EEG lateralization and seizure outcome following peri-insular hemispherotomy for pediatric hemispheric epilepsy
Ananth P Abraham1, Maya Mary Thomas2, Vivek Mathew1
1Department of Neurological Sciences, Christian Medical College, Vellore, Tamil Nadu, India.
Insights
Peri-insular hemispherotomy (PIH) effectively controls seizures in pediatric hemispheric epilepsy. Non-lateralizing electroencephalography (EEG) did not negatively impact seizure outcomes after PIH surgery.
Area of Science:
- Pediatric Neurology
- Neurosurgery
- Epileptology
Background:
- Pediatric hemispheric epilepsy often requires surgical intervention.
- Peri-insular hemispherotomy (PIH) is a significant surgical option for intractable cases.
- The role of preoperative electroencephalography (EEG) lateralization in predicting outcomes is debated.
Purpose of the Study:
- To evaluate the impact of preoperative non-lateralizing scalp EEG on seizure outcomes after PIH in pediatric patients.
- To assess the efficacy of PIH in achieving seizure freedom and medication reduction.
Main Methods:
- Retrospective analysis of 45 pediatric patients undergoing PIH (2005-2016).
- Standard pre-surgical evaluation included history, examination, neuropsychological testing, MRI, and EEG.
- Seizure outcome assessed using Engel classification; limited use of advanced imaging or Wada testing.
Main Results:
- 93.2% of patients achieved seizure freedom (Engel class I) post-PIH.
- 38.6% of patients presented with non-lateralizing EEG findings.
- Seizure outcome was not significantly influenced by the lateralization of preoperative EEG.
Conclusions:
- PIH offers excellent long-term seizure control in pediatric hemispheric epilepsy, even with non-lateralizing EEG.
- Routine advanced imaging (SPECT/PET) may not be necessary when clinical and radiological findings are concordant with non-lateralizing EEG.
Objective:
To determine whether preoperative non-lateralizing scalp electroencephalography (EEG) influences seizure outcome following peri-insular hemispherotomy (PIH) in pediatric hemispheric epilepsy.
Methods:
Retrospective data was collected on all 45 pediatric patients who underwent PIH between 2005 and 2016. All underwent a basic pre-surgical evaluation consisting of detailed history and examination, neuropsychological assessment, MRI, and EEG. SPECT/PET, fRMI, or Wada testing were done in only eight patients. Seizure outcome was assessed using the Engel classification.
Results:
Among those who underwent hemispherotomy, 20 (44%) were females. Mean age at surgery was 8 ± 4.3 years and mean duration of symptoms was 5.2 ± 3.7 years. The most common etiologies of hemispheric epilepsy were hemiconvulsion-hemiplegia epilepsy syndrome, Rasmussen encephalitis, and post-encephalitic sequelae, together comprising 27 (60%) patients. Among the 44 patients with follow-up data (mean duration 48 ± 33 months), seizure freedom (Engel class I) was attained by 41 (93.2%). Anti-epileptic medications were stopped or decreased in 36 (82%). Seventeen (38.6%) patients had non-lateralizing EEG. Seizure outcome was not related to lateralization of EEG activity.
Conclusions:
PIH provides excellent long-term seizure control in patients despite the presence of non-lateralizing epileptiform activity, although occurrence of acute postoperative seizures may be higher. Routine SPECT/PET may not be required in patients with a non-lateralizing EEG if there is good clinico-radiological concordance.
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