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1.
Journal of Geriatric Cardiology ; (12): 126-130, 2014.
Article in Chinese | WPRIM | ID: wpr-473706

ABSTRACT

Objectives To assess the impact on stent implantation rate and mid-term outcomes of prolonged high pressure angioplasty of femoropopliteal lesions. Methods We retrospectively enrolled 620 consecutive patients from January 2011 to December 2011 (75.6 ±12.3 years, 355 males, 76.5%in Rutherford class 5-6), referred for critical limb ischemia and submitted to prolonged high-pressure angioplasty of femoropopliteal lesions. The definition of prolonged high-pressure angioplasty includes dilation to at least 18 atm for at least 120 s. Proce-dural data, and clinical and instrumental follow-up were analyzed to assess stent implantation rate and mid-term outcomes. Results The preferred approach was ipsilateral femoral antegrade in 433/620 patients (69.7%) and contralateral cross-over in 164/620 (26.4%) and pop-liteal retrograde+femoral antegrade in 23/620 (3.7%). Techniques included subintimal angioplasty in 427/620 patients (68.8%) and endolu-minal angioplasty in 193/620 patients (31.2%). The prolonged high pressure balloon angioplasty procedure was successful in 86.2%(minor intra-procedural complications rate 15.7%), stent implantation was performed in 74 patients (11.9%), with a significant improvement of ankle-brachial index (0.29 ±0.6 vs. 0.88 ±0.3, P<00.1) and Rutherford class (5.3 ±0.8 vs. 0.7 ±1.9, P<0.01), a primary patency rate of 86.7%, restenosis of 18.6%on Doppler ultrasound and a target lesion revascularization of 14.8%at a mean follow-up of 18.1 ±6.4 months (range 1-24 months). Secondary patency rate was 87.7%. Conclusions Prolonged high pressure angioplasty of femoropopliteal lesions appears to be safe and effective allowing for an acceptable patency and restenosis rates on mid-term.

2.
Journal of Geriatric Cardiology ; (12): 73-76, 2006.
Article in Chinese | WPRIM | ID: wpr-472049

ABSTRACT

Background and objectives Peripheral vascular disease (PVD) is a major risk factor in candidates for cardiac surgery and can impact morbidity and mortality in the perioperative and follow-up period. Elderly patients with PVD may benefit from endovascular treatment prior to cardiac surgery. We sought to assess the common clinical settings requiring prophylactic endovascular treatment before coronary surgery in elderly patients, the results, and the mid-term impact on subsequent revascularization. Methods Between November 2002 and June 2006, 37 patients (25 males, mean age 79.9±8.3 years, mean serum creatinine 1.9±0.6 mg/dl) underwent endovascular repair of PVD before cardiac surgery. For each patient, diagnostic methods, indications for intervention, types of interventions, procedural success, and complications were recorded. Results Four clinical settings were identified: renal artery stenting prior to coronary surgery (7 patients), iliac artery angioplasty and stenting (10 patients) in order to facilitate aortic balloon pump insertion after surgery, subclavian artery angioplasty and stenting prior to utilization of ipsilateral arterial conduits bypass surgery (5patients), and carotid artery stenting before coronary surgery (15 patients). Technical success was achieved in all patients (100%);complications included brachial artery occlusion (1 patient), minor stroke (2 patients), contrast nephropathy (1 patient), and minor bleeding at the puncture site (3 patients). All patients underwent successful coronary or valvular surgery; no patients died in the perioperative period. After a mean follow-up of 26.6±3.1 months, all patients are alive and free from anginal symptoms or valvular dysfunction without clinical or Doppler ultrasonography evidence of restenosis of the implanted peripheral vascular stents. Conclusions It is not unusual for elderly patients who are candidates for cardiac surgery to require endovascular intervention for significant PVD prior to coronary bypass or valvular surgery. The results showed a low complication rate. The cardiologists have a fundamental role,not only in the diagnosis of peripheral vascular stenosis, which was seen frequently in patients with significant CAD, but also in the appropriate endovascular management of these high-risk patients.

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