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Author Spotlight: Advancing Pediatric Epilepsy Surgery in Children Through Novel Biomarkers and Enhanced Localization
Published on: September 20, 2024
Development of intelligence 4 to 11 years after paediatric epilepsy surgery
Klajdi Puka1, Tamara P Tavares2,3, Mary Lou Smith1,4,5
1Department of Psychology, The Hospital for Sick Children, Toronto, ON, Canada.
Insights
Long-term intellectual outcomes after pediatric epilepsy surgery are similar for surgical and non-surgical patients. Seizure freedom, achieved through surgery or other means, is linked to intellectual improvements over time.
Area of Science:
- Neuroscience
- Pediatric Neurology
- Cognitive Psychology
Background:
- Long-term intellectual outcomes after pediatric epilepsy surgery remain poorly understood.
- Previous studies on long-term effects have produced inconsistent results.
- This study investigates intellectual changes 4-11 years post-surgery in a large cohort.
Purpose of the Study:
- To examine long-term intellectual outcomes in pediatric epilepsy surgery patients.
- To compare outcomes between surgical and non-surgical groups.
- To identify predictors of cognitive change over time.
Main Methods:
- A cohort of 97 patients with childhood-onset intractable epilepsy was studied.
- 61 patients underwent resective epilepsy surgery; 36 did not.
- Neuropsychological testing using the Wechsler Intelligence Scale was performed at baseline and follow-up (4-11 years).
Main Results:
- No significant difference in overall intellectual outcomes between surgical and non-surgical groups.
- Seizure freedom was achieved by 54% of surgical and 39% of non-surgical patients.
- Seizure freedom was associated with intellectual improvements, particularly in IQ and working memory, irrespective of surgical status.
Conclusions:
- Pediatric epilepsy surgery does not appear to negatively impact long-term intellectual outcomes.
- Achieving seizure freedom is a key factor associated with cognitive improvement.
- Baseline cognitive scores and seizure status are crucial predictors of long-term intellectual trajectory.
Objective:
Little is known about the long-term intellectual outcomes following paediatric epilepsy surgery. Change is not likely within the first 2 years following surgery, and the few studies of longer term outcomes have yielded inconsistent results. This study addressed this issue by examining a large group of surgical and non-surgical patients at baseline and after 4-11 years.
Methods:
Participants were 97 patients (mean age 20.08 [SD: 4.44] years) with childhood-onset intractable epilepsy; 61 had undergone resective epilepsy surgery. Participants underwent neuropsychological testing with the age-appropriate Wechsler Intelligence Scale, generating Full Scale, Performance and Verbal IQs, and Working Memory and Processing Speed indices.
Results:
In total 54% of the surgical and 39% of the non-surgical patients were seizure free in the preceding 12 months (p > .05); however, surgical patients did achieve seizure freedom sooner and used fewer medications at follow-up. Surgical status was not associated with any cognitive domain. However, with the exception of processing speed, significant seizure status × time interaction effects were evident and seizure-free patients had higher scores at follow-up. Regression analyses additionally showed that low pre-operative scores were predictive of improvement overtime, whereas high pre-operative scores were predictive of high scores at follow-up.
Interpretation:
The results show similar intellectual outcomes for surgical and non-surgical paediatric patients. Four to 11 years after paediatric epilepsy surgery, seizure freedom, whether attained through epilepsy surgery or other means, was found to be associated with intellectual improvements. Seizure status and baseline scores were the most consistent predictors.
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