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Extra-axial cerebrospinal fluid in high-risk and normal-risk children with autism aged 2-4 years: a case-control
Mark D Shen1, Christine W Nordahl2, Deana D Li2
1The Medical Investigation of Neurodevelopmental Disorders (MIND) Institute, UC Davis School of Medicine, University of California-Davis, Sacramento, CA, USA; Carolina Institute for Developmental Disabilities and Department of Psychiatry, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, NC, USA.
Insights
High extra-axial cerebrospinal fluid (CSF) volume is a reliable early indicator of autism spectrum disorder in children. This brain anomaly is present in both high-risk and normal-risk children and is detectable via MRI.
Area of Science:
- Neuroimaging
- Developmental Neuroscience
- Autism Research
Background:
- Previous studies identified elevated extra-axial cerebrospinal fluid (CSF) in high-risk infants later diagnosed with autism spectrum disorder (ASD).
- This elevated CSF volume predated behavioral symptoms and predicted ASD diagnosis.
Purpose of the Study:
- To confirm increased extra-axial CSF volume in a larger, independent sample of children with ASD.
- To determine if elevated CSF persists beyond infancy in children with ASD.
- To investigate the presence of elevated CSF in both normal-risk and high-risk children with ASD.
Main Methods:
- A case-control MRI study involving children aged 2-4 years with ASD (normal-risk and high-risk) and typical development.
- Measurements included extra-axial CSF volume, brain volume, head circumference, and sleep problems.
- A validated machine learning algorithm using CSF volume, brain volume, age, and sex was applied.
Main Results:
- Children with ASD exhibited 15.1% greater extra-axial CSF volume than controls (p=0.007).
- Elevated CSF was consistent in both normal-risk and high-risk ASD subgroups and persisted beyond infancy.
- Increased CSF volume and brain volume contributed to enlarged head circumference in ASD; CSF was linked to sleep disturbances and lower non-verbal ability.
Conclusions:
- Increased extra-axial CSF volume is a consistent brain anomaly in children with ASD, found across multiple cohorts and risk groups.
- This finding suggests extra-axial CSF volume could serve as an early biomarker for a biologically distinct subtype of autism.
- The anomaly is detectable via standard MRI from infancy through age 3 years.
Background:
We previously showed, in two separate cohorts, that high-risk infants who were later diagnosed with autism spectrum disorder had abnormally high extra-axial cerebrospinal fluid (CSF) volume from age 6-24 months. The presence of increased extra-axial CSF volume preceded the onset of behavioural symptoms of autism and was predictive of a later diagnosis of autism spectrum disorder. In this study, we aimed to establish whether increased extra-axial CSF volume is found in a large, independent sample of children diagnosed with autism spectrum disorder, whether extra-axial CSF remains abnormally increased beyond infancy, and whether it is present in both normal-risk and high-risk children with autism.
Methods:
In this case-control MRI study, children with autism spectrum disorder or with typical development aged 2-4 years were recruited from the community to the UC Davis MIND Institute Autism Phenome Project, based in Sacramento, CA, USA. The autism spectrum disorder group comprised children with autism spectrum disorder who were either normal risk (ie, from simplex families) or high risk (ie, from multiplex families). Measurements of extra-axial CSF volume, brain volume, head circumference, sleep problems, and familial risk status were derived from MRI and behavioural assessments. We applied a previously validated machine learning algorithm based on extra-axial CSF volume, brain volume, age, and sex to the current dataset.
Findings:
Between July 20, 2007, and Dec 13, 2012, 159 children with autism spectrum disorder (132 male, 27 female) and 77 with typical development (49 male, 28 female) underwent MRI scans. The autism spectrum disorder group had an average of 15·1% more extra-axial CSF than controls after accounting for differences in brain volume, weight, age, and sex (least-squares mean 116·74 cm3 [SE 3·33] in autism group vs 101·40 cm3 [3·93] in typical development group; p=0·007; Cohen's d = 0·39). Subgroups of normal-risk (n=132) and high-risk (n=27) children with autism spectrum disorder had nearly identical extra-axial CSF volumes (p=0·78), and both subgroups had significantly greater volumes than controls. Both extra-axial CSF volume (p=0·004) and brain volume (p<0·0001) uniquely contributed to enlarged head circumference in the autism spectrum disorder group (p=0·04). Increased extra-axial CSF volume was associated with greater sleep disturbances (p=0·03) and lower non-verbal ability (p=0·04). The machine learning algorithm correctly predicted autism spectrum disorder diagnosis with a positive predictive value of 83% (95% CI 76·2-88·3).
Interpretation:
Increased extra-axial CSF volume is a reliable brain anomaly that has now been found in three independent cohorts, comprising both high-risk and normal-risk children with autism spectrum disorder. Increased extra-axial CSF volume is detectable using conventional structural MRI scans from infancy through to age 3 years. These results suggest that increased extra-axial CSF volume could be an early stratification biomarker of a biologically based subtype of autism that might share a common underlying pathophysiology.
Funding:
US National Institutes of Health.
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