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Infant Auditory Processing and Event-related Brain Oscillations
Published on: July 1, 2015
Clinical correlates of occipital intermittent rhythmic delta activity (OIRDA) in children
Nathan Watemberg1, Ilan Linder, Ron Dabby
1Pediatric Epilepsy Service, Wolfson Medical Center, Sackler School of Medicine, Tel-Aviv University, Holon, Israel. nwatermberg@pol.net
Insights
Occipital intermittent rhythmic delta activity (OIRDA) is likely an epileptic pattern in children, differing in frequency between localization-related and absence seizures. It rarely occurs in encephalopathic children.
Area of Science:
- Pediatric Neurology
- Clinical Neurophysiology
- Epileptology
Background:
- The clinical significance of occipital intermittent rhythmic delta activity (OIRDA) remains unclear.
- Emerging evidence suggests OIRDA is predominantly seen in children and often linked to epilepsy.
Purpose of the Study:
- To characterize the electrographic features of OIRDA.
- To investigate the clinical correlates of OIRDA in pediatric patients.
Main Methods:
- Retrospective review of 697 pediatric electroencephalograms.
- Analysis of 24 studies identifying OIRDA, with a mean patient age of 7.96 years.
Main Results:
- OIRDA was associated with recent convulsions and absence seizures.
- Epileptiform activity co-occurred in 50% of cases, predominantly focal.
- OIRDA frequency differed between localization-related epilepsy (2-3 Hz) and absence seizures (3-4 Hz).
- No structural pathology was found in neuroimaging studies.
Conclusions:
- OIRDA is likely an epileptiform pattern, with occasional occurrence in encephalopathic children.
- Electrographic characteristics of OIRDA vary between epilepsy types, notably absence seizures.
Purpose:
The clinical significance of occipital intermittent rhythmic delta activity (OIRDA) on the electroencephalogram has not been fully established. Recent studies suggest that this pattern occurs almost exclusively in children and is probably of epileptic origin in most cases. We sought to characterize the electrographic features and clinical correlates of occipital intermittent rhythmic delta activity.
Methods:
A review of 697 consecutive pediatric electroencephalograms detected occipital intermittent rhythmic delta activity in 24 studies. Mean patient age was 7.96 years.
Results:
Recent convulsions and absence seizures constituted the main indications for the study. Concomitant, independent epileptiform activity was noted in half of the cases. This activity was focal in all but one case. Conversely, in most cases of absence seizures, epileptiform activity intermixed with occipital intermittent rhythmic delta activity. Furthermore, the frequency of the occipital rhythmic discharges in studies of children with absences was generally faster (3-4 Hz) than in localization-related epilepsy (2-3 Hz). Most patients were awake when occipital intermittent rhythmic delta activity occurred. Chronic encephalopathy was seen in one child only. Analysis of neuroimaging studies in eight cases revealed no structural pathology associated with occipital intermittent rhythmic delta activity.
Conclusions:
Occipital intermittent rhythmic delta activity is probably an epileptiform pattern, although it is noted occasionally in encephalopathic children. Its electrographic characteristics appear to differ between localization-related epilepsy and primary generalized epilepsy, particularly absence seizures.
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