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EEG abnormalities preceding the epilepsy onset in tuberous sclerosis complex patients - a prospective study of 5
D Domańska-Pakieła1, M Kaczorowska1, E Jurkiewicz2
1The Children's Memorial Health Institute, Department of Child Neurology and Epileptology, Aleja Dzieci Polskich 20, 04-730 Warszawa, Poland.
Insights
Early EEG monitoring in Tuberous Sclerosis Complex (TSC) patients detected epileptiform discharges before clinical epilepsy onset. This finding is crucial for timely intervention to prevent neurological complications in children with TSC.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Tuberous Sclerosis Complex (TSC) is a genetic disorder causing hamartomas.
- Epilepsy affects 80-90% of TSC patients, often in infancy.
- Early seizure control is vital to prevent cognitive decline.
Purpose of the Study:
- To investigate the utility of early and regular EEG monitoring in TSC patients.
- To identify subclinical epileptiform discharges preceding clinical seizures.
- To understand EEG evolution in TSC patients with non-infantile spasm seizures.
Main Methods:
- Prospective study of 5 TSC patients monitored with EEG from birth.
- Regular EEG assessments (4-6 week intervals) before epilepsy onset.
- Analysis of EEG findings in relation to clinical seizure development.
Main Results:
- Epileptiform discharges were detected on EEG in all patients before clinical epilepsy.
- The interval between EEG abnormality and seizure onset ranged from 1 to 8 days.
- Focal motor seizures were the initial presentation in all cases.
Conclusions:
- Routine EEG monitoring can identify subclinical epileptiform activity in TSC patients.
- Early detection of EEG abnormalities allows for prompt intervention.
- This approach may help prevent the development of epileptic encephalopathy in TSC.
Abstract:
Tuberous sclerosis complex (TSC) is a multisystem, autosomal dominant disorder characterized by multiple hamartomas development. Epilepsy is the most common symptom appearing in 80-90% of the patients mainly in the first year of life. A prompt and early seizure control is crucial and can prevent development of an epileptic encephalopathy and secondary mental retardation. Therefore the very early identification of seizures seems to be of a great importance. We present the cases of 5 patients diagnosed with TSC prenatally or perinatally and regularly monitored (at 4-6 weeks intervals) with EEG before the epilepsy onset. The patients' age at baseline varied from 9 days to 9 weeks. In all of the patients epileptiform discharges preceded the epilepsy onset. The time interval between abnormality detection on EEG and the epilepsy onset varied from 1 to 8 days. The patient's age at the epilepsy onset ranged from the 17th day to the 5th month of life. In one patient the EEG was abnormal from the beginning and in this patient the epileptic seizures started from the neonatal period. In the rest of the patients (4/5) the EEG remained normal throughout the first months of life. In all of the children epilepsy started with focal motor seizures. Our study is the first prospective one showing the results of the EEG monitoring in TSC patients and the natural evolution of the EEG patterns in patients with the seizures types other than infantile spasms.
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