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Predictors of nonconvulsive seizures among critically ill children
Bláthnaid McCoy1, Rohit Sharma, Ayako Ochi
1Division of Neurology, The Hospital for Sick Children, and University of Toronto, Toronto, Ontario, Canada.
Insights
Continuous electroencephalography (EEG) monitoring detects nonconvulsive seizures in critically ill children. Identifying high-risk patients can optimize the use of this limited resource for seizure detection.
Area of Science:
- Pediatric Neurology
- Critical Care Medicine
- Neurophysiology
Background:
- Continuous electroencephalography (EEG) monitoring is crucial for detecting nonconvulsive seizures in critically ill children.
- Nonconvulsive seizures are common in this population but often undetected without EEG.
- EEG monitoring is a limited resource in many pediatric intensive care units (ICUs).
Purpose of the Study:
- To identify critically ill children most likely to experience nonconvulsive seizures.
- To determine which patient characteristics predict the occurrence of nonconvulsive seizures.
- To inform the allocation of limited continuous EEG monitoring resources.
Main Methods:
- A single-center review of consecutive diagnostic continuous EEG (cEEG) recordings in pediatric and neonatal ICUs.
- Analysis of monitoring indications, patient clinical characteristics, and seizure occurrence.
- Examination of clinical and EEG features associated with nonconvulsive seizures.
Main Results:
- Seizures were detected in 32% of 121 monitored patients.
- 90% of detected seizures were nonconvulsive, and 72% were exclusively nonconvulsive.
- Predictors of nonconvulsive seizures included acute epilepsy, acute structural brain injury, prior in-hospital convulsive seizures, and interictal epileptiform abnormalities.
Conclusions:
- Nonconvulsive seizures are frequent in critically ill children requiring cEEG monitoring.
- Predictive factors for nonconvulsive seizures can guide resource allocation for EEG monitoring.
- Identifying at-risk children ensures timely diagnosis and management of these seizures.
Purpose:
Continuous electroencephalography (EEG) monitoring is a valuable tool for the detection of seizures among critically ill children, in particular when these seizures occur without clinical signs: termed nonconvulsive seizures. Continuous EEG monitoring is a limited resource in many centers. We sought to identify which critically ill children most frequently experience nonconvulsive seizures, and thus may particularly benefit from continuous EEG monitoring.
Methods:
Single-center review was undertaken of consecutive diagnostic continuous EEG (cEEG) recordings performed in our pediatric and neonatal intensive care units (ICUs). We examined the indications for monitoring, the clinical characteristics of monitored patients, the occurrence and timing of seizures, and clinical and EEG characteristics associated with nonconvulsive seizures.
Key Findings:
One hundred twenty-one patients underwent diagnostic continuous EEG monitoring, for a mean duration of 26 h. Seizures were detected in 32% of these patients, of which 90% experienced some nonconvulsive seizures, and 72% experienced exclusively nonconvulsive seizures. Patients with nonconvulsive seizures had significantly greater odds of having acute epilepsy, acute structural brain injury, prior in-hospital convulsive seizures, and the presence of interictal epileptiform abnormalities on EEG.
Significance:
Seizures are common among critically ill children undergoing diagnostic cEEG monitoring. The great majority of these seizures are nonconvulsive, requiring EEG for their detection. Predictors of nonconvulsive seizures include acute epilepsy, acute structural brain injury, prior in-hospital convulsive seizures, and interictal epileptiform abnormalities on EEG. These findings can help inform future allocation of limited cEEG monitoring resources to those patients at greatest risk for nonconvulsive seizures.
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