View clinical trials related to Peripheral Artery Disease.
Filter by:Sixty patients with mild-to-moderate PAD (ABI 0.4-0.9) and hypertriglyceridemia (>200 mg/dl) already treated with statins will be imaged at baseline and randomized to Lovaza and placebo for 12 months. MR imaging will be repeated at the end of the 12-month period. We hypothesize that treatment of hypertriglyceridemia in patients with PAD with Lovaza will reduce atherosclerotic plaque volume in the superficial femoral artery (SFA) by 2% over 1 year compared to placebo. Secondary aims will be to show improved plaque characteristics (thickened fibrous cap, reduced lipid-rich necrotic core, improved exercise calf muscle perfusion using first-pass contrast enhanced MRI and improved exercise treadmill performance with Lovaza compared to matching placebo.
To determine the effect of three different percutaneous revascularization strategies (Balloon Cryoplasty vs. Stent Placement vs. Atherectomy) in the treatment of lifestyle limiting lower extremity claudication
This study will test how well a new contrast agent (dye) used in magnetic resonance imaging (MRI) can help visualize totally blocked arteries that normally supply blood to the neck, arms or legs. Currently used agents work well in visualizing normal or partly blocked arteries (arteries that have some blood flowing through them), but only poorly in totally blocked arteries. This study will see if a contrast agent called gadofosveset can better brighten images of completely blocked arteries. Gadofosveset is approved in Europe for use in MRI scans, but is still considered experimental in the United States. People 18 years of age or older with known or suspected total blockage of an artery to the neck, arm or leg may be eligible for this study. Participants undergo MRI scanning with gadofosveset contrast dye. MRI uses a magnetic field and radio waves to produce images of body tissues and organs. For this procedure, the subject lies on a table that can slide in and out of the tubular scanner, wearing earplugs to muffle loud noises that occur during the scanning process. The procedure lasts about 1.5 to 2 hours, during which the subject may be asked to hold his or her breath several times for as long as 5 to 20 seconds. During the procedure, gadofosveset is injected and several kinds of MRI pictures are taken to understand better how the new agent works. Subjects may be asked to undergo a second scan using conventional MRI contrast dye
The goal of the study is to determine the safety and possible effectiveness of various doses of autologous (one's own) stem cells, delivered with a needle into the regions of the leg with poor blood flow in patients with blocked leg arteries that results in claudication (pain when walking). Stem cells are primitive cells produced by the bone marrow that can develop into blood cells or other types of cells. In addition to determining whether this new approach is safe, the diagnostic tests may offer preliminary insights into the usefulness of this approach for treating intermittent claudication - the condition where areas in the leg are lacking enough oxygen and blood flow to keep the leg muscle working well, causing pain and cramping upon walking. This study is a double-blind, randomized study to compare CD34-positive stem cells versus a placebo agent (salt water solution known as normal saline). The patient will have a 3:1 chance of their stem cells versus the placebo. Regardless of a patient receiving placebo or treatment, all patients will undergo all of the pre-treatment phases of this study, which includes the stem cell mobilization and apheresis procedure.
The main objective of this study is to assess the safety and performance of the sirolimus coated Cordis SMARTâ„¢ nitinol self expandable stent device and its delivery system in the treatment of obstructive superficial femoral artery (SFA) disease in reducing percent in-stent mean lumen diameter stenosis in de novo or restenotic native lesions as compared to the uncoated SMARTâ„¢ stent.
The goal of this study is to develop advances in cardiovascular diagnostic and treatment methods using magnetic resonance imaging (MRI), a test that uses a strong magnetic field and radio waves to show anatomic detail. For the scan, the patient lies on a table in a cylinder containing a magnetic field. He or she can communicate with a staff member at all times during the procedure. Patients 18 years of age or older who require 1) catheterization of the leg arteries for diagnosis or treatment of blocked arteries, or 2) heart catheterization for diagnosis or treatment of coronary artery disease or other heart problems may be eligible for this study. Participants will undergo one of the following procedures: Blood Flow Measurement Using Standard Techniques and MRI For patients with blockage in a leg artery, blood flow will be measured before and after successful catheter-based treatment (angioplasty or stenting) using standard venous occlusion plethysmography and a newer MRI technique. (Patients whose treatment is not successful will not undergo follow-up blood flow measurements in this study.) For venous occlusion plethysmography, a large pressure cuff is placed around the upper or lower legs. Thin elastic bands called a strain gauge are placed around the calves to measure blood blow to the legs. The pressure cuffs are inflated for 5 minutes, preventing blood from flowing to the legs, and are then deflated, allowing the blood to rush to the legs. A smaller cuff is inflated to a low pressure, and the strain gauge measures this maximum blood flow to the legs for 1 or 2 more minutes. For the new MRI technique, blood flow is measured while the patient is in the MRI scanner. Flow is first measured with the patient at rest. Then, the large pressure cuff is inflated for 5 minutes. The cuff is deflated and additional images are taken. Before the cuff is deflated, a dye called gadolinium contrast is injected into an arm vein to brighten the images. Patients may undergo six to eight cuff inflations on four to six different days. Fusion of X-Ray and MRI Images of Peripheral Arteries For patients with blockage in a leg artery Participants will undergo catheterization and MRI of the legs. Special plastic beads are taped to the leg(s) to help compare the MRI and x-ray pictures. For the catheterization procedure, x-rays of the blood vessels are taken to guide placement of the catheters. Contrast dye is injected to brighten the images of the blood vessels. These injections work well in normal and partly blocked arteries, but not in arteries that are completely blocked. For this study, patients first have an MRI scan of their legs. During the scan, gadolinium contrast dye is injected into an arm vein. Then, during the catheterization procedure, a computer aligns the MRI pictures with the x-ray pictures to see if the combined images allow the doctor to better see where to place the catheters. Fusion of X-ray and MRI Images of the Heart For patients undergoing heart catheterization will undergo MRI and heart catheterization. Special plastic beads are taped to the chest to help compare the MRI and x-ray pictures. Patients first have an MRI scan of their heart. During the scan, gadolinium contrast dye is injected into an arm vein. Then, during the catheterization procedure, a computer aligns the MRI pictures with the x-ray pictures to see if the combined images allow the doctor to learn more about the pattern of heart disease. Heart rhythm, blood pressure, heart function, and breathing will be monitored during all the MRIs.
In this study researchers will admit and evaluate patients with known or suspected heart disease referred to the Cardiology Branch of the National Heart, Lung, and Blood Institute (NHLBI). Patients participating in this study will undergo a general medical evaluation, including blood tests, urine, examination, chest x-ray and electrocardiogram (EKG). In addition, patients may be asked to have an echocardiogram (ultrasound scan of the heart) and to perform an exercise stress test. These tests are designed to assess the types and causes of patient's heart diseases and to determine if they can participate in other, specific research studies.