This retrospective analysis finds that microvascular perfusion impacts early blood pressure dynamics in acute ischemic stroke, suggesting its importance for management.
Background: Endovascular thrombectomy (EVT) is the standard treatment for acute ischemic stroke with large-vessel occlusion. However, some patients still experience early neurological deterioration or poor recovery despite successful recanalization. A potential explanation is impaired microvascular perfusion (IMP), where tissue-level flow remains insufficient despite proximal recanalization. Proposed mechanisms include microthrombi formation, endothelial injury, and blood-brain barrier disruption. In the presence of IMP, cerebral perfusion may become pressure-passive and more dependent on systemic blood pressure (BP). As BP typically rises at stroke onset to preserve perfusion, post-recanalization perfusion status may influence BP dynamics. In this study, we investigated whether post-EVT perfusion status influences early BP trajectories. Methods: We retrospectively analyzed a cohort from a single tertiary center (2014–2024) with successful recanalization (eTICI >=2b) and post-EVT MRI including DSC perfusion performed within 24 h. Post-EVT IMP was defined as the presence of a region with Tmax >6s within the recanalized territory, excluding infarct core (ADC <620x10^-6 mm^2/s). Longitudinal trends in hourly systolic BP during the first 24 h were modeled using multivariable generalized estimating equations with an exchangeable correlation structure, clustering by patient, and inclusion of a group-by-time interaction term. Results: A total of 274 patients (mean age 71.1 +/- 12.2 years; 38.7% female; median onset-to-arrival time, 2.5 h [IQR 1.2–5.3]) were included. Among those, 53 patients (19.3%) demonstrated IMP on immediate post-EVT perfusion MRI. Patients with IMP were more likely to have post-EVT eTICI 2b than those without IMP (75.5% vs. 49.8%, p<0.01). The group-by-time interaction was significant (Wald F(23, 5765)=1.55; P=.046), indicating that post-EVT BP trajectories over the first 24 h differed by IMP status. Hour-specific contrasts showed significantly higher SBP in the IMP+ group at hours 4, 8–11, and 14 (Holm-adjusted P<0.05). Conclusion: In this study, early SBP trajectories differed according to IMP, suggesting that post-EVT perfusion status may influence systemic hemodynamic responses. Immediate post-EVT perfusion MRI allowed early identification of IMP and its association with BP dynamics. These findings suggest the need for prospective studies to determine whether IMP-informed BP management improves outcomes.
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Han et al. (2026) studied this question.
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