Coronary angioplasty in high risk patients with percutaneous cardiopulmonary support
M U Sivananthan1, M R Rees, T F Browne
1Department of Cardiac Radiology, Regional Cardiothoracic Centre, Killingbeck Hospital, Leeds, U.K.
Insights
Cardiopulmonary Support (CPS) safely enhanced high-risk percutaneous transluminal coronary angioplasty (PTCA). This approach improved patient symptoms and outcomes, demonstrating its value in complex cardiac interventions.
Area of Science:
- Cardiology
- Interventional Cardiology
- Cardiovascular Surgery
Background:
- High-risk percutaneous transluminal coronary angioplasty (PTCA) poses significant challenges.
- Patient selection criteria are crucial for managing complex coronary interventions.
Purpose of the Study:
- To evaluate the safety and efficacy of elective cardiopulmonary support (CPS) during high-risk PTCA.
- To assess patient outcomes and complications associated with CPS-assisted PTCA.
Main Methods:
- Elective cardiopulmonary support (CPS) was used in 13 high-risk patients undergoing PTCA.
- Selection criteria included low ejection fraction, extensive viable myocardium, or refusal of bypass surgery.
- PTCA was attempted on 35 lesions in 12 patients.
Main Results:
- A technical success rate of 82.9% was achieved for lesion dilation.
- All surviving patients (11/12) showed symptomatic improvement at a mean follow-up of 18.5 months.
- The most common complication was local hematoma, with all patients requiring transfusion.
Conclusions:
- Cardiopulmonary support (CPS) enhances the safety of performing PTCA in high-risk patient populations.
- CPS-assisted PTCA can lead to improved clinical outcomes and symptom relief.
- Careful patient selection and management are essential for CPS-assisted procedures.
Abstract:
Cardiopulmonary Support (CPS) was employed electively in 13 patients during high risk percutaneous transluminal coronary angioplasty (PTCA) in accordance with a selection criteria, which included at least two of the following; (i) left ventricular ejection fraction of less than 35%, (ii) target vessel(s) supplying more than 50% of the viable myocardium, and (iii) patients refused coronary bypass surgery. The mean age of the patients was 56.8 +/- 10.7 years (range 39-77). PTCA was attempted in a total of 35 lesions in 12 patients; 29 lesions were successfully dilated (technical success rate of 82.9%). On average, 2.7 lesions were attempted in each patient, and 2.2 lesions were successfully dilated per patient. In one patient the procedure was abandoned due to dissection of the iliac artery during cannulation. One patient died of a large pulmonary embolism 72 h after the procedure. All the surviving 11 patients who had successful PTCA on CPS showed symptomatic improvement during a mean follow-up period of 18.5 +/- 4.3 months (range 11 to 24 months). The commonest complication encountered following the CPS-assisted PTCA was local haematoma (nine of 13 patients), but all patients required transfusion due to significant periprocedural blood loss. Our early experience suggests that CPS enhances the safety of undertaking PTCA in high risk patients.
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