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Peripheral Arterial Disease clinical trials

View clinical trials related to Peripheral Arterial Disease.

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NCT ID: NCT04155476 Not yet recruiting - Clinical trials for Peripheral Arterial Disease

Ultrasound Evaluation of Lower Extremity Arteries After Topical Nitroglycerin Administration

Start date: December 30, 2019
Phase: Early Phase 1
Study type: Interventional

There have not been any published studies showing the use of topical nitroglycerin on the dilatory effect on the posterior tibial or dorsalis pedis arteries. The objective of this study is to determine the response of the posterior tibial artery and dorsalis pedis artery to topical administration of nitroglycerin. This study may provide further information for the utility of this artery in the treatment of peripheral arterial disease.

NCT ID: NCT04146493 Completed - Clinical trials for Cardiovascular Diseases

Heparin-Binding Protein and Heparins

HepHep
Start date: April 1, 2019
Phase:
Study type: Observational

Heparin-Binding protein is a protein from primary and secretory granluae of white blood cells. It is released when white blood cells become activated and has been advocated as a biomarker for sepsis. The aim of this study is to find out if Heparins in clinical doses can change the level of Heparin-binding protein in plasma.

NCT ID: NCT04146155 Recruiting - Type 2 Diabetes Clinical Trials

Efficacy and Safety of Liraglutide in Type 2 Diabetes With Lower Extremity Arterial Disease

Start date: May 1, 2020
Phase: Phase 4
Study type: Interventional

Diabetic lower extremity arterial disease ( DLEAD ), is a common complication of type 2 diabetes. However, DLEAD remains less studied than other diabetic vascular complications; and only few randomised controlled trials (RCTs) have dealt with major lower-limb adverse events as prespecified endpoints. Studies have suggested that glucagon-like peptide-1 (GLP-1) analogues have a protective effect on the development of atherosclerosis, potentially mediated via the GLP-1 receptors expressed on endothelial cells, smooth muscle cells, and in monocytes/macrophages. The investigators aim to evaluate the improvement of lower extremity ischemia in patients with type 2 diabetes mellitus complicated with lower limb vascular lesions after liraglutide, compared with the standard-of-care treatment group.

NCT ID: NCT04130737 Active, not recruiting - Clinical trials for Peripheral Arterial Disease

TORUS 2 IDE Clinical Study

Start date: October 31, 2019
Phase: N/A
Study type: Interventional

The primary objective of the TORUS 2 IDE Clinical Study is to evaluate the safety and effectiveness of the TORUS Stent Graft System in the treatment of obstructive atherosclerotic lesions of the native SFA or the superficial femoral and/or proximal popliteal arteries.

NCT ID: NCT04124315 Recruiting - Clinical trials for Peripheral Artery Disease

Using Smartphone Sensor Technology to Characterize Ambulatory Patterns of Participants With Peripheral Artery Disease

Start date: November 1, 2021
Phase:
Study type: Observational

The investigators plan to use smartphone and wearable sensor technology to characterize the activity patterns of participants with peripheral artery disease (PAD) (n=24) participating in a 12-week supervised exercise training (SET) program, and incorporate the resulting data into a web-based dashboard for participants and study staff.

NCT ID: NCT04123639 Not yet recruiting - Clinical trials for Peripheral Arterial Disease

Outcomes of Endovascular Treatment of Superficial Femoral Artery In-stent Restenosis

Start date: October 1, 2019
Phase: N/A
Study type: Interventional

Lower limb peripheral arterial disease (PAD) is a common, important manifestation of systemic atherosclerosis. Stenosis or occlusions in the superficial femoral artery (SFA) may result in intermittent claudication or even critical ischemia, which may be treated by balloon angioplasty with or without stenting . Atherosclerotic disease in the femoropopliteal (FP) artery consists of perfusion to the legs and feet. Percutaneous transluminal angioplasty (PTA) has been routinely used to manage FP artery disease and is recommended as an alternative to surgical bypass. Recently, newer endovascular approaches such as covered stent, drug-eluting balloon (DEB), drug-eluting stent (DES), or catheter based atherectomy have been introduced as treatment options for FP artery disease. Nevertheless, FP artery-in stent restenosis (ISR) is still a major challenge with endovascular therapy . Although the use of peripheral arterial stents brought about a dramatic improvement in patients' clinical and procedural outcomes, the long-term outcome of stent implantation remains significantly constrained by the risk of developing in-stent restenosis (ISR) over time. Advancements in endovascular stent technology have addressed limitations associated with conventional percutaneous transluminal balloon angioplasty in patients with chronic peripheral arterial disease (PAD) of the lower limbs, such as elastic recoil,residual stenosis and flow-limiting dissection . However, a considerable proportion of patients with PAD treated with stenting will require secondary interventions due to in-stent restenosis (ISR), which is particularly common in long and complex lesions ISR refers to loss of luminal volume from an ingrowth of cells, extracellular matrix, and thrombus within the cylinder of the stented artery and 5-mm margins proximal and distal to the stent. ISR has been reported to occur in 18-40% of patients undergoing stenting in the femoropopliteal segment within the first year of treatment . The treatment of ISR is one of the major challenges in endovascular therapy for PAD. The treatment options for ISR include standard balloon angioplasty with or without repeat stenting (using bare-metal stents, stent grafts or drug-eluting stents), drug-coated or cutting balloon angioplasty, cryoplasty and directional or laser atherectomy .

