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A clinical comparative study evaluating the effect of epilepsy versus ADHD on timed cognitive tasks in children
A Aldenkamp1, K van Bronswijk, M Braken
1Department of Behavioural Science and Psychological Services Epilepsy Centre Kempenhaeghe, Heeze, The Netherlands. aldenkampB@kempenhaeghe.nl
Insights
Children with epilepsy and attention-deficit/hyperactivity disorder (ADHD) show slowed reaction times. Complex reaction-time tests can differentiate between epilepsy and ADHD, aiding differential diagnosis.
Area of Science:
- Neuroscience
- Child Psychology
- Clinical Neuropsychology
Background:
- Children with epilepsy and ADHD often exhibit slowed reaction times.
- Neuropsychological assessment is crucial for differentiating between epilepsy and ADHD.
- Identifying specific reaction-time patterns can aid in differential diagnosis.
Purpose of the Study:
- To identify distinct patterns of impairment on timed cognitive tasks specific to epilepsy versus ADHD.
- To evaluate the utility of simple and complex reaction-time measurements in distinguishing between these conditions.
Main Methods:
- An open, controlled, parallel-group study involving 60 children with ADHD, 60 children with epilepsy, and 30 controls.
- Participants completed simple reaction-time (low information load) and complex reaction-time (high information load) tasks.
- Performance was analyzed for differences between groups and task types.
Main Results:
- Simple reaction-time tests showed differences between ADHD and controls, and epilepsy and controls, but not between ADHD and epilepsy.
- Complex reaction-time tests revealed significant slowing in both epilepsy and ADHD groups compared to controls.
- Significant differences in complex reaction-time performance were found between epilepsy and ADHD groups.
- Combined complex reaction-time tests achieved 75% correct classification for ADHD and 55% for epilepsy.
Conclusions:
- Complex reaction-time tests, involving high information load, show potential for assessing the differential impact of ADHD and epilepsy on attentional function.
- These tasks can reveal general slowing in epilepsy and slowing due to inhibitory control deficits in ADHD.
- Timed tasks with high information load are valuable tools for the differential diagnosis between childhood epilepsy and ADHD.
Abstract:
Both children with epilepsy and children with ADHD may be characterized by slowing on reaction-time measurement. This is of particular interest, as neuropsychological assessment is often requested in the differential diagnosis between children with short non-convulsive epileptic seizures and children with ADHD. In this study we attempt to identify patterns of impairment on timed tasks that are specific for epilepsy, relative to ADHD. This study was an open, controlled parallel-group clinical investigation which included two groups of patients: 60 children with ADHD and 60 children with epilepsy. These children were compared with a control group (n=30) on two types of timed cognitive tasks: tasks with low information load (simple reaction-time measurement) and tasks with high information load (multiple decision reaction-time measurement). The simple reaction-time measurements show significant differences between ADHD and controls (all except for visual RT non-dominant hand) and between epilepsy and controls (only one test). No significant differences were found between epilepsy and ADHD. The two tests with high information load show significant slowing compared with the controls for epilepsy on the Binary Choice Reaction-Time Test and for ADHD on the Visual Searching Test. On both tests also the differences between epilepsy and ADHD are significant. The two tests in combination have a relatively satisfactory potential to classify the children with ADHD (75% correct classification) and the children with epilepsy (55% correct classification). We may conclude that complex reaction-time tests (i.e., timed tasks with high information load) have potential for assessing the differential impact of ADHD and epilepsy on attentional function. These tasks specifically reveal general slowing for children with epilepsy and slowing as an effect of failures of inhibitory self control on unstructured tasks for ADHD.
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