Quantitative Electroencephalography Indicators in Children with Acute Purulent Meningitis
V B Voytenkov1,2, A A Vilnitz1,3, N V Skripchenko1,3
1Pediatric Research and Clinical Center for Infectious Diseases, St. Petersburg, Russia.
Insights
Pediatric purulent meningitis significantly alters brain activity, indicated by reduced alpha/theta and alpha/delta EEG ratios. These changes suggest potential cerebral edema and thalamocortical pathway suppression in affected children.
Area of Science:
- Neuroscience
- Pediatric Infectious Diseases
- Medical Signal Processing
Background:
- Bacterial purulent meningitis is a severe infection affecting children.
- Assessing brain bioelectrical activity is crucial for understanding meningitis's neurological impact.
- Quantitative EEG analysis offers objective measures of brain function.
Purpose of the Study:
- To evaluate brain bioelectrical activity in children with acute bacterial purulent meningitis.
- To quantitatively analyze changes in EEG rhythms and power ratios.
- To identify EEG markers indicative of potential complications like cerebral edema.
Main Methods:
- Electroencephalogram (EEG) recordings from 16 children with purulent meningitis and 15 healthy controls.
- Analysis of background rhythms, zonal differences, and pathological EEG activity.
- Quantitative analysis of alpha, theta, and delta rhythms, including alpha/theta and alpha/delta power ratios.
Main Results:
- All meningitis patients exhibited diffuse EEG slowing with delta and theta waves.
- Significant reductions in alpha/delta (p=0.001) and alpha/theta (p=0.048) spectral ratios were observed in meningitis patients.
- Specific thresholds for alpha/theta (<0.18) and alpha/delta (<0.02) showed high sensitivity and specificity for detecting cerebral edema.
Conclusions:
- Acute purulent meningitis in children leads to significant impairments in EEG alpha/theta and alpha/delta power ratios.
- These EEG alterations suggest suppressed functional activity in the thalamus, thalamocortical pathways, and reticular formation.
- EEG quantitative analysis, particularly alpha/theta and alpha/delta ratios, can serve as a sensitive indicator for cerebral edema in pediatric meningitis.
Abstract:
The aim of the present work was to assess the state of brain bioelectrical activity in children during the acute period of bacterial purulent meningitis, with quantitative mathematical analysis of the changes found. The studies included 31 children on days 1 and 6 from onset of illness: 16 children (8.9 ± 2.4 years) admitted to the Pediatric Scientific Clinical Center for Infectious Diseases with laboratory confirmation of diagnoses of purulent meningitis (due to Neisseria meningitidis) (n = 11) or Streptomyces pneumoniae (n = 2) or unidentified pathogen (n = 3)), along with 15 healthy children. Electroencephalogram (EEG) traces were recorded from all these children in the state of calm waking using a Neuron-Spectrum 4/VP 16-channel electroencephalograph. Clinical assessment of the EEG included analysis of background rhythms, zonal differences, and detection of pathological types of activity. Quantitative analysis consisted of the mean power (μV2) and amplitude (μV) of the α, θ, and δ rhythms, along with mean power ratios - α/θ and α/δ. Visual analysis of the EEG in 100% of children in the acute period of purulent meningitis showed diffuse slowing with detection of δ and θ waves. Focal changes in the form of sharp waves were seen in 18.8% of cases (three patients). No cases displayed periodic activity. Meningitis patients showed significant reductions in the α/δ (p = 0.001) and α/θ (p = 0.048) spectral ratios. ROC analysis showed that the α/θ value was <0.18 and the α/δ value was <0.02 (sensitivity 100% and specificity 80%, AUROC 0.9), which may be evidence of the likely development of cerebral edema. Thus, pediatric patients with acute purulent meningitis showed significant impairments to the normal α/θ and α/δ rhythm power ratios on the EEG, which is presumptively explained by suppression of the functional activity of the thalamus and thalamocortical pathways, as well as the reticular formation of the brain.
More Related Videos
05:58Application of an Amplitude-integrated EEG Monitor Cerebral Function Monitor to Neonates
Published on: September 6, 2017
09:16Use of a Wireless Video-EEG System to Monitor Epileptiform Discharges Following Lateral Fluid-Percussion Induced Traumatic Brain Injury
Published on: June 21, 2019
Related Concept Videos
Viral Meningitis
Bacterial Meningitis I: Introduction
