Diagnostic Accuracy of MRI for Detection of Meningitis in Infants

S F Kralik1, J G Vallejo2, M K Kukreja3

  • 1From the Department of Radiology (S.F.K., M.K.K., R.S., G.O., T.A.G.M.H., N.K.D.), Texas Children's Hospital, Houston, Texas steve.kralik@gmail.com.

Abstract

Insights

MR imaging shows high specificity but moderate sensitivity for diagnosing meningitis in infants. While useful, imaging accuracy may be affected by selection bias toward more severe cases.

Area of Science:

  • Pediatric Radiology
  • Neuroradiology
  • Infectious Diseases

Background:

  • Meningitis is a serious infection in infants, requiring accurate and timely diagnosis.
  • Magnetic Resonance (MR) imaging is a key diagnostic tool for suspected central nervous system infections in infants.

Purpose of the Study:

  • To evaluate the diagnostic accuracy of MR imaging for meningitis in infants.
  • To determine the sensitivity, specificity, and predictive values of MR imaging findings in pediatric meningitis.

Main Methods:

  • Retrospective review of brain MR imaging in infants under 1 year old diagnosed with meningitis between 2010-2018.
  • Comparison of MR imaging results with gold standard diagnostic criteria including CSF and blood cultures, and CSF white blood cell (WBC) counts.
  • Calculation of sensitivity, specificity, positive predictive value (PPV), negative predictive value (NPV), and overall accuracy.

Main Results:

  • MR imaging demonstrated a sensitivity range of 67.4-83.5% and specificity range of 92.3-95.7% for meningitis detection in 209 infants.
  • Sensitivity decreased after 10 days from presentation, while specificity remained stable.
  • Leptomeningeal enhancement was the most sensitive MR finding, whereas findings like cerebritis and ventriculitis were most specific.

Conclusions:

  • Brain MR imaging is a highly specific but moderately sensitive tool for diagnosing meningitis in infants.
  • Findings suggest MR imaging is valuable in the current standard of care, though potential selection bias for severe cases may influence results.

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