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Author Spotlight: Studying Clinical Characters and Epilepsy Outcomes After Frontal Disconnection in Patients with MOGHE
Published on: August 16, 2024
Medically resistant pediatric insular-opercular/perisylvian epilepsy. Part 2: outcome following resective surgery
Alexander G Weil1, Ngoc Minh D Le2, Prasanna Jayakar2
1Pediatric Neurosurgery, Miami (Nicklaus) Children's Hospital, Miami, Florida.
Insights
Pediatric insular epilepsy surgery offers a high chance of seizure freedom. Surgical risks are low, with 69% of children becoming seizure-free after insular cortical resections for intractable epilepsy.
Area of Science:
- Pediatric Neurology
- Neurosurgery
- Epileptology
Background:
- Insular cortex seizures are underrepresented in pediatric refractory epilepsy.
- Localization is challenging due to deep structures and complex anatomy.
- Insular seizure semiology can mimic other lobe seizures, leading to misdiagnosis.
Purpose of the Study:
- To evaluate the efficacy and safety of insular cortical resections in pediatric patients with intractable epilepsy.
- To determine the rate of seizure freedom and neurological outcomes post-surgery.
Main Methods:
- Retrospective review of 13 pediatric patients undergoing insular-opercular resection (2009-2015).
- Presurgical evaluation included EEG monitoring and neuroimaging (MRI, PET/SPECT).
- Surgical procedures utilized intraoperative or extraoperative electrocorticography for seizure focus localization.
Main Results:
- 69% of children achieved seizure freedom, and 1 had >90% seizure reduction at follow-up (mean 43.8 months).
- No new permanent neurological deficits were observed; 2 patients had transient hemiplegia.
- Invasive EEG monitoring and insular sampling were crucial for localization, especially in MRI-negative cases.
Conclusions:
- Insular cortex should be considered as a seizure origin in pediatric refractory focal epilepsy.
- Surgical resection of the insula can lead to high rates of seizure freedom with acceptable risks.
- Advanced neuroimaging and invasive EEG monitoring are vital for successful surgical management.
Abstract:
OBJECTIVE Seizure onset in the insular cortex as a cause of refractory epilepsy is underrepresented in the pediatric population, possibly due to difficulties localizing seizure onset in deep anatomical structures and limited surgical access to the insula, a complex anatomical structure with a rich overlying vascular network. Insular seizure semiology may mimic frontal, temporal, or parietal lobe semiology, resulting in false localization, incomplete resection, and poor outcome. METHODS The authors retrospectively reviewed the records of all pediatric patients who underwent insular cortical resections for intractable epilepsy at Miami Children's Hospital from 2009 to 2015. Presurgical evaluation included video electroencephalography monitoring and anatomical/functional neuroimaging. All patients underwent excisional procedures utilizing intraoperative electrocorticography or extraoperative subdural/depth electrode recording. RESULTS Thirteen children (age range 6 months-16 years) with intractable focal epilepsy underwent insular-opercular resection. Seven children described symptoms that were suggestive of insular seizure origin. Discharges on scalp EEG revealed wide fields. Four patients were MRI negative (i.e., there were no insular or brain abnormalities on MRI), 4 demonstrated insular signal abnormalities, and 5 had extrainsular abnormalities. Ten patients had insular involvement on PET/SPECT. All patients underwent invasive investigation with insular sampling; in 2 patients resection was based on intraoperative electrocorticography, whereas 11 underwent surgery after invasive EEG monitoring with extraoperative monitoring. Four patients required an extended insular resection after a failed initial surgery. Postoperatively, 2 patients had transient hemiplegia. No patients had new permanent neurological deficits. At the most recent follow-up (mean 43.8 months), 9 (69%) children were seizure free and 1 had greater than 90% seizure reduction. CONCLUSIONS Primary insular seizure origin should be considered in children with treatment-resistant focal seizures that are believed to arise within the perisylvian region based on semiology, widespread electrical field on scalp EEG, or insular abnormality on anatomical/functional neuroimaging. There is a reasonable chance of seizure freedom in this group of patients, and the surgical risks are low.
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