View clinical trials related to Vascular Diseases.
Filter by:The objective of this study is to compare the effects of novel versus standard locomotor training using a robotic gait orthosis (LT-RGO) after stroke. The hypothesis is that the novel LT-RGO protocol, by establishing a progressive decrease in gait velocity and guidance force, may facilitate greater motor recovery compared to the use of a standard protocol.
RADIANCE-HTN is a randomized, double-blind, sham controlled, 2-cohort study (TRIO and SOLO) designed to demonstrate efficacy and document the safety of the Paradise Renal Denervation System in two distinct populations of hypertensive subjects.
Pulmonary arterial hypertension (PAH) in patients with congenital heart disease usually develops secondary to chronic volume overload of the pulmonary circulation following left to right shunt. This overload leads to elevated pulmonary artery pressure (PAP) and later to increased pulmonary vascular resistance (PVR), leading to right ventricular dysfunction, considerable morbidity and even mortality. Since PAH nowadays is mostly detected when symptoms occur and PAP are elevated, the disease already evolved to an advanced stage and treatment is often initiated too late. Our research group standardized the technique for the detection of early pulmonary vascular disease by bicycle stress echocardiography. The investigators now aim to assess this exercise technique in a group of patients with ventricular septal defect.
PREVEIL is a prospective, multi-center, single-arm clinical trial to assess the safety and functionality of the SurModics drug coated balloon (DCB) in the treatment of subjects with symptomatic peripheral artery disease (PAD) due to de novo stