Related Experiment Video
Updated: Jul 28, 2026

Probing the Brain in Autism Using fMRI and Diffusion Tensor Imaging
Published on: September 12, 2011
Brain structural abnormalities in young children with autism spectrum disorder
B F Sparks1, S D Friedman, D W Shaw
1Department of Radiology, University of Washington School of Medicine, Seattle, WA 98105, USA.
Insights
Children with autism spectrum disorder (ASD) show enlarged brain volumes, particularly in the cerebrum, cerebellum, amygdala, and hippocampus, indicating early developmental abnormalities. These findings highlight key neuroanatomic differences in young children with ASD.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatrics
Background:
- Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder.
- Understanding the neuroanatomic basis of ASD is crucial for early intervention.
- Previous studies have shown varied results regarding brain structure in ASD.
Purpose of the Study:
- To investigate specific neuroanatomic differences in young children with ASD.
- To compare brain morphometrics in children with ASD, typically developing (TD) children, and developmentally delayed (DD) children.
- To identify potential early structural markers of autism spectrum disorder.
Main Methods:
- Magnetic resonance imaging (MRI) was used to measure brain volumes.
- Three-dimensional coronal MR images were analyzed for 45 children with ASD, 26 TD children, and 14 DD children.
- Volumes of the cerebrum, cerebellum, amygdala, and hippocampus were assessed in relation to age, sex, and clinical status.
Main Results:
- Children with ASD exhibited significantly larger cerebral volumes compared to TD and DD groups.
- ASD group showed increased cerebellar volume, proportional to cerebral volume increase.
- Enlargement of amygdala and hippocampus was observed in ASD, proportional to total cerebral volume.
Conclusions:
- Structural findings suggest abnormal brain development early in the course of autism.
- These neuroanatomic differences may serve as early indicators of autism spectrum disorder.
- Further research is ongoing to understand the mechanisms and progression of these structural abnormalities.
Objective:
To explore the specific gross neuroanatomic substrates of this brain developmental disorder, the authors examine brain morphometric features in a large sample of carefully diagnosed 3- to 4-year-old children with autism spectrum disorder (ASD) compared with age-matched control groups of typically developing (TD) children and developmentally delayed (DD) children.
Methods:
Volumes of the cerebrum, cerebellum, amygdala, and hippocampus were measured from three-dimensional coronal MR images acquired from 45 children with ASD, 26 TD children, and 14 DD children. The volumes were analyzed with respect to age, sex, volume of the cerebrum, and clinical status.
Results:
Children with ASD were found to have significantly increased cerebral volumes compared with TD and DD children. Cerebellar volume for the ASD group was increased in comparison with the TD group, but this increase was proportional to overall increases in cerebral volume. The DD group had smaller cerebellar volumes compared with both of the other groups. Measurements of amygdalae and hippocampi in this group of young children with ASD revealed enlargement bilaterally that was proportional to overall increases in total cerebral volume. There were similar findings of cerebral enlargement for both girls and boys with ASD. For subregion analyses, structural abnormalities were observed primarily in boys, although this may reflect low statistical power issues because of the small sample (seven girls with ASD) studied. Among the ASD group, structural findings were independent of nonverbal IQ. In a subgroup of children with ASD with strictly defined autism, amygdalar enlargement was in excess of increased cerebral volume.
Conclusions:
These structural findings suggest abnormal brain developmental processes early in the clinical course of autism. Research currently is underway to better elucidate mechanisms underlying these structural abnormalities and their longitudinal progression.
Related Concept Videos
Biological Causes of Schizophrenia
Genetic Factors in Schizophrenia
The genetic basis of schizophrenia is strongly supported by family and twin studies.
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.
Attention-Deficit/Hyperactivity Disorder
Diagnostic Criteria and Symptoms
To diagnose ADHD, symptoms must manifest before age 12 and be evident across multiple settings.
Alzheimer Disease ll: Pathophysiology

