Completion Arteriogram Following Carotid Endarterectomy Yields Lower Perioperative Stroke Rate
Nicholas J Madden1, Keith D Calligaro1, Matthew J Dougherty1
1Section of Vascular Surgery, 6572Pennsylvania Hospital, Philadelphia, PA, USA.
Insights
Routine completion arteriography (CA) after carotid endarterectomy (CEA) is safe and effective. This study suggests CA may halve the perioperative stroke rate, improving patient outcomes after CEA.
Area of Science:
- Vascular Surgery
- Interventional Radiology
- Neurosurgery
Background:
- The utility of completion imaging after carotid endarterectomy (CEA) is debated.
- Routine completion arteriography (CA) is not universally adopted.
- This study evaluates the impact of routine CA on patient outcomes.
Purpose of the Study:
- To assess the safety and efficacy of routine completion arteriography (CA) following carotid endarterectomy (CEA).
- To determine the rate of intraoperative findings requiring revision.
- To evaluate the impact of routine CA on perioperative stroke and death rates.
Main Methods:
- Retrospective review of a prospectively maintained institutional database.
- Analysis of 1439 isolated CEAs performed with routine CA.
- Data collection included patient demographics, lesion characteristics, arteriographic findings, interventions, and perioperative outcomes.
Main Results:
- No complications were reported related to arteriography.
- Abnormalities requiring revision were identified in 1.7% of cases (e.g., residual stenosis, intimal flaps, kinks, thrombus).
- The overall 30-day stroke, death, and combined stroke/death rates were 1.5%, 0.5%, and 1.9%, respectively, with a lower rate for asymptomatic lesions.
Conclusions:
- Routine completion arteriography (CA) is a safe and simple procedure following carotid endarterectomy (CEA).
- Intraoperative revision based on CA findings may reduce the perioperative stroke rate.
- This study suggests routine CA may have halved the perioperative stroke rate from 3.2% to 1.5%.
Abstract:
Introduction: Completion imaging following carotid endarterectomy (CEA) remains controversial. We present our experience performing routine completion arteriography (CA). Methods: A retrospective review of our prospectively maintained institutional database was performed for patients undergoing isolated CEA. Results: 1439 isolated CEAs with CA were performed on 1297 patients. CEA was for asymptomatic lesions in 70% (1003) of cases. There were no complications related to arteriography. An abnormal arteriogram documented significant abnormalities in the internal carotid artery (ICA) and prompted revision in 1.7% (24/1439) of cases: 20 unsatisfactory distal endpoints of the endarterectomy (12 residual stenoses, 7 intimal flaps, and 1 dissection), 3 kinks or stenoses within the body of the patch, and 1 thrombus. Of the 20 distal endpoint lesions, stent deployment was used in 17 cases and patch revision in 3 cases. The other 4 cases were treated by patch angioplasty (3) or thrombectomy (1). None suffered a perioperative stroke. The overall 30-day stroke, death, and combined stroke/death rate for the 1439 patients in our series was 1.5% (22), .5% (7), and 1.9% (27), respectively. The combined stroke/death rate for asymptomatic lesions was 1.1% (11/1003) and for symptomatic lesions was 2.5% (11/436). Of the 22 strokes in the entire series (all with normal CA), 15 were non-hemorrhagic strokes ipsilateral to the CEA; 14 were confirmed to have widely patent endarterectomy sites by CT-A (13) or re-exploration and repeat arteriography (1). The occluded site was re-explored and underwent thrombectomy, but no technical problems were identified. The remaining strokes were hemorrhagic (4 reperfusion syndrome and 1 surgical site bleeding) or contralateral to the CEA (2). Conclusion: Although not all patients in this series who underwent intraoperative revision due to abnormal CA might have suffered a stroke, performing this simple and safe study may have halved our overall perioperative stroke rate from 3.2% to 1.5%.
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