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Anomalous Brain Development Is Evident in Preschoolers With Attention-Deficit/Hyperactivity Disorder
Lisa A Jacobson1,2, Deana Crocetti1, Benjamin Dirlikov1
1Kennedy Krieger Institute, Baltimore, Maryland.
Insights
Preschoolers with attention-deficit/hyperactivity disorder (ADHD) show reduced gray matter volumes in frontal, parietal, and temporal lobes. These brain structure differences correlate with symptom severity, indicating early developmental anomalies in ADHD.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pediatrics
Background:
- Attention-deficit/hyperactivity disorder (ADHD) is a common childhood neurological disorder.
- Evidence suggests anomalous brain development in school-aged children with ADHD.
- Few studies have investigated brain structure differences in preschoolers with ADHD.
Purpose of the Study:
- To examine cortical volume differences in preschool children with ADHD.
- To investigate the relationship between brain structure and symptom severity in early childhood ADHD.
Main Methods:
- Analysis of high-resolution anatomical (MPRAGE) images and cognitive/behavioral measures.
- Study included 90 medication-naïve preschoolers (ages 4-5 years): 52 with ADHD and 38 controls.
- Participants were 64.4% boys.
Main Results:
- Children with ADHD exhibited reduced bilateral frontal, parietal, and temporal lobe gray matter volumes compared to controls.
- Largest effect sizes for volume reductions were observed in the right frontal and left temporal lobes.
- Specific frontal sub-regions (orbitofrontal cortex, primary motor cortex, supplementary motor complex) showed significant group differences and correlated with symptom severity.
Conclusions:
- Anomalous brain structure in ADHD is evident in the preschool years.
- These findings are the first comprehensive examination of cortical volume in preschoolers with ADHD.
- The study provides a foundation for understanding ADHD developmental trajectories and symptom progression.
Objectives:
Attention-deficit/hyperactivity disorder (ADHD) is a common neurological disorder with symptom onset early in childhood. Growing evidence suggests anomalous brain development across multiple brain regions is evident in school-aged children; however, few studies have examined whether such differences are notable in the preschool years when symptom onset typically occurs.
Methods:
High resolution anatomical (MPRAGE) images and cognitive and behavioral measures were analyzed in a total of 90 medication-naïve preschoolers, ages 4-5 years (52 with ADHD, 38 controls; 64.4% boys).
Results:
Results revealed reductions in bilateral frontal, parietal, and temporal lobe gray matter volumes in children with ADHD relative to typically developing children, with largest effect sizes noted for right frontal and left temporal lobe volumes. Examining frontal lobe sub-regions, the largest between group effect sizes were evident for left orbitofrontal cortex, left primary motor cortex (M1), and left supplementary motor complex (SMC). ADHD-related reductions in specific sub-regions (left prefrontal, left premotor, left frontal eye field, left M1, and right SMC) were significantly correlated with symptom severity, such that higher ratings of hyperactive/impulsive symptoms were associated with reduced cortical volumes.
Conclusions:
These findings represent the first comprehensive examination of cortical volume in preschool children with ADHD, providing evidence that anomalous brain structure in ADHD is evident very early in development. Furthermore, findings set the stage for developing our understanding of the way in which developmental trajectories of anomalous brain development are associated with the unfolding of symptoms in childhood ADHD. (JINS, 2018, 24, 531-539).
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