NCT ID: NCT04123093 Terminated - Diabetic Foot Ulcer Clinical Trials

Safety and Efficacy of the Noxsano Wound Care Bandage

Start date: August 9, 2019
Phase: N/A
Study type: Interventional

This study is a prospective, interventional, non-randomized study designed to assess the safety and efficacy of the Noxsano Bandage (study device) in healthy subjects and wound care subjects with a diabetic lower extremity ulceration and/or arterial insufficiency lower extremity ulceration.

NCT ID: NCT04120610 Terminated - Clinical trials for Peripheral Artery Disease

FlowMet-R Blood Flow Measurement for the Diagnosis of Peripheral Artery Disease and Critical Limb Ischemia

Start date: December 9, 2019
Phase:
Study type: Observational [Patient Registry]

Non-randomized, multi-center, longitudinal study of healthy subjects and subjects with PAD who are scheduled for ABI, TBI, and either Duplex Ultrasound or Angiographic assessments in a vascular clinic.

NCT ID: NCT04113057 Terminated - Clinical trials for PAD - Peripheral Arterial Disease

Home-based Walking Program With Smart Devices

Start date: August 9, 2019
Phase: N/A
Study type: Interventional

Intermittent claudication (IC), the most common manifestation of peripheral artery disease (PAD), represents not only a significant detriment in quality of life, but also an increased risk for atherosclerotic cardiovascular disease (ASCVD), including progression of PAD, coronary artery disease (CAD) and cerebrovascular disease. Guideline directed therapy for IC includes supervised exercise, smoking cessation and optimal medical management to decrease overall risk of ASCVD. In the VA Health Care System, implementation of supervised exercise therapy through cardiac rehabilitation or physical therapy programs is limited by distances that patients must travel to VA facilities that provide these services. Furthermore, one of the most common failure points in exercise therapy programs is poor patient compliance. Improved patient participation and compliance in exercise programs for IC represents an unmet need, without which the majority of patients with life-style limiting PAD may not be receiving optimal medical management. Small studies have demonstrated the effectiveness of home-based exercise programs as an alternative to supervised exercise therapy; however, the success of the home-based exercise programs require remote coaching and/or regular provider feedback. The wide-spread availability of smart phones and smart devices has accelerated the implementation of telehealth programs that may supplement or may eventually replace in-person encounters for health care delivery. The role of provider feedback in addition to real-time feedback from smart devices remains completely unexplored. Our central hypothesis is that in individuals with IC, regular provider feedback on smart-device-based remote health monitoring data, which is available to the patient in real time, will augment the benefits of home-based exercise programs. We propose a randomized trial in patients with IC to test the central hypothesis through two Specific Aims: 1. To determine the effect of provider feedback on smart-device-based remote health monitoring data during home-based exercise programs on walking distance in patients with IC. 2. To determine the effect of provider feedback on smart-device-based remote health monitoring data during home-based exercise programs on quality of life (QOL) in patients with IC. Based on a sample size calculation to detect a 50% increase in walking distance between the 2 groups, we expect to enroll 30 patients (15 in each group). Patient participation in the study will be concluded after 12 weeks. As an exploratory aim in the study, we will also (as an optional part of the study) collect plasma before and after the 12-weeks of exercise to investigate changes in lipid levels and plasma biomarkers associated with exercise therapy. This exploratory aim will generate preliminary data for future studies.

NCT ID: NCT04110327 Recruiting - Clinical trials for Peripheral Arterial Disease

An All-Comers Observational Study of the MicroStentâ„¢ Peripheral Vascular Stent System in Subjects With Peripheral Arterial Disease

HEAL
Start date: October 31, 2019
Phase:
Study type: Observational [Patient Registry]

Non-randomized, multicenter, combined prospective and retrospective cohort analysis consisting of a single arm treated with the MicroStentâ„¢ System.