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Comparison of Temporal Lobectomies of Children and Adults with Intractable Temporal Lobe Epilepsy

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Specialty Pediatrics
Date 2009 Nov 11
PMID 19902220
Citations 8
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Abstract

Introduction: The aim of the study was to assess the difference in clinical characteristics and postsurgical outcomes between children and adults who have undergone temporal lobectomy (TL).

Materials And Methods: We retrospectively reviewed the medical records of 52 patients who had undergone TL between 2006 and 2008. Nineteen patients were classified as children (<or=18 years old), and 33 patients were classified as adults (>18 years old) according to the age when TL had been performed.

Results: Twelve of 19 (63.2%) children and 24 of 33 (72.7%) adults became seizure free. Rapid secondary generalization such as generalized tonic or tonic-clonic seizures showed a tendency to be more prominent in children (four of 19, 21.1%) than in adults (three of 33, 9.1%). Patients in childhood had significantly more multifocal discharges on interictal electroencephalography (EEG) (42.1%) compared to adults (15.2%, p = 0.014). The mean extent of surgical excision was 5.0 cm in children and 4.1 cm in adults (p = 0.001). The incidence of hippocampal sclerosis, the most common pathologic finding in the two groups, was 57.9% (11 of 19) in children and 78.8% (26 of 33) in adults. Malformations of cortical development were significantly more frequent in children (nine of 19, 47.4%) than in adults (seven of 33, 21.2%). Dual pathology was found in 31.6% of children and in 12.1% of adults. The intelligence quotient and memory quotient values in children with temporal lobe resection remained nearly steady during follow-up period without significant decline.

Conclusion: Patients undergoing TL during childhood compared to during adulthood had distinctively different interictal EEG, resectional extents, and pathologic findings.

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References
1.
Vasconcellos E, Wyllie E, Sullivan S, Stanford L, Bulacio J, Kotagal P . Mental retardation in pediatric candidates for epilepsy surgery: the role of early seizure onset. Epilepsia. 2001; 42(2):268-74. DOI: 10.1046/j.1528-1157.2001.12200.x. View

2.
Blume W, Girvin J, McLachlan R, Gilmore B . Effective temporal lobectomy in childhood without invasive EEG. Epilepsia. 1997; 38(2):164-7. DOI: 10.1111/j.1528-1157.1997.tb01092.x. View

3.
Maton B, Jayakar P, Resnick T, Morrison G, Ragheb J, Duchowny M . Surgery for medically intractable temporal lobe epilepsy during early life. Epilepsia. 2007; 49(1):80-7. DOI: 10.1111/j.1528-1167.2007.01315.x. View

4.
Wyllie E . Surgery for catastrophic localization-related epilepsy in infants. Epilepsia. 1996; 37 Suppl 1:S22-5. DOI: 10.1111/j.1528-1157.1996.tb06019.x. View

5.
Ray A, Wyllie E . Treatment options and paradigms in childhood temporal lobe epilepsy. Expert Rev Neurother. 2005; 5(6):785-801. DOI: 10.1586/14737175.5.6.785. View