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Peripheral Arterial Disease clinical trials

View clinical trials related to Peripheral Arterial Disease.

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NCT ID: NCT03521843 Recruiting - Clinical trials for Peripheral Artery Disease

LDD in Treatment of Femoropopliteal ISR

Start date: January 1, 2018
Phase: N/A
Study type: Interventional

This study will evaluate the effectiveness and safety of local drug delivery using TAPAS balloon catheter system in the treatment of femoropopliteal in-stent restenosis. Patients with femoropopliteal in-stent restenosis will randomly receive balloon dilation or balloon dilation plus local drug delivery using balloon catheter system. Their clinical outcomes (e.g. 12-month late lumen loss or late lumen loss at secondary intervention within 12 months, 6-month and 1-year patency rate of target vessel) in 1 year after the treatment will be compared.

NCT ID: NCT03512912 Recruiting - Clinical trials for Peripheral Arterial Disease

Transcutaneous Electrostimulation for Intermittent Claudication Supervised Walking Therapy for Intermittent cLAudication

TESLA
Start date: May 2018
Phase:
Study type: Observational

Prospective mono-centric trial on patients with peripheral arterial disease and intermittent claudication that receive supervised exercise therapy (group 1) vs. supervised exercise therapy + daily transcutaneous electro-stimulation of the calf muscles.

NCT ID: NCT03506633 Recruiting - Clinical trials for Peripheral Arterial Disease

Impacts of Mitochondrial-targeted Antioxidant on Peripheral Artery Disease Patients

Start date: September 5, 2018
Phase: N/A
Study type: Interventional

Title: Impacts of mitochondrial-targeted antioxidant on leg blood flow and skeletal muscle mitochondrial function in peripheral artery disease patients. Peripheral artery disease (PAD) is a common cardiovascular disease, in which narrowed arteries reduce blood flow to the limbs, causing pain, immobility and in some cases amputation or death. PAD patients have shown higher levels of systemic and skeletal muscle inflammation due to the impaired oxygen transfer capacity of these blood vessels. This attenuated oxygen transfer capacity causes hypoxic conditions in the skeletal muscle and results in mitochondrial dysfunction and elevated reactive oxygen species (ROS). These harmful byproducts of cell metabolism are the major cause of intermittent claudication, defined as pain in the legs that results in significant functional limitations. One potential defensive mechanism to these negative consequences may be having higher antioxidant capacity, which would improve blood vessel vasodilatory function, enabling more blood to transfer to the skeletal muscles. Therefore, the purpose of this project is to examine the impact of mitochondrial targeted antioxidant (MitoQ) intake on oxygen transfer capacity of blood vessels, skeletal muscle mitochondrial function, leg function, and claudication in patients with PAD. Blood vessel oxygen transfer capacity in the leg will be assessed in the femoral and popliteal arteries. Skeletal muscle mitochondrial function and ROS levels will be analyzed in human skeletal muscle via near infrared spectroscopy and through blood samples. Leg function will be assessed by walking on a force platform embedded treadmill and claudication times will be assessed with the Gardner maximal walking distance treadmill test.

NCT ID: NCT03506607 Recruiting - Clinical trials for Peripheral Arterial Disease

Hypoxic Exercise in Lower Extremity Artery Disease

Start date: January 23, 2020
Phase: N/A
Study type: Interventional

The aim of this randomized controlled trial is to: Phase I: To explore, in a first pilot phase, the adequate combination of hypoxia severity and exercise intensity in patients with symptomatic lower extremity artery disease (LEAD). Acute walking performances and physiological responses (vascular and muscular) to a normobaric hypoxic exercise performed will be assessed at two different altitudes (1500 m and 2500 m).

NCT ID: NCT03479255 Recruiting - Clinical trials for Peripheral Arterial Disease

Smartstep Smartphone PAD

SMARTSTEP
Start date: August 24, 2018
Phase: N/A
Study type: Interventional

The study aim is to evaluate the effectiveness of a coached, smartphone-enabled exercise program versus physician directed exercise therapy (usual care).

