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Attention Control in Children With ADHD: An Investigation Using Functional Near Infrared Spectroscopy (fNIRS)
Catrina A Calub1, Mark D Rapport1, Carolina Irurita1
1Department of Psychology, University of Central Florida, Orlando, FL, USA.
Insights
Children with attention-deficit/hyperactivity disorder (ADHD) show significant attention control deficits. This may stem from increased left prefrontal cortex activation, suggesting a need for targeted interventions.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Attention problems significantly impact outcomes in ADHD.
- Current ADHD interventions often target alerting networks with limited success.
- The executive attentional network and attention control are less understood in ADHD.
Purpose of the Study:
- To compare attention control abilities in children with ADHD and typically developing (TD) children.
- To investigate the neural correlates of attention control using functional Near-Infrared Spectroscopy (fNIRS).
- To explore the role of the prefrontal cortex in ADHD-related attention deficits.
Main Methods:
- Utilized the Visual Array Task (VAT) to assess attention control.
- Employed fNIRS to measure hemodynamic functioning (oxyHb) in the prefrontal cortex.
- Compared 19 children with ADHD (Combined type) and 18 TD children aged 8-12 years.
Main Results:
- Children with ADHD demonstrated significant deficits in attention control.
- Elevated oxyHb levels were observed in the left dorsal lateral prefrontal cortex (dlPFC) in children with ADHD compared to TD children.
- Findings suggest potential inefficiency in the right dlPFC contributing to increased left dlPFC activation.
Conclusions:
- Attention control deficits in ADHD may be linked to atypical prefrontal cortex activation patterns.
- Interventions targeting attention control and its neural networks are warranted.
- Attention control may be a key factor in understanding diverse ADHD-related challenges.
Abstract:
Attention problems are a predominant contributor to near- and far-term functional outcomes in attention-deficit/hyperactivity disorder (ADHD); however, most interventions focus on improving the alerting attentional network, which has failed to translate into improved learning for a majority of children with ADHD. Comparatively less is known regarding the executive attentional network and its overarching attention control process, which governs the ability to maintain relevant information in a highly active, interference-free state, and is intrinsic to a broad range of cognitive functions. This is the first study to compare attention control abilities in children with ADHD and typically developing (TD) children using the Visual Array Task (VAT) and to simultaneously measure hemodynamic functioning (oxyHb) using functional Near-Infrared Spectroscopy (fNIRS). Nineteen children with ADHD Combined type and 18 typically developing (TD) children aged 8 to 12 years were administered the VAT task while prefrontal activity was monitored using fNIRS. Results revealed that children with ADHD evinced large magnitude deficits in attention control and that oxyHb levels in the left dorsal lateral prefrontal cortex (dlPFC) were significantly greater in children with ADHD relative to TD children. These findings suggest that poor attention control abilities in children with ADHD may be related to increased left dlPFC activation in response to an underdeveloped and/or inefficient right dlPFC. The need to design interventions that target and strengthen attention control and its corresponding neural network is discussed based on the likelihood that attention control serves as the potential quaesitum for understanding a wide array of ADHD-related deficits.
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