Assessment of white matter hyperintensity severity using multimodal magnetic resonance imaging

Olivier Parent1,2, Aurélie Bussy1,2, Gabriel Allan Devenyi1,3

  • 1Cerebral Imaging Centre, Douglas Mental Health University Institute, Montreal, Quebec H4H 1R3, Canada.

Brain Communications
|November 13, 2023
PubMed

Insights

Quantitative T2* (qT2*) MRI signal measures in white matter hyperintensities are sensitive to tissue damage and associated with clinical outcomes. Combining qT2* with volumetric measures may improve white matter hyperintensity severity characterization.

Area of Science:

  • Neuroimaging
  • Cerebrovascular Biology
  • Alzheimer's Disease Research

Background:

  • White matter hyperintensities (WMH) are MRI-detectable abnormalities linked to cerebrovascular dysfunction, common in aging and Alzheimer's disease (AD).
  • WMH tissue alterations (demyelination, inflammation, edema) vary by location and individual, necessitating in vivo characterization for improved prognosis and treatment.
  • Current understanding of how MRI measures of tissue microstructure relate to WMH damage and clinical outcomes is limited.

Purpose of the Study:

  • To compare six MRI signal measures within WMH for their association with clinically relevant outcomes.
  • To determine which MRI measures best capture WMH tissue damage and its clinical impact.
  • To inform strategies for characterizing WMH severity and potential treatment efficacy.

Main Methods:

  • Cross-sectional analysis of 118 participants (healthy controls, familial AD risk, mild cognitive impairment, AD dementia).
  • Acquisition of T1w, T2w, FLAIR, quantitative T1 (qT1), and quantitative T2* (qT2*) MRI data.
  • Sampling median MRI signal within WMH and correlating with brain morphometry, cognition, demographics, and cardiovascular risk factors.

Main Results:

  • qT2* and FLAIR signals in WMH showed age- and disease-related trends distinct from normal-appearing white matter.
  • WMH qT2* signal, particularly in periventricular and occipital regions, consistently associated with all clinical outcomes across analyses.
  • qT1 and FLAIR showed multivariate clinical associations; T1w, T2w, and T1w/T2w ratios did not consistently correlate with clinical variables.

Conclusions:

  • The qT2* MRI signal is sensitive to clinically relevant microstructural tissue alterations specific to WMH.
  • Combining volumetric and signal measures (especially qT2*) is recommended for comprehensive WMH severity assessment.
  • Findings may guide reversibility assessments and efficacy of cardio- and cerebrovascular treatments for WMH.