Basilar artery dolichoectasia was strongly associated with lacunar stroke (OR 4.67; 95% CI 1.87-13.14), whereas large-artery stenosis was associated with lower odds of lacunar stroke.
Cohort (n=229)
Effect estimate: OR 4.67 (95% CI 1.87-13.14)
BACKGROUND: Stenosis and dolichoectasia of cranial arteries likely reflect distinct mechanisms. Their contributions to lacunar stroke and cerebral small-vessel disease (cSVD) remain contentious. We investigated the associations of large-artery stenosis (LAS) and arterial widening with stroke subtype, cSVD markers, incident infarcts, and clinical outcomes. METHODS: We prospectively recruited patients with lacunar or mild nonlacunar stroke, with demographic, stroke-related, cognitive, functional, and magnetic resonance imaging (index and incident infarcts, cSVD markers) assessments at baseline and 1 year. LAS was defined as ≥50% intracranial or cervical artery stenosis; basilar artery dolichoectasia was defined by basilar artery diameter, bifurcation height, and lateral displacement; and intracranial carotid and middle cerebral artery diameters were also measured. Associations were estimated from multivariable logistic, linear, and proportional odds regression models adjusted for age, sex, and vascular risk factors. We further conducted a systematic literature review to synthesize evidence on relationships between large-artery pathology and cSVD. RESULTS: Among 229 patients (mean age, 65.9±11.1 years; 131 57.2% lacunar stroke), LAS and basilar artery dolichoectasia were present in 20.5% and 15.7%, respectively. After adjustment, LAS (odds ratio, 0.49 95% CI, 0.23-0.99) and the presence of any embolic source were associated with lower odds of lacunar versus non-lacunar stroke, and not with cSVD markers or incident infarcts. In contrast, basilar artery dolichoectasia was strongly associated with lacunar stroke (odds ratio, 4.67 95% CI, 1.87-13.14), higher cSVD scores (ordinal analysis; odds ratio, 2.57 95% CI, 1.28-5.25), incident infarcts (75% subcortical; odds ratio, 2.29 95% CI, 1.01-5.14), and greater progression of white matter hyperintensities over 1 year (β, 0.15 95% CI, 0.01-0.29 per log10-transformed volume). Similar associations were observed for wider intracranial arteries. The systematic review supported these findings. CONCLUSIONS: cSVD, including lacunar stroke, was unrelated to LAS but strongly associated with dolichoectasia and wider arteries. These findings support a nonatheromatous, intrinsic microvascular pathology, particularly segmental arteriolar disorganization, as the principal mechanism of lacunar stroke and cSVD. Mechanism-specific diagnostic and therapeutic strategies are warranted.
This study challenges the traditional understanding of lacunar stroke, suggesting that arterial widening (dolichoectasia) may be a more important factor than stenosis. These findings have sparked debate about the underlying mechanisms of small vessel disease and the optimal strategies for prevention.
Han et al. (Wed,) conducted a cohort in Lacunar or mild nonlacunar stroke (n=229). Basilar artery dolichoectasia and large-artery stenosis was evaluated on Lacunar versus non-lacunar stroke (OR 4.67, 95% CI 1.87-13.14). Basilar artery dolichoectasia was strongly associated with lacunar stroke (OR 4.67; 95% CI 1.87-13.14), whereas large-artery stenosis was associated with lower odds of lacunar stroke.