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Vascular Balloon Injury and Intraluminal Administration in Rat Carotid Artery
Published on: December 23, 2014
Hemodynamic instability during carotid artery stenting: the relative contribution of stent deployment versus balloon
Miguel Bussière1, Stephen P Lownie, Donald Lee
1Division of Neuroradiology, Department of Medical Imaging, The Ottawa Hospital Civic Campus, C2, Room 2174, 1053 Carling Avenue, Ottawa, Ontario, Canada, K1Y 4E9. mbussiere@toh.on.ca
Insights
Avoiding balloon angioplasty during carotid stenting significantly reduces hemodynamic instability. This approach lessens bradycardia and hypotension, improving patient outcomes in carotid artery procedures.
Area of Science:
- Cardiovascular Medicine
- Interventional Cardiology
- Neurosurgery
Background:
- Hemodynamic instability complicates up to 40% of carotid angioplasty and stenting procedures.
- Previous research showed self-expanding stents can dilate stenosed carotid arteries without balloons.
Purpose of the Study:
- To test the hypothesis that eliminating balloon use during carotid stenting reduces hemodynamic instability.
- To compare the incidence of hemodynamic complications between stenting alone and stenting with angioplasty.
Main Methods:
- Ninety-seven high-risk patients with symptomatic severe carotid stenosis were treated aiming for stent-only placement.
- Seventy-seven patients (79%) received stent placement alone; 20 (21%) required additional balloon angioplasty.
Main Results:
- Stenting alone resulted in intraprocedural bradycardia in 38% and hypotension in 1%.
- Balloon angioplasty was associated with higher rates of bradycardia (70%) and hypotension (20%).
- Post-treatment hemodynamic instability occurred in 32% with stenting alone versus 75% with balloon angioplasty.
Conclusions:
- Hemodynamic instability is more frequent when balloon angioplasty is required during carotid artery stenting.
- Eliminating balloon use in carotid stenting decreases the incidence of hemodynamic complications.
Object:
Hemodynamic instability may complicate carotid angioplasty and stenting in up to 40% of patients. The authors have previously demonstrated that primary self-expanding stent placement alone can gradually dilate severely stenosed carotid arteries without the use of balloons. The authors hypothesized that eliminating the balloon would reduce carotid baroreceptor stimulation, thereby decreasing the incidence of hemodynamic instability.
Methods:
Ninety-seven high surgical risk patients with symptomatic, severely stenosed carotid arteries were treated with the intention of using a self-expanding stent alone. Seventy-seven arteries (79%) were treated with stenting alone, and 20 required angioplasty (21%).
Results:
Intraprocedural bradycardia (heart rate < 60 bpm) developed in 29 patients (38%) and hypotension (systolic blood pressure < 90 mm Hg) occurred in 1 patient (1%) treated with stenting alone. Fourteen patients (70%) who underwent angioplasty and stenting had bradycardia, and hypotension developed in 4 (20%). Atropine, glycopyrrolate, or vasopressors were required in 8% of patients who received stenting alone, compared to 30% of patients who underwent angioplasty. In the first 24 hours after treatment, hypotension or bradycardia developed in 25 patients (32%) who had undergone stent placement alone, and in 15 patients (75%) after stent placement and balloon angioplasty. There was no difference in the occurrence of intra- or postprocedural hypertension (systolic blood pressure > 160 mm Hg) between patients treated with stenting alone or stenting and balloons. Factors independently associated with hemodynamic depression included baseline heart rate and balloon use.
Conclusions:
Hemodynamic instability during and after carotid artery stenting was observed more frequently when balloon angioplasty was required than when stent placement was performed without concurrent balloon angioplasty.
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