Diagnosis of Delayed Post-Hypoxic Leukoencephalopathy (Grinker's Myelinopathy) with MRI Using Divided Subtracted

Gil Newburn1, Paul Condron1,2, Eryn E Kwon1,2

  • 1Mātai Medical Research Institute, Tairāwhiti Gisborne 4010, New Zealand.

PubMed

Insights

Delayed Post-Hypoxic Leukoencephalopathy (DPHL) may be more common than previously thought. Advanced MRI techniques like dSIR can detect white matter changes in less severe cases, challenging traditional diagnostic criteria.

Area of Science:

  • Neurology
  • Radiology
  • Neuroimaging

Background:

  • Delayed Post-Hypoxic Leukoencephalopathy (DPHL), or Grinker's myelinopathy, is a rare condition.
  • Characterized by white matter changes in cerebral hemispheres weeks to months after hypoxia.
  • Classic MRI findings include T2-weighted spin echo (T2-wSE) and T2-Fluid Attenuated Inversion Recovery (T2-FLAIR) hyperintensities.

Purpose of the Study:

  • To describe two cases of DPHL with atypical MRI findings.
  • To investigate the utility of divided Subtraction Inversion Recovery (dSIR) imaging in DPHL diagnosis.
  • To reassess the diagnostic criteria and prevalence of DPHL.

Main Methods:

  • Case study of two patients with suspected hypoxic episodes.
  • MRI imaging including T2-FLAIR and dSIR sequences.
  • Comparison of dSIR contrast with conventional inversion recovery (IR) sequences.

Main Results:

  • No abnormalities on T2-FLAIR images in either case.
  • Extensive white matter changes detected by dSIR in cerebral and cerebellar hemispheres.
  • Clinical presentation included cognitive impairment, without Parkinsonism or akinetic mutism.

Conclusions:

  • Classic DPHL features may represent the severe end of a spectrum of hypoxic white matter injury.
  • DPHL might be underdiagnosed due to reliance on conventional MRI and clinical criteria.
  • Advocates for reappraisal of DPHL to include milder cases and advanced MRI techniques.