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Published on: January 23, 2019
Relevance of Carotid Reocclusion in Tandem Lesions
Elena Zapata-Arriaza1,2, Manuel Medina-Rodriguez2,3, Joaquin Ortega-Quintanilla1,2
1Interventional Neurorradiology Department, University Hospital Virgen del Rocio.
Insights
Carotid reocclusion after mechanical thrombectomy for stroke is linked to poorer outcomes. Factors like good recanalization, collateral circulation, and stent use reduce reocclusion risk.
Area of Science:
- Neurology
- Interventional Neuroradiology
- Vascular Surgery
Background:
- Carotid reocclusion (CRO) after mechanical thrombectomy (MT) for acute ischemic stroke (AIS) due to tandem lesions (TL) or isolated internal carotid occlusion (ICO) is linked to adverse clinical outcomes.
- Understanding predictors of CRO is crucial for improving patient management.
Purpose of the Study:
- To analyze the predictors of carotid reocclusion (CRO) after mechanical thrombectomy (MT).
- To evaluate the clinical impact of CRO on functional outcomes in patients with acute ischemic stroke (AIS).
Main Methods:
- Retrospective analysis of 1304 patients with anterior circulation strokes undergoing MT between 2017-2020.
- Included patients with isolated internal carotid occlusion (ICO) or tandem lesions (TL).
- Assessed CRO via ultrasound within 24 hours post-MT; analyzed predictors and clinical outcomes.
Main Results:
- Carotid reocclusion (CRO) occurred in 5% of 218 patients with TL or ICO.
- Independent predictors of CRO included successful recanalization (TICI 2b-3), pial collateral circulation, stent deployment, and general anesthesia.
- CRO was associated with a trend towards worse functional outcomes at 3 months (mRS 3-6).
Conclusions:
- Carotid reocclusion (CRO) significantly impacts functional outcomes after mechanical thrombectomy (MT) for specific stroke types.
- Successful recanalization, collateral circulation, stent use, and general anesthesia are key factors influencing CRO.
- Identifying these predictors can guide treatment strategies to improve outcomes for stroke patients.
Aims:
Carotid reocclusion (CRO) after mechanical thrombectomy (MT) in acute ischemic stroke (AIS) due to tandem lesion (TL) or isolated internal carotid occlusion (ICO) is associated with worse clinical outcomes. Our aim was to analyze the predictors and clinical impact of CRO.
Methods:
A retrospective single-center analysis of all patients with anterior circulation strokes who underwent MT prospectively included in a registry between 2017 and 2020 was performed. ICO and TL as stroke causes were included. Stent deployment was left to the discretion of the interventionist. All patients received at least intravenous aspirin during MT. CRO was assessed using ultrasound within the first 24 h after MT. Efficacy and safety of stenting were assessed.
Results:
Among 1304 AIS cases, 218 (16.7%) were related to TL or ICO. Of them, 5% (n=11) were associated with internal CRO 24 h after the endovascular procedure. After adjusting per confounders, multivariate analysis showed that the independent variables associated with CRO were the TICI recanalization grade [TICI 2b-3; OR 0.1, 95% confidence interval (CI) 0.01-0.89, p=0.040], pial collateral circulation presence (OR 0.09, 95% CI 0.02-0.45, p=0.03), stent deployment during MT (OR 0.17, 95% CI 0.03-0.84, p=0.030), and general anesthesia use (OR 2.92, 95% CI 1.13-7.90, p=0.034). CRO showed a trend toward worst outcomes (modified Rankin scale 3-6) at 3 months (OR 3.4, 95% CI 0.96-12, p=0.057). After multivariate analysis, variables independently associated with worse outcomes at 90 days were intrastent platelet aggregation phenomena during endovascular therapy, admission National Institute of Health Stroke Scale, and age. Conversely, intravenous thrombolysis and TICI 2b-3 recanalization grade were identified as independent predictors of good outcomes at 90 days.
Conclusions:
CRO has a relevant clinical impact in our study, associating lower rates of good functional outcomes at 3 months. Independent factors of CRO were the recanalization degree, presence of pial collateral circulation, use of a stent as a protective factor, and use of general anesthesia during thrombectomy.
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