Gabriel Broocks, Helge Kniep, Maarten G. Lansberg, Christian Heitkamp, Vivek Yedavalli, Hermann Krähling, Emily Hoffmann, Lukas Meyer, André Kemmling, Paul Stracke, Gregory W. Albers, Jens Fiehler, Jens Minnerup, Karsten Alfke, Jeremy J. Heit, Tobias D. Faizy
BACKGROUND AND OBJECTIVES: Recent randomized trials reported no overall functional benefit of endovascular treatment (EVT) for distal medium-vessel occlusion (DMVO) and did not identify consistent effect modifiers to guide patient selection. Consequently, the role of EVT-particularly for M2 occlusions-remains controversial. We investigated whether baseline clinical severity modifies the association between successful recanalization and 90-day outcome in patients with M2 occlusion. METHODS: Multicenter retrospective cohort study at 2 tertiary stroke centers including consecutive adults with acute ischemic stroke due to M2 occlusion (January 2015-January 2023) triaged by multimodal CT and treated with EVT. The primary end point was functional independence (modified Rankin Scale [mRS] ≤ 2) at 90 days. Secondary end points included symptomatic intracerebral hemorrhage (sICH), mRS 0-1, and penumbra salvage volume (PSV). The primary analysis used multivariable logistic regression with baseline National Institutes of Health Stroke Scale (NIHSS) modeled linearly and an NIHSS×recanalization (modified Thrombolysis in Cerebral Infarction [mTICI] ≥2b) interaction term. Johnson-Neyman probing and inverse probability weighting (IPW) were applied; a supplementary restricted cubic spline analysis was performed to explore potential nonlinearity. RESULTS: = 0.42). DISCUSSION: In M2 occlusions, the magnitude of the association between successful recanalization and functional independence was larger at higher NIHSS and not reliably demonstrable at lower NIHSS. These findings support a severity-informed, individualized EVT approach while remaining hypothesis-generating rather than prescriptive for specific NIHSS thresholds. Major limitations include the retrospective observational design and potential residual confounding.