Ipsilateral carotid bypass outcomes in hostile neck anatomy
Andres Guerra1, Ashish K Jain1, Mark K Eskandari1
1Northwestern Feinberg School of Medicine, Division of Vascular Surgery, Surgery Department, Chicago, Ill.
Insights
Ipsilateral carotid bypass effectively reconstructs complex carotid pathology. Hostile neck anatomy requires specific conduits and muscle flap coverage, with no increased perioperative risk but longer hospital stays.
Area of Science:
- Vascular Surgery
- Neurosurgery
- Surgical Oncology
Background:
- Carotid artery disease presents complex challenges requiring advanced surgical solutions.
- Ipsilateral carotid bypass is a critical intervention for carotid reconstruction.
Purpose of the Study:
- To compare outcomes of ipsilateral carotid bypass in patients with hostile versus normal neck anatomy.
- To evaluate the effectiveness of different conduits and reconstructive techniques.
Main Methods:
- Single-center retrospective review of 48 ipsilateral extracranial carotid bypasses (1998-2018).
- Analysis of patient data including neck anatomy, surgical indications, conduits used, and perioperative outcomes.
- Comparison of outcomes between patients with hostile neck anatomy (prior irradiation or surgery) and normal neck anatomy.
Main Results:
- Of 41 patients, 25 had hostile neck anatomy; 12 required pectoralis muscle flaps.
- Superficial femoral artery conduits were exclusively used in the hostile neck group (P=.03).
- 30-day stroke and myocardial infarction rates were 4.88% each, occurring only in the hostile neck group. No 30-day mortality.
- Muscle flaps, often for infected patches (P=.02), did not increase perioperative risk but extended hospital stay (7 vs 3 days, P=.04).
Conclusions:
- Ipsilateral carotid bypass is effective for carotid reconstruction in complex pathologies.
- Conduit selection should be tailored to specific indications.
- Muscle flap coverage is a valuable option for hostile neck settings when primary closure is not feasible.
Objective:
To determine differences in outcomes among patients undergoing ipsilateral carotid bypass with hostile or normal neck anatomy.
Methods:
Single-center retrospective review of all ipsilateral extracranial carotid bypasses performed between 1998 and 2018.
Results:
Forty-eight patients underwent ipsilateral carotid bypass from the common carotid artery to either the internal carotid artery or carotid bifurcation during the study period. Seven patients were excluded owing to either a lack of follow-up or missing data. The indications for intervention included infected patches, aneurysmal degeneration, symptomatic and asymptomatic stenosis or restenosis, carotid body tumors, neck malignancy, and trauma. In 25 procedures (61%), there was a hostile neck anatomy defined as a prior history of external beam neck irradiation or neck surgery. Among this group, 12 pectoralis muscle flaps were performed for reconstructive coverage. Conduits included polytetrafluorethylene (n = 21), great saphenous vein (n = 9), superficial femoral artery (n = 7) and arterial homograft (n = 4). All superficial femoral artery conduits were used in the hostile neck group (P = .03). The overall mean time of follow-up was 22 months, with all bypasses remaining patent with no significant clinical stenosis. The 30-day ipsilateral stroke and myocardial infarction rates were 4.88% each, all within the hostile neck group, with no 30-day mortalities for the entire cohort. One-third of the muscle flaps were performed in the setting of infected patches (P = .02) with no significant differences in perioperative outcomes with use. The overall median hospital length of stay was significantly increased in patients receiving muscle flap coverage (3.0 vs 7.0 days; P = .04).
Conclusions:
In patients with a complex carotid pathology, ipsilateral carotid bypass is an effective solution for carotid reconstruction. Different conduits should be used depending on the indication. Muscle flap coverage should be considered in hostile settings when primary wound closure is not feasible.
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