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Seizure burden is independently associated with short term outcome in critically ill children
Eric T Payne1, Xiu Yan Zhao, Helena Frndova
11 Division of Neurology, Department of Paediatrics, The Hospital for Sick Children and University of Toronto, M5G 1X8, Canada.
Insights
In critically ill children, higher electrographic seizure burden is linked to worse neurological outcomes. A threshold of over 12 minutes of seizures per hour significantly increases the risk of neurological decline.
Area of Science:
- Pediatric Critical Care
- Neuroscience
- Clinical Neurology
Background:
- Seizures are frequent in critically ill children, but their impact on neurological outcomes is not fully understood.
- Continuous video-electroencephalography (cEEG) monitoring is crucial for detecting electrographic seizures in this population.
Purpose of the Study:
- To quantify the association between electrographic seizure burden and short-term neurological outcomes in critically ill children.
- To identify a potential seizure burden threshold linked to neurological decline.
- To adjust for diagnosis and illness severity in the analysis.
Main Methods:
- Prospective evaluation of infants and children in pediatric and cardiac intensive care units undergoing cEEG monitoring over 3 years.
- Quantification of seizure burden by maximum hourly percentage of electrographic seizures.
- Assessment of neurological decline using the Paediatric Cerebral Performance Category (PCPC) score and in-hospital mortality.
Main Results:
- Seizures occurred in 36% of 259 evaluated children; 9% experienced status epilepticus.
- Neurological decline was observed in 67% of subjects.
- Mean maximum seizure burden was significantly higher in children with neurological decline (15.7%/hour) compared to those without (1.8%/hour; P < 0.0001).
- A threshold of >20% maximum hourly seizure burden (12 minutes) was associated with a sharp increase in neurological decline probability and magnitude (P < 0.0001).
- Each 1% increase in hourly seizure burden independently increased the odds of neurological decline by 1.13 (95% CI: 1.05-1.21; P = 0.0016).
- Seizure burden was not associated with mortality (OR: 1.003; P = 0.613).
Conclusions:
- Increasing electrographic seizure burden is independently associated with a higher probability and magnitude of neurological decline in critically ill children.
- A seizure burden threshold of over 12 minutes per hour strongly predicts neurological decline, suggesting early antiepileptic drug management as a therapeutic target.
- These findings support the hypothesis that electrographic seizures contribute to brain injury and worse outcomes, warranting further research into aggressive seizure treatment.
Abstract:
Seizures are common among critically ill children, but their relationship to outcome remains unclear. We sought to quantify the relationship between electrographic seizure burden and short-term neurological outcome, while controlling for diagnosis and illness severity. Furthermore, we sought to determine whether there is a seizure burden threshold above which there is an increased probability of neurological decline. We prospectively evaluated all infants and children admitted to our paediatric and cardiac intensive care units who underwent clinically ordered continuous video-electroencephalography monitoring over a 3-year period. Seizure burden was quantified by calculating the maximum percentage of any hour that was occupied by electrographic seizures. Outcome measures included neurological decline, defined as a worsening Paediatric Cerebral Performance Category score between hospital admission and discharge, and in-hospital mortality. Two hundred and fifty-nine subjects were evaluated (51% male) with a median age of 2.2 years (interquartile range: 0.3 days-9.7 years). The median duration of continuous video-electroencephalography monitoring was 37 h (interquartile range: 21-56 h). Seizures occurred in 93 subjects (36%, 95% confidence interval = 30-42%), with 23 (9%, 95% confidence interval = 5-12%) experiencing status epilepticus. Neurological decline was observed in 174 subjects (67%), who had a mean maximum seizure burden of 15.7% per hour, compared to 1.8% per hour for those without neurological decline (P < 0.0001). Above a maximum seizure burden threshold of 20% per hour (12 min), both the probability and magnitude of neurological decline rose sharply (P < 0.0001) across all diagnostic categories. On multivariable analysis adjusting for diagnosis and illness severity, the odds of neurological decline increased by 1.13 (95% confidence interval = 1.05-1.21, P = 0.0016) for every 1% increase in maximum hourly seizure burden. Seizure burden was not associated with mortality (odds ratio: 1.003, 95% confidence interval: 0.99-1.02, P = 0.613). We conclude that in this cohort of critically ill children, increasing seizure burden was independently associated with a greater probability and magnitude of neurological decline. Our observation that a seizure burden of more than 12 min in a given hour was strongly associated with neurological decline suggests that early antiepileptic drug management is warranted in this population, and identifies this seizure burden threshold as a potential therapeutic target. These findings support the hypothesis that electrographic seizures independently contribute to brain injury and worsen outcome. Our results motivate and inform the design of future studies to determine whether more aggressive seizure treatment can improve outcome.
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