NCT ID: NCT03477604 Recruiting - Clinical trials for Peripheral Arterial Disease

A Clinical Evaluation of the MicroSTent® PeripherAl Vascular SteNt in Subjects With Arterial Disease Below the Knee (STAND)

Start date: June 19, 2019
Phase: N/A
Study type: Interventional

Randomized multicenter clinical trial consisting of two arms; one arm treated with PTA plus the MicroStent® System and one arm treated with PTA alone. Purpose to evaluate the safety and effectiveness of using the MicroStent® Peripheral Vascular Stent System, hereafter referred to as the MicroStent® System, for the treatment of infrapopliteal lesions in subjects with peripheral arterial disease.

NCT ID: NCT03464617 Recruiting - Clinical trials for Peripheral Arterial Disease

Doppler Flow Classification of Saint-Bonnet

Saint-Bonnet
Start date: January 15, 2016
Phase:
Study type: Observational

Observational Study that evaluates the interest of Doppler waveforms classification in Peripheral Artery disease

NCT ID: NCT03462472 Recruiting - Clinical trials for Peripheral Arterial Disease

Effect of Lower Leg Heating and Transcutaneous Electrical Nerve Stimulation on Exercise Capacity in Patients With PAD

Start date: November 15, 2015
Phase: N/A
Study type: Interventional

Peripheral arterial disease (PAD) is characterized by poor circulation in the lower extremities that often provokes claudication (leg pain, numbness, and heaviness) with physical exertion. The aim of this research protocol is to determine the effect of two non-invasive treatment modalities on leg blood flow and exercise capacity in those with PAD. Specifically, we are measuring popliteal artery blood flow (Doppler ultrasound), toe oxygen saturation, ankle-brachial index (ABI), and 6-minute walking distance (6MWD) in men and women who have intermittent claudication (Fontaine Stage II; Rutherford Category 1-2) in response to 15 or 45 minutes of lower limb heating and transcutaneous electrical nerve stimulation (TENS).

NCT ID: NCT03448029 Recruiting - Clinical trials for Peripheral Artery Disease

RECCORD (Recording Courses of Vascular Diseases) Registry

RECCORD
Start date: January 1, 2018
Phase:
Study type: Observational [Patient Registry]

The RECording COurses of vasculaR Diseases registry (RECCORD registry) is an observational, prospective, multicentre, all-comers registry platform. In the initial phase, patients referred for endovascular revascularization of peripheral artery disease (PAD) of the lower limbs will be prospectively included and followed up for at least one year. At baseline, data on patients' demographic characteristics, comorbidities, previous peripheral interventions, medication, and clinical stage of PAD (Rutherford category), haemodynamic parameters, and procedural data including complications will be assessed. Major adverse cardiac and limb events will be recorded at planned (at six and 12 months) and at any unplanned visits. For details see NM Malyar et al., Rationale and design of the RECording COurses of vasculaR Diseases registry (RECCORD registry). Vasa. https://doi.org/10.1024/0301-1526/a000631

NCT ID: NCT03426293 Recruiting - Surgery Clinical Trials

Measuring the ACT During Non-cardiac Arterial Procedures.

MANCO
Start date: December 21, 2016
Phase:
Study type: Observational [Patient Registry]

Aim of the MANCO study is to establish for once and for all that monitoring the effect of heparin during NCVI (Non-Cardiac Vascular Interventions) is essential to ensure the individual patient of safe and tailor-made anticoagulation. Not measuring the effect of the administered heparin exposes the patient to unnecessary risks of thrombo-embolic and bleeding complications. First aim of the MANCO study is to prove that the standardized bolus of 5000 IU of heparin, used by 90% of vascular specialists in Europe, results in inadequate anticoagulation in more than 80% of patients. These measurements will be performed using the Hemostasis Management System by Medtronic.