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Refractory grand mal seizures with onset during infancy including severe myoclonic epilepsy in infancy
1Department of Pediatrics, Epilepsy Center, National Nishi-Niigata Central Hospital, 1-14-1 Masago, Niigata, Japan. kaz@masa.go.jp
Abstract:
In 1978, Dravet proposed a clinical entity called severe myoclonic epilepsy in infancy (SMEI). In the same year, a patient group, which was later called high voltage slow wave-grand mal syndrome (HVSW-GM), is reported in Japan. Both syndromes are very similar, except for seizure manifestation: generalized tonic-clonic convulsions (GTC) with myoclonic and other polymorphic seizures in SMEI vs. GTC only in HVSW-GM. To study the pathophysiology of these refractory epilepsies, the author formulated new clinical diagnostic criteria common to both syndromes as follows: GTC with onset before the age of 1 year as the principal seizure type; an epilepsy entity unclassifiable either as partial or generalized by all the clinical data including EEG findings; mental and motor dysfunction absent prior to seizure onset but appearing later; absence of epileptiform activities on EEG in the initial stage; stubborn refractoriness to conventional antiepileptic medication. Twenty-two patients meeting all of five clinical criteria above mentioned were recruited in the study. Detailed analysis of clinico-electrical features and long-term follow-up of these patients led the author to the conclusion that GTC in combination with seizures of other types will contribute to an unfavorable pathophysiological or prognostic conditions, and, especially when GTC exists in combination with myoclonic seizures, the severity of epilepsy will increase. The author claimed that the three clinical entities, SMEI, HVSW-GM, and their variant form, share certain characteristics in common and may constitute a unique epilepsy syndrome for which a new name of infantile refractory grand mal syndrome (IRGMS) was offered. This is a more basic concept with broader spectrum than SMEI, encompassing not only SMEI but also related borderlands like HVSW-GM. More recently, the author observed that early zonisamide medication within 1 year after seizure onset may improve seizure prognosis in IRGMS, by preventing the development of myoclonic seizures.
Insights
Severe myoclonic epilepsy in infancy (SMEI) and related syndromes may be unified as infantile refractory grand mal syndrome (IRGMS). Early zonisamide treatment shows promise in improving seizure prognosis for IRGMS patients.
Area of Science:
- Epilepsy research
- Pediatric neurology
- Clinical diagnostics
Background:
- Severe myoclonic epilepsy in infancy (SMEI) and high voltage slow wave-grand mal syndrome (HVSW-GM) are similar refractory epilepsy syndromes.
- Differences in seizure manifestations exist, with SMEI including myoclonic seizures and HVSW-GM primarily generalized tonic-clonic convulsions (GTC).
- Existing classifications do not fully encompass the spectrum of these infantile epilepsies.
Purpose of the Study:
- To establish common diagnostic criteria for SMEI, HVSW-GM, and related variants.
- To investigate the pathophysiology and long-term prognosis of these conditions.
- To propose a unified epilepsy syndrome classification.
Main Methods:
- Development of five common clinical diagnostic criteria for infantile refractory epilepsies.
- Recruitment and detailed analysis of 22 patients meeting all criteria.
- Long-term follow-up and evaluation of clinico-electrical features.
Main Results:
- Generalized tonic-clonic convulsions (GTC) combined with other seizure types, particularly myoclonic seizures, correlate with poorer prognosis.
- A unified syndrome, infantile refractory grand mal syndrome (IRGMS), is proposed, encompassing SMEI and HVSW-GM.
- Early zonisamide administration (within 1 year of onset) may prevent myoclonic seizure development and improve outcomes.
Conclusions:
- SMEI, HVSW-GM, and variants represent a spectrum of a single epilepsy syndrome, IRGMS.
- The presence of myoclonic seizures alongside GTC significantly increases epilepsy severity.
- Early zonisamide intervention is a potential therapeutic strategy for improving IRGMS prognosis.