View clinical trials related to Peripheral Arterial Disease.
Filter by:The investigators will evaluate a potentially faster and more clinically feasible method to optimize exoskeletons in pilot tests in healthy in preparation for patients with peripheral artery disease.
The purpose of this study is to determine the best assistance level of an exoskeleton footwear (EF) that can assist walking for people older than 40 with and without peripheral artery disease (PAD). The test will be performed on two different groups of people for this study that include: 1) people with PAD, and 2) individuals who don't have PAD. Data will be collected from 50 healthy older individuals and 25 patients with PAD, both groups will be 40 years or older. Gait biomechanics, muscle oxygenation, and energy cost for seven different walking conditions including normal walking, walking with EF with no assistance, and walking with EF with 5 different levels of assistance will be collected from the healthy older individuals. Additionally, subject-reported outcomes after each walking conditions including perceived comfort and fatigue, rate of perceived exertion and feasibility of the EF will be collected. Gait biomechanics, muscle oxygenation, energy cost, and patient-reported outcomes will be measured in patients with PAD for four walking conditions including normal walking, walking with EF but no assistance, walking with EF with the best two assistance levels. Subjects will be allowed to acclimate to the EF prior to recording data. All patients with PAD will participate in feasibility interviews that will assess acceptability, demand, implementation, and practicality. All subjects will be asked to fill out questionnaires that assess quality of life, physical function, and the ability to complete activities of daily living.
Peripheral arterial disease (PAD) is a manifestation of systemic atherosclerotic cardiovascular disease (ASCVD) and is associated with increase cardiovascular risk. PAD impairs quality of life due to symptoms of claudication, pain at rest or risk of limb loss. All major societies recognize the importance of LDL reduction in patients with PAD. Statin therapy improves cardiovascular end-points in patients with PAD and have been shown to improve symptoms of lower extremity intermittent claudication (pain free walking time), 6-minute walking time, ankle-brachial index (ABI), and endothelial function, while decreasing markers of atherosclerosis. This study aims to demonstrate that in patients with PAD on stable maximal tolerated lipid lowering regimen with a statin, further reduction of LDL with the pro protein converts subtilisin/kexin type 9 (PCSK-9) inhibitor Evolocumab, improves functional status (pain free walking time in particular, but also maximal walking time), lower extremity arterial perfusion and endothelial function (brachial endothelial reactivity).
To evaluate the safety and efficacy of recombinant human hepatocyte growth factor (HGF) bare plasmid injection for local intramuscular injection in the treatment of patients with severe lower limb hemorrhagic disease (Rutherford grade 4)
This study will assess the safety and efficacy of intramuscular injection of AMG0001 (hepatocyte growth factor [HGF] plasmid) to improve ulcer healing and perfusion in patients with peripheral artery disease.
The primary goal of this clinical trial is to evaluate whether a community-based structured exercise therapy (CB-SET) intervention, which could be accessible and easily disseminated, adds benefit to peripheral artery disease (PAD) patients undergoing revascularization (REVASC) to improve their function and cardiovascular health.
The SirPAD trial is an academic, investigator-initiated, single-center, randomized, non-inferiority, open-label clinical trial investigating whether the use of sirolimus-coated balloon catheters in patients with peripheral artery disease of the femoro-popliteal or below-the-knee segment is not inferior to that of uncoated balloon catheters for major clinical outcomes (unplanned major amputation, target limb re-vascularization) and may provide advantages concerning important secondary outcomes, which will be evaluated using a pre-specified hierarchical order as part of the primary analysis.
The PROVE Trial is a randomized clinical trial that will determine whether a weight loss intervention combined with walking exercise achieves greater improvement or less decline in six-minute walk distance at 12 month follow-up than walking exercise alone in people with PAD and BMI>25 kg/m2. The intervention uses a Group Mediated Cognitive Behavioral framework, connective mobile technology, remote monitoring by a coach, and a calorie restricted Dietary Approaches to Stop Hypertension (DASH)-derived Optimal Macronutrient Intake Trial for Heart Health (OMNIHeart) diet. 212 participants with PAD and BMI > 25 kg/m2 will be randomized to one of two groups: weight loss + exercise (WL+EX) vs. exercise alone (EX). Participants will be randomized at Northwestern, Tulane University, and University of Minnesota. Our primary outcome is change in six-minute walk distance at 12-month follow-up. Secondary outcomes are change in 6-minute walk distance at 6-month follow-up and change in exercise adherence, physical activity, patient-reported walking ability (measured by the Walking Impairment Questionnaire (WIQ) distance score), and mobility (measured by the Patient-Reported Outcomes Measurement Information System [PROMIS] mobility questionnaire) at 12-month follow-up. Tertiary outcomes are perceived exertional effort (measured by the Borg scale at the end of the 6-minute walk at 12-month follow-up), and diet quality. Exploratory outcomes consist of change in the short physical performance battery (SPPB), the WIQ stair climbing and walking speed scores, and calf muscle biopsy measures at 12-month follow-up. Study investigators will perform calf muscle biopsies in 50 participants to compare changes in mitochondrial biogenesis and activity, capillary density, and inflammation between WL+EX vs. EX.
Patients with peripheral arterial disease (PAD) often have walking impairment due to insufficient oxygen supply to skeletal muscle. The investigator's pilot study in PAD patients has shown that endothelial function and walking distance improve with regular static muscle stretching. Therefore, the purpose of this study is to determine whether prescriptive muscle stretching improves muscle oxygenation and walking ability in PAD patients. This is a single-blinded study in 40 patients with stable symptomatic PAD. Patients assigned to the stretch group will use ankle splints (both legs) to perform static muscle stretching for 4 weeks (ankle dorsiflexion applied 30 min/d, 5 days/wk). Patients assigned to the control group will also wear the ankle splints daily but without invoking any dorsiflexion, i.e., without stretching. Measurements will consist of ankle-brachial index (ABI) at rest and post-exercise, skeletal muscle oxygenation (evaluated with near-infrared spectroscopy (NIRS)), and 6 minute walk test (6MWT), performed at baseline and after 4 weeks of stretching (or control splint placement). In addition, NIRS will be used to evaluate muscle oxygenation while patients are wearing the splint device in order to quantitatively prescribe the angle of dorsiflexion that provides optimum stretch and deoxygenation of the calf muscles without causing pain. Primary outcomes include increased muscle oxygenation during exercise and walking distance after 4 weeks of static muscle stretching. Results from this study will be used to support funding applications for a larger efficacy trial.
This is a randomized, positive-control, multicenter, multiple-dose, dose-escalation phase II trial