White Matter Cerebrovascular Reactivity: Effects of Microangiopathy and Proximal Occlusions on the Dynamic BOLD

Abstract

Insights

Cerebral microangiopathy and large vessel disease have additive effects on white matter cerebrovascular reactivity (CVR). Dynamic acetazolamide-BOLD imaging reveals impaired CVR in white matter hyperintensities, suggesting a quantitative stroke risk biomarker.

Area of Science:

  • Neuroimaging and Cerebrovascular Disease
  • Advanced MRI techniques for stroke risk assessment

Background:

  • Cerebral white matter microangiopathy (WMH) and large vessel steno-occlusive disease (SOD) are independent stroke risk factors.
  • The interaction between microangiopathy and SOD on cerebrovascular reactivity (CVR) remains poorly understood.
  • Impaired CVR, the brain's ability to adapt blood flow, is linked to future infarctions.

Approach:

  • A cross-sectional study measured dynamic CVR maxima (CVR) using acetazolamide-BOLD (ACZ-BOLD) in 23 patients with unilateral SOD.
  • CVR was assessed in white matter, categorized by proximity to SOD and presence of WMH (ipsilateral/contralateral, WMH/NAWM).
  • A custom computational pipeline enabled per-voxel, dynamic CVR analysis.

Key Points:

  • Ipsilateral white matter hyperintensities (WMH) showed significantly lower CVR compared to contralateral normal-appearing white matter (NAWM).
  • Pooled voxelwise analysis revealed significantly lower CVR in WMH compared to all other white matter groups.
  • No significant correlation was found between WMH lesion volume and CVR.

Conclusions:

  • Results suggest additive detrimental effects of microvascular (WMH) and macrovascular (SOD) disease on white matter CVR.
  • Macrovascular SOD appears to have a greater overall impact on CVR than microangiopathy.
  • Dynamic ACZ-BOLD imaging shows promise as a quantitative biomarker for stroke risk.

Related Concept Videos