Related Experiment Video
Updated: Jul 1, 2025

Assessing Cortical Cerebral Microinfarcts on High Resolution MR Images
Published on: November 20, 2015
Three-dimensional identification of microvascular pathology and neurovascular inflammation in severe white matter
Gemma Solé-Guardia1, Matthijs Luijten1, Bram Geenen1
1Department of Medical Imaging, Anatomy, Donders Institute for Brain, Cognition & Behavior, Preclinical Imaging Center PRIME, Radboud Alzheimer Center, Radboud university medical center, 6525 EZ, Nijmegen, PO Box 9101, The Netherlands.
Abstract:
White matter hyperintensities (WMH) are the most prevalent markers of cerebral small vessel disease (SVD), which is the major vascular risk factor for dementia. Microvascular pathology and neuroinflammation are suggested to drive the transition from normal-appearing white matter (NAWM) to WMH, particularly in individuals with hypertension. However, current imaging techniques cannot capture ongoing NAWM changes. The transition from NAWM into WMH is a continuous process, yet white matter lesions are often examined dichotomously, which may explain their underlying heterogeneity. Therefore, we examined microvascular and neurovascular inflammation pathology in NAWM and severe WMH three-dimensionally, along with gradual magnetic resonance imaging (MRI) fluid-attenuated inversion recovery (FLAIR) signal (sub-)segmentation. In WMH, the vascular network exhibited reduced length and complexity compared to NAWM. Neuroinflammation was more severe in WMH. Vascular inflammation was more pronounced in NAWM, suggesting its potential significance in converting NAWM into WMH. Moreover, the (sub-)segmentation of FLAIR signal displayed varying degrees of vascular pathology, particularly within WMH regions. These findings highlight the intricate interplay between microvascular pathology and neuroinflammation in the transition from NAWM to WMH. Further examination of neurovascular inflammation across MRI-visible alterations could aid deepening our understanding on WMH conversion, and therewith how to improve the prognosis of SVD.
Insights
White matter hyperintensities (WMH) result from microvascular changes and neuroinflammation. Vascular inflammation in normal-appearing white matter (NAWM) may precede WMH development, impacting dementia risk.
Area of Science:
- Neuroimaging
- Cerebrovascular Diseases
- Neuroinflammation
Background:
- White matter hyperintensities (WMH) are key markers of cerebral small vessel disease (SVD), a major dementia risk factor.
- Hypertension exacerbates SVD, with microvascular pathology and neuroinflammation driving WMH development.
- Current imaging struggles to detect early NAWM changes, hindering understanding of WMH progression.
Observation:
- This study performed 3D analysis of microvascular and neurovascular inflammation in normal-appearing white matter (NAWM) and severe WMH.
- Magnetic resonance imaging (MRI) fluid-attenuated inversion recovery (FLAIR) signal (sub-)segmentation was used to assess gradual changes.
- Vascular networks in WMH showed reduced complexity compared to NAWM.
Findings:
- Neuroinflammation was more severe in WMH, while vascular inflammation was more pronounced in NAWM.
- This suggests vascular inflammation in NAWM is critical for its conversion to WMH.
- FLAIR signal sub-segmentation revealed varied vascular pathology, especially within WMH.
Implications:
- Findings reveal a complex interplay between microvascular pathology and neuroinflammation in WMH development.
- Understanding neurovascular inflammation in MRI-visible changes can improve SVD prognosis.
- Further research may lead to better therapeutic strategies for SVD and dementia.

