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Correlating Behavioral Responses to fMRI Signals from Human Prefrontal Cortex: Examining Cognitive Processes Using Task Analysis
Published on: June 20, 2012
fMRI of intrasubject variability in ADHD: anomalous premotor activity with prefrontal compensation
Stacy J Suskauer1, Daniel J Simmonds, Brian S Caffo
1Kennedy Krieger Institute.
Insights
Children with attention-deficit/hyperactivity disorder (ADHD) show increased response time variability and impaired inhibition. Brain imaging reveals premotor system dysfunction may underlie these attention-deficit/hyperactivity disorder (ADHD) challenges.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Children with attention-deficit/hyperactivity disorder (ADHD) exhibit greater intrasubject variability (ISV) in response times and impaired response inhibition compared to typically developing (TD) children.
- These deficits suggest potential overlap in the neural circuits governing response preparation and inhibition.
Purpose of the Study:
- To investigate the neural mechanisms associated with increased ISV during a Go/No-go task in children with ADHD using functional magnetic resonance imaging (fMRI).
- To explore the relationship between brain activity, ISV, and inhibitory control in children with and without ADHD.
Main Methods:
- Event-related fMRI was employed to study 25 children with ADHD and 25 TD children (ages 8-13) performing a simplified Go/No-go task.
- Correlations between fMRI activation and ISV were analyzed within and between groups.
Main Results:
- TD children showed less ISV with increased rostral supplementary motor area (pre-SMA) activation during No-go trials; children with ADHD showed the opposite pattern.
- Children with ADHD and less ISV exhibited greater prefrontal activation, while TD children with more prefrontal activation demonstrated more ISV.
Conclusions:
- Dysfunction in premotor systems likely contributes to heightened variability and impaired inhibition in children with ADHD.
- Prefrontal resource recruitment may serve as a compensatory strategy but could impair performance on higher-order executive functions in children with ADHD.
Objective:
Children with attention-deficit/hyperactivity disorder (ADHD) consistently display increased intrasubject variability (ISV) in response time across varying tasks, signifying inefficiency of response preparation compared to typically developing (TD) children. Children with ADHD also demonstrate impaired response inhibition; inhibitory deficits correlate with ISV, suggesting that similar brain circuits may underlie both processes. To better understand the neural mechanisms underlying increased ISV and inhibitory deficits in children with ADHD, functional magnetic resonance imaging was used to examine the neural correlates of ISV during Go/No-go task performance.
Method:
Event-related functional magnetic resonance imaging was used to study 25 children with ADHD and 25 TD children ages 8 to 13 years performing a simplified Go/No-go task. Brain-behavior correlations were examined between functional magnetic resonance imaging activation and ISV within and between groups.
Results:
For TD children, increased rostral supplementary motor area (pre-supplementary motor area) activation during No-go events was associated with less ISV, whereas the reverse was true for children with ADHD for whom increased pre-supplementary motor area activation was associated with more ISV. In contrast, children with ADHD with less ISV showed greater prefrontal activation, whereas TD children with more prefrontal activation demonstrated more ISV.
Conclusions:
These findings add to evidence that dysfunction of premotor systems may contribute to increased variability and impaired response inhibition in children with ADHD and that compensatory strategies eliciting increased cognitive control may improve function. However, recruitment of prefrontal resources as a compensatory mechanism for motor task performance may preclude the use of those prefrontal resources for higher order, more novel executive functions with which children with ADHD often struggle.
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