Urgent Video Electroencephalography in the Pediatric Emergency Department: Is It Useful?
Mohammad Y Sawahreh1, Amani Hamid2, AbdelRahman T Salem2
1Division of Pediatric Neurology, Department of Pediatrics, Sidra Medicine, Doha, Qatar.
Insights
Urgent video-electroencephalography (vEEG) in pediatric emergency departments aids early diagnosis of seizures and paroxysmal events. This essential tool helps guide treatment decisions and reduces the need for further testing in children.
Area of Science:
- Pediatric Neurology
- Clinical Neurophysiology
Background:
- Seizures represent 1% of pediatric emergency department visits.
- Electroencephalography (EEG) is crucial for neurological evaluations.
- The role of urgent video-EEG (vEEG) in pediatric emergency settings is not well-defined.
Purpose of the Study:
- To investigate the utility of urgent vEEG in evaluating pediatric patients presenting with seizures and other paroxysmal events.
- To determine the diagnostic yield and impact of vEEG in the pediatric emergency department.
Main Methods:
- Retrospective chart review of 277 pediatric patients (0-18 years) who underwent vEEG in a tertiary children's hospital.
- Analysis of indications for vEEG, timing of the procedure, and findings.
- Correlation of vEEG results with clinical presentation, risk factors, and neuroimaging.
Main Results:
- Most common indications were new-onset paroxysmal events (37%) and first unprovoked seizures (20%).
- 61% of patients had abnormal vEEG findings, with correlations to perinatal risk factors, developmental delay, and abnormal neurological exams.
- vEEG differentiated epileptic from nonepileptic episodes in 16% and diagnosed epilepsy in 60% of new-onset events, influencing medication initiation (47%) and changes (67%).
Conclusions:
- Urgent vEEG in pediatric emergency departments facilitates early diagnosis and treatment of seizures.
- vEEG can reduce the need for additional investigations and potentially improve patient outcomes.
- Further evaluation of cost-effectiveness and accessibility of vEEG in pediatric emergency settings is warranted.
Background:
Seizures account for about 1% of pediatric emergency department (PED) visits. Electroencephalography (EEG) is essential for evaluating seizures and other neurological concerns. The utility of urgent video-EEG (vEEG) in the PED remains unclear. The objective of this study was to study the role of vEEG in evaluating children presenting with seizures and other paroxysmal events.
Methods:
A retrospective chart review analysis was conducted at a single tertiary children's hospital over a three-year period in children (0-18 years) presenting to a PED with neurological symptoms and underwent vEEG.
Results:
A total of 277 patients underwent vEEG (142 females [52%]; mean age, 7.7 years). The most common indications were new-onset paroxysmal events (37%) and first unprovoked seizure (20%). vEEG was performed within 24 hours of the event and sleep was achieved in 92% and 80% of patients, respectively. Most patients (61%) had abnormal findings. Perinatal risk factors, pre-existing developmental delay, pre-established epilepsy, and an abnormal neurological examination highly correlated with vEEG abnormalities (P < 0.05). Clinical events captured during monitoring differentiated epileptic from nonepileptic episodes (16%). New-onset paroxysmal events were diagnosed as epileptic in 60%. Specific epilepsy syndromes were identified in 57% of this subgroup. vEEG contributed to initiation of antiseizure medications (47%) and impacted decisions to change antiseizure medications in 67% of patients with known epilepsy. Abnormalities on neuroimaging were found in approximately half of the patients with abnormal vEEG who were imaged.
Conclusions:
This study suggests that urgent vEEG in PEDs can lead to early diagnosis and treatment, reduce the need for further investigations, and potentially improve outcomes. However, the cost-effectiveness and availability of vEEG in PEDs need further evaluation.
Related Concept Videos
Electrocardiogram
Three major waveforms are present in a typical ECG recording: the P wave, the QRS complex, and the T...
Cardiopulmonary Resuscitation III: AED Use


