Related Experiment Video
Updated: Oct 19, 2025

Use of a Wireless Video-EEG System to Monitor Epileptiform Discharges Following Lateral Fluid-Percussion Induced Traumatic Brain Injury
Published on: June 21, 2019
Continuous Electroencephalogram and Antiseizure Medication Use in an International Pediatric Traumatic Brain Injury
Kellie C Snooks1, Ke Yan2, Raquel Farias-Moeller2
1Medical College of Wisconsin, 9000 W. Wisconsin Ave, Milwaukee, WI, 53226, USA. ksnooks@mcw.edu.
Insights
Continuous electroencephalogram (cEEG) monitoring in pediatric traumatic brain injury (TBI) patients increases the detection and treatment of electrographic seizures. This improved recognition leads to higher rates of antiseizure medication (ASM) prescriptions in monitored children.
Area of Science:
- Pediatric Neurology
- Neurocritical Care
- Epileptology
Background:
- Electrographic seizures are common after traumatic brain injury (TBI) but continuous electroencephalogram (cEEG) use is low.
- Understanding cEEG utilization and antiseizure medication (ASM) dosing in pediatric TBI is crucial for improving outcomes.
- This study investigates cEEG use and ASM treatment in a global pediatric TBI cohort.
Purpose of the Study:
- To describe cEEG usage patterns in pediatric intensive care units following TBI.
- To compare the rates of treatment ASM prescriptions between children with and without cEEG monitoring.
- To explore the relationship between cEEG monitoring, seizure detection, and ASM administration.
Main Methods:
- Analysis of a subcohort from the international PANGEA study, including pediatric patients (7 days to 17 years) with acute neurological insults.
- Evaluation of demographics, injury severity, and therapies, including prophylactic or treatment ASMs.
- Statistical analysis using chi-square or Fisher's exact test for categorical variables and Kruskal-Wallis or Mann-Whitney U-test for continuous variables; multivariable logistic regression for treatment ASM use.
Main Results:
- Twenty-seven percent of included pediatric TBI patients underwent cEEG monitoring.
- Patients on cEEG had a higher likelihood of receiving treatment ASMs (66.7% vs. 28.1%, p=0.0002).
- cEEG monitoring was associated with increased detection of both electrographic and clinical seizures.
Conclusions:
- Pediatric TBI patients monitored with cEEG show increased prescription of treatment ASMs.
- The higher rate of ASMs in the cEEG group suggests improved recognition of electrographic seizures.
- cEEG monitoring facilitates timely and appropriate management of seizures post-TBI.
Background:
Electrographic seizures are frequent and associated with worse outcomes following traumatic brain injury (TBI). Despite this, the use of continuous electroencephalogram (cEEG) remains low. Our study describes cEEG usage and treatment dosing antiseizure medications (ASMs) in an international pediatric TBI population, hypothesizing that children monitored with cEEG have an increased rate of treatment ASMs because of electrographic seizure detection, compared with children who are not monitored with cEEG.
Methods:
This subanalysis of the TBI cohort of the international PANGEA study included children, 7 days to 17 years of age, with acute neurological insults admitted to pediatric intensive care units. We analyzed demographics, injury severity, and therapies including prophylactic or treatment ASMs. We evaluated the relationships between cEEG use, seizure frequency, and receipt of treatment ASMs. [Formula: see text] or Fisher's exact test was used to analyze categorical variables, and the Kruskal-Wallis or Mann-Whitney U-test was used for continuous variables. Multivariable analysis for treatment ASM use was performed using logistic regression.
Results:
One hundred-twenty-three of 174 patients with TBI were included. Twenty-seven patients (21.9%) underwent cEEG at any point during pediatric intensive care unit admission. Preexisting seizure disorder (18.2% vs. 2.3%, p = 0.014) and neuromuscular blockade use (52.4% vs. 24.1%, p = 0.011) were more frequently observed in the group monitored on cEEG when compared with those that were not. Presenting median Glasgow Coma Scale score was worse in the cEEG group (7 vs. 9, p = 0.044). There was no significant difference in age, use of intracranial pressure monitoring, or hyperosmolar therapy between the cEEG monitored and nonmonitored groups. Patients who were monitored on cEEG were more likely to receive a treatment dose ASM than those without cEEG monitoring (66.7% vs. 28.1%, p = 0.0002). When compared with those without treatment ASM, the treatment ASM group had more electrographic seizures on their first electroencephalogram following injury (51.6% vs. 4%, p = 0.0001) and more clinical seizures (55.8% vs. 0%, p < 0.0001).
Conclusions:
Children monitored with cEEG after TBI have an increased prescription of treatment ASMs and clinical and electrographic seizures. The increased rate of treatment ASMs in the cEEG group may indicate increased recognition of electrographic seizures.
More Related Videos
10:22Interictal High Frequency Oscillations Detected with Simultaneous Magnetoencephalography and Electroencephalography as Biomarker of Pediatric Epilepsy
Published on: December 6, 2016
09:57Author Spotlight: Advancing Pediatric Epilepsy Surgery in Children Through Novel Biomarkers and Enhanced Localization
Published on: September 20, 2024
Related Concept Videos
Electroconvulsive Therapy
Epilepsy and Seizures: Overview
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...