolution by 24 months is a hitherto unreported brain anomaly in infants who later develop autism spectrum disorder. This is also the first magnetic resonance imaging evidence of brain enlargement in autism before age 2. These findings raise the potential for the use of structural magnetic resonance imaging to aid in the early detection of children at risk for autism spectrum disorder or other neurodevelopmental disorders.
Related Concept Videos
Autism Spectrum Disorder
These core symptoms manifest differently among individuals, ranging from mild to severe. The disorder's complexity extends beyond its clinical presentation, encompassing a diverse range of biological, cognitive, and sociocultural influences.
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