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Outcome of Absence Epilepsy With Onset at 8-11 Years of Age: Watershed Ages When Syndromes Overlap
Anita N Datta1,2, Jacqueline Crawford2, Laura Wallbank2
1Department of Pediatrics, Division of Neurology, BC Children's Hospital, Faculty of Medicine, University of British Columbia, Vancouver, BC, Canada.
Insights
Certain EEG patterns and clinical features in children with absence seizures can predict the development of generalized tonic-clonic seizures, aiding in early prognostication for epilepsy syndromes.
Area of Science:
- Neurology
- Pediatric Epilepsy
- Clinical Neurophysiology
Background:
- Absence seizures are common in childhood epilepsy syndromes, but overlapping syndromes complicate early diagnosis and prognosis.
- Predicting the development of generalized tonic-clonic seizures (GTCS) is crucial for managing epilepsy outcomes.
Purpose of the Study:
- To identify clinical and electroencephalograph (EEG) predictors of GTCS in children with new-onset absence seizures.
- To improve early prognostication when epilepsy syndrome designation is challenging.
Main Methods:
- Retrospective review of medical records and initial EEG tracings from 98 children with new-onset absence seizures (ages 8-11).
- Minimum 5-year follow-up data analyzed to track seizure development.
- Multiple regression analysis used to identify significant predictors of GTCS.
Main Results:
- 46% of patients developed GTCS, and 20% developed myoclonic seizures.
- History of myoclonic seizures, anxiety, bifrontal slowing, and mild background slowing on initial EEG were associated with GTCS.
- Shorter EEG burst duration showed a trend towards association with GTCS.
Conclusions:
- Initial EEG findings (bifrontal/background slowing) and clinical factors (myoclonic seizures, anxiety) predict GTCS development in absence seizures.
- These predictors are valuable for prognostication when early epilepsy syndrome classification is difficult.
Abstract:
Introduction: Absence seizures occur in various epilepsy syndromes, including childhood and juvenile absence epilepsy and juvenile myoclonic epilepsy. When children present with absence seizures at ages when syndromes overlap, initial syndrome designation is not always possible, making early prognostication challenging. For these children, the study objective is to determine clinical and initial electroencephalograph (EEG) findings to predict the development of generalized tonic-clonic seizures, which is a factor that affects outcome. Methods: Children with new-onset absence seizures between 8 and 11 years of age with at least 5 years of follow-up data were studied through the review of medical records and initial EEG tracings. Results: Ninety-eight patients were included in the study. The median age of absence seizure onset was 9 years (interquartile range [IQR] = 8.00, 10.00) and follow-up was 15 years (IQR = 13.00, 18.00). Forty-six percent developed generalized tonic-clonic seizures and 20% developed myoclonic seizures. On multiple regression analysis, a history of myoclonic seizures, anxiety, as well as bifrontal slowing and mild background slowing on initial EEG (P < .05) were associated with generalized tonic-clonic seizures. Although not statistically significant, a shorter duration of shortest EEG burst on baseline EEG was also associated with generalized tonic-clonic seizures. Conclusion: On initial EEG, bifrontal and background slowing and myoclonic seizures and anxiety are associated with developing generalized tonic-clonic seizures, which is of prognostic significance when early syndrome designation is difficult.
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