View clinical trials related to Peripheral Arterial Disease.
Filter by:Studies have shown that intermittent negative pressure (INP) can induce short-term increase in blood flow in the extremity in patients with peripheral artery disease (PAD). Case reports also have indicated that INP treatment has beneficial hemodynamic and clinical effects in patients with lower limb ischemia and hard to heal leg ulcers. However, the clinical and physiological effects of long-term INP treatment are not well documented and needs further investigation.
To assess the safety and performance of the VaSecure drug-coated PTA balloon catheter in the treatment of patients with Chronic Limb Threatening Ischemia (CLTI) of the lower limb below the knee (BTK)
This is a randomized controlled trial with blinding (for the observer who evaluates treatment goals). With two groups to study. A group of patients with conventional therapy for the treatment of PAD (Platelet antiaggregant, statin, cilostazol in case of claudication) and the other group of patients with conventional therapy for treatment of PAD plus cell therapy with objective to evaluate the microvascular effect after the application of cell therapy with a hematopoietic stem cell concentrate in patients with PAD with non-critical ischemia and Diabetes. Perform evaluations of the microcirculation by means of TcPO2 at 30, 60, 90 and 180 days after the experimental maneuver (cell therapy) and conventional therapy.
To evaluate the safety and effectiveness of the Cardio Flow FreedomFlowâ„¢ Orbital Circumferential Atherectomy System for atherosclerotic plaque removal and vessel compliance modification in de novo native target lesions in the peripheral vasculature of the lower extremities.
The aim of this clinical study is to 1) establish a healthy database for nuclear perfusion imaging of the lower extremities and 2) assess the prognostic value of radiotracer-based perfusion imaging for predicting clinical outcomes in patients with peripheral artery disease (PAD) who are undergoing lower extremity revascularization procedures. We hypothesize that radiotracer imaging of the lower extremities will provide a sensitive non-invasive imaging tool for quantifying regional abnormalities in skeletal muscle perfusion and evaluating responses to medical treatment.
The prevalence of peripheral arterial disease (PAD) is greater than 15%. PAD is associated with an increased risk of cardiovascular death, coronary heart disease and stroke, with a mortality rate of 5% per year. Most clinical evidence supports the idea that having normal vitamin D reduces cardiovascular risk. The data suggests that normalizing vitamin D levels would have a significant impact on public health, reduce costs and help control the incidence and prevalence of cardiovascular disease. There is also a plausible physiological theory, supported by numerous observational studies, that vitamin D supplementation should be effective in improving cardiovascular outcomes, such as blood pressure, arterial stiffness, atherosclerosis, endothelial function, and clinical events. The investigators hypothesize that routine screening for vitamin D deficiency and supplementation in case of hypovitaminosis D is effective for improving the maximum walking distance after 12 weeks of treatment in stage 2 PAD patients .
This is a proof-of-concept study to collect images to train a CADe algorithm to predict the correct level of amputation in individuals scheduled for amputation secondary to PAD.
Fifty patients will be treated with Solaris Endoprosthesis and followed up to 2 years with Walking Impairment Questionnaire and Doppler Ultrasound evaluation in 30 days, 6 months and 12 months.
This study evaluates the local inflammatory and resolution response of patients undergoing peripheral vascular intervention like an angioplasty of the superficial femoral artery (SFA) or popliteal artery, or stenting of the iliac artery or SFA, through the use of Positron emission tomography-magnetic resonance imaging (PET/MRI). PET/MRI will be performed prior to intervention, one day and one week after intervention.
This clinical investigation is intended to evaluate the ability of a magnetic cardiac positioning system to decrease medical radiation exposure on a peripheral angioplasty procedure in patients with a peripheral artery stenosis.