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September 17, 2025Stroke and Vascular Neurology0 citationsOpen Access

Characteristics of brain structural damage related to cerebral small vessel disease in general population with intracranial artery stenosis

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ZPZiang PanZLZiyue LiuXPXiang-fu Pan

Key Points

  • ICAS significantly increases the risk of lacunes, with a 2.99-fold increase observed in individuals with this condition.
  • Increased volume of white matter hyperintensities correlated with the presence of ICAS, particularly affecting deep white matter regions.
  • Cortical atrophy was more pronounced in individuals with ICAS, notably in the right superior frontal and left rostral anterior cingulate areas.
  • Lacunes associated with ICAS primarily occurred in the basal ganglia, contrasting with those without ICAS that were found in the centrum semiovale.

Abstract

Background and aims Covert MRI markers of cerebral small vessel disease (CSVD) can coexist with large artery atherosclerosis. We aimed to explore whether the spatial distributions of these markers were diverse in people with or without intracranial artery stenosis (ICAS). Methods This cross-sectional analysis included 1206 stroke-free participants (aged 55.69±9.27, 62.94% female) with brain MRI and MR angiography from community-based Shunyi cohort. We analysed the relationships between ICAS and CSVD markers. We also compared the probability maps of lacunes, cerebral microbleeds (CMB), white matter hyperintensities (WMH) and cortex morphology at a voxel/vertex-wise level in groups with and without ICAS. Results ICAS increased the risk of lacunes by 2.99-fold (95% CI 1.99 to 4.50, p<0.001), lacunes ≥3 by 5.32 times (95% CI 2.76 to 10.28, p<0.001), correlated with WMH volume (β=0.332, SE=0.059, p<0.001), WMH Fazekas scores ≥5 (OR 4.50, 95% CI 2.44 to 8.29, p<0.001) and brain parenchymal fraction (β=−0.012, SE=0.002, p<0.001), but not with CMB. ICAS is associated with lacunes in the corresponding blood supply area. Lacunes that coexist with ICAS were prone in basal ganglia, while the lacunes without ICAS appeared in centrum semiovale more often. WMH with ICAS was prone to present in deep white matter involving the bilateral pyramidal tracts and superior thalamic radiation. People with ICAS were susceptible to worse cortical atrophy of right superior frontal and left rostral anterior cingulate. No obvious distributional differences were found for CMB between the two groups. Conclusions Since ICAS may be involved in the upstream pathogenesis of lacunes, white matter lesions and cortical atrophy, the impact of ICAS should not be ignored when evaluating MRI markers of CSVD.

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Cite This Study

Pan et al. (2025) studied this question.

synapsesocial.com/papers/68d4606031b076d99fa60170https://doi.org/10.1136/svn-2025-004471
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