Subtle white matter intensity changes on fluid-attenuated inversion recovery imaging in patients with ischaemic

Pedro Cougo1,2, Heber Colares3, João Gabriel Farinhas1,2

  • 1Instituto Americas, Neurology Division, Rio de Janeiro 22775-001, Brazil.

Brain Communications
|March 26, 2024
PubMed

Insights

Leukoaraiosis, a marker of small-vessel disease, shows subtle white matter changes on MRI. These changes, indicating free-water accumulation, are linked to leukoaraiosis volume and patient age.

Area of Science:

  • Neuroimaging
  • Neurology
  • Radiology

Background:

  • Leukoaraiosis, a neuroimaging marker of small-vessel disease, presents as high signal intensity on FLAIR MRI.
  • Evidence suggests leukoaraiosis involves structural abnormalities in normal-appearing white matter (NAWM).
  • The pathophysiology of white matter damage in small-vessel disease may involve blood-brain barrier disruption.

Purpose of the Study:

  • To verify if leukoaraiosis is associated with elevated signal intensity in NAWM.
  • To investigate the relationship between leukoaraiosis volume and free-water accumulation in NAWM.
  • To explore the spatial extent of these signal intensity changes around leukoaraiosis lesions.

Main Methods:

  • Cross-sectional study of acute ischemic stroke or transient ischemic attack patients.
  • Semi-automated segmentation of leukoaraiosis and FLAIR signal intensity thresholding.
  • Segmentation of NAWM based on distance from leukoaraiosis borders into five strata.
  • Multivariable linear mixed modeling to analyze the association between NAWM signal intensity and leukoaraiosis volume, controlling for age.

Main Results:

  • Mean normalized FLAIR signal intensity in NAWM was higher near leukoaraiosis and decreased with distance.
  • NAWM signal intensity was positively associated with leukoaraiosis volume and patient age.
  • Increased signal intensity in NAWM was observed even in regions not immediately adjacent to leukoaraiosis.

Conclusions:

  • NAWM exhibits subtle FLAIR signal intensity changes related to leukoaraiosis burden.
  • These findings suggest diffuse free-water accumulation is involved in white matter damage from small-vessel disease.
  • The results support the hypothesis that blood-brain barrier dysfunction contributes to leukoaraiosis.