View clinical trials related to Peripheral Vascular Diseases.
Filter by:This study is designed to examine the added benefits of weight loss to an exercise program in older obese Veterans with peripheral arterial disease. The investigators want to determine if weight loss in addition to exercise will 1) improve walking ability to a greater extent than exercise alone and 2) determine the underlying reasons why walking ability improves by measuring blood flow and the amount of muscle in the leg muscles.
The purpose of this study is to determine if an MRI technique called Blood Oxygen Level Dependent, or BOLD, can be used to evaluate blood flow in the leg before and after treatment with standard endovascular therapy in patients with chronic lower limb ischemia.
The purpose of this study is to assess the efficiency of outpatient surgery compared to conventional hospitalization in endovascular treatment of occlusive arterial disease. A cost-utility analysis will be conducted from a societal perspective. Patients referred for peripheral arterial disease (PAD) will be randomized in two arms and a 3 months follow-up will be performed.
The aim of the study is to assess the safety and efficacy of the use of the Eximo's B-Laserâ„¢ catheter in subjects affected with Peripheral Artery Disease (PAD) in lower extremity arteries.
Dual antiplatelet therapy (DAPT) with aspirin and a P2Y12 receptor inhibitor, more frequently clopidogrel, represents the standard of care for the long-term secondary prevention of atherothrombotic events in patients with myocardial infarction (MI) or peripheral arterial disease (PAD). However, rates of ischemic recurrences remain high. Vorapaxar is a protease-activated receptor (PAR)-1 inhibitor, which exerts potent inhibition of thrombin-mediated platelet aggregation. Patients with diabetes mellitus (DM) are known to be at increased risk of recurrent atherothrombotic events, which translates into worse outcomes, despite the use of standard of care therapy. This is in part due to the hyperreactive platelet phenotype, which characterizes DM patients, and to inadequate response to oral antiplatelet agents, including clopidogrel. Therefore, vorapaxar is an attractive treatment option for DM patients with a prior MI. The pharmacodynamic (PD) effects of vorapaxar in DM patients and how these may differentiate from non-DM patients has not been explored. Further, the role of vorapaxar as part of a dual antithrombotic treatment regimen combined with clopidogrel (and stopping aspirin) represents another important area of clinical interest. The proposed prospective, parallel-design study conducted in patients post-MI or with PAD with and without DM will aim the assess the pharmacodynamic effects of vorapaxar in addition to standard DAPT with aspirin and clopidogrel as well as in combination with clopidogrel only following aspirin withdrawal.
The aim of this clinical trial is to evaluate the safety and efficacy of the novel Luminor® paclitaxel drug-eluting balloon (iVascular, S.L.U., Barcelona, Spain) in inhibiting restenosis and in ensuring long-term patency.
The objective of this clinical investigation is to evaluate the clinical outcome (up to 12 months) of treatment by means of stenting with the RoadSaver (Terumo) in subjects at high risk for carotid endarterectomy requiring carotid revascularization due to significant extra-cranial carotid artery stenosis.
Some studies have reported improved vascular function with the supplementation of L-arginine in participants with cardiovascular disease (CVD). Several clinical studies have also begun the investigation of L-arginine supplementation in participants with peripheral artery disease (PAD). This is particularly important as currently there are limited options available to medically manage intermittent leg pain resulted from PAD. Although some of these short-term clinical trials suggested that oral L-arginine improved walking distance or improved walking speed in participants with PAD, these results were not consistent. Further, only 1% of the oral supplemented L-arginine is available for the NO production as the rest is metabolised by the body. A better way to provide the body with substrate to produce NO is therefore needed. The natural amino acid and food component, L-citrulline has been suggested to be a good candidate for this purpose. L-citrulline, named after watermelon citrullus vulgaris from which it was first isolated, is a natural precursor of L-arginine. Studies have shown that L-citrulline is metabolised by the body to a lesser degree compared to L-arginine and hence is an effective precursor of arginine in peripheral tissues, including endothelial cells. Oral L-citrulline supplementation also eliminates some of the unwanted effects associated with oral arginine supplementation and it is well tolerated without known side effects. In addition, L-citrulline is a supplement that is available over-the-counter. Thus, oral supplementation of L-citrulline may be a new intervention strategy in participants with PAD. The investigators hypothesize that the oral food supplement L-citrulline, unlike L-arginine, reverses endothelial dysfunction. In a multinational, multicenter, double blinded, randomised, placebo-controlled cross-over trial the effects of L-citrulline in peripheral artery disease will be investigated.
Some people experience a cramp-like leg pain during walking that is relieved only by rest. This is called intermittent claudication (IC) and it is a common symptom of peripheral arterial disease. Patients with IC struggle to walk, which in turn lowers their quality of life. The intensity of IC pain experienced during walking depends on several factors, including the type of footwear worn. For example, non-supportive shoes may make the calf muscles work harder during walking, leading to earlier and more-severe symptoms of IC. A member of the research team has developed a shoe that reduces the work done by the lower-leg muscles during walking. Preliminary data indicate that, when wearing these "unloading shoes", people with IC were able to walk further without pain as compared with when wearing a normal pair of shoes. The current project aims to provide further information on the usefulness and acceptability of these shoes. Forty people with IC will complete a set of three walking tests on two separate occasions; once whilst wearing the unloading shoes, and once whilst wearing some normal shoes. The participants will then be given a pair of unloading or normal shoes to wear for two weeks, after which we will collect information on how acceptable the shoes were to wear via a survey of all participants and one-to-one interviews with a subset of participants.
The GoldenFlow (Lifetech Scientific, Shenzhen, China) is a novel woven-nitinol stent designed to have superior radial strength, flexibility and durability compared to standard nitinol stents for femoropopliteal lesions. This is a first-in-man study to evaluate the safety and efficacy of GoldenFlow woven-nitinol stent for intraluminal treatment of peripheral vascular disease in the femoropopliteal arteries.