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Electroencephalographic monitoring during hypothermia after pediatric cardiac arrest
N S Abend1, A Topjian, R Ichord
1Division of Neurology, The Children's Hospital of Philadelphia, 34th Street and Civic Center Boulevard, Philadelphia, PA 19104, USA. abend@email.chop.edu
Insights
Continuous EEG monitoring is safe and feasible for children after cardiac arrest undergoing therapeutic hypothermia. This method helps detect common nonconvulsive seizures and status epilepticus, which are often missed clinically.
Area of Science:
- Pediatric neurology
- Critical care medicine
- Neurophysiology
Background:
- Hypoxic ischemic brain injury following pediatric cardiac arrest (CA) can cause acute symptomatic seizures.
- Nonconvulsive seizures are frequent, necessitating continuous electroencephalogram (EEG) monitoring for accurate diagnosis.
Purpose of the Study:
- To assess the safety and feasibility of prolonged EEG monitoring in children receiving therapeutic hypothermia (TH) post-CA.
- To characterize EEG background and seizure patterns.
- To identify EEG background features that predict seizures.
Main Methods:
- Nineteen children receiving TH post-CA underwent continuous EEG monitoring.
- Monitoring occurred during hypothermia (24h), rewarming (12-24h), and 24h normothermia.
- EEG tolerability, background classification, and seizure characteristics were assessed.
Main Results:
- EEG monitoring was safe and feasible, with no reported complications.
- Electrographic seizures occurred in 47% of patients, with 32% developing status epilepticus.
- Seizures were often nonconvulsive (67%) and generalized (78%), typically starting during hypothermia or rewarming.
- Predictive factors for seizures included burst suppression, discontinuous EEG, epileptiform discharges, or absence of beta activity.
- EEG background evolved over time, with worsening patterns indicating poorer outcomes.
Conclusions:
- Continuous EEG monitoring is a safe and feasible tool for children undergoing TH after CA.
- Electrographic seizures and status epilepticus are common and frequently nonconvulsive, requiring EEG for detection.
- Evolving EEG background patterns can indicate prognosis, with worsening abnormalities correlating with adverse outcomes.
Background:
Hypoxic ischemic brain injury secondary to pediatric cardiac arrest (CA) may result in acute symptomatic seizures. A high proportion of seizures may be nonconvulsive, so accurate diagnosis requires continuous EEG monitoring. We aimed to determine the safety and feasibility of long-term EEG monitoring, to describe electroencephalographic background and seizure characteristics, and to identify background features predictive of seizures in children undergoing therapeutic hypothermia (TH) after CA.
Methods:
Nineteen children underwent TH after CA. Continuous EEG monitoring was performed during hypothermia (24 hours), rewarming (12-24 hours), and then an additional 24 hours of normothermia. The tolerability of these prolonged studies and the EEG background classification and seizure characteristics were described in a standardized manner.
Results:
No complications of EEG monitoring were reported or observed. Electrographic seizures occurred in 47% (9/19), and 32% (6/19) developed status epilepticus. Seizures were nonconvulsive in 67% (6/9) and electrographically generalized in 78% (7/9). Seizures commenced during the late hypothermic or rewarming periods (8/9). Factors predictive of electrographic seizures were burst suppression or excessively discontinuous EEG background patterns, interictal epileptiform discharges, or an absence of the expected pharmacologically induced beta activity. Background features evolved over time. Patients with slowing and attenuation tended to improve, whereas those with burst suppression tended to worsen.
Conclusions:
EEG monitoring in children undergoing therapeutic hypothermia after cardiac arrest is safe and feasible. Electrographic seizures and status epilepticus are common in this setting but are often not detectable by clinical observation alone. The EEG background often evolves over time, with milder abnormalities improving and more severe abnormalities worsening.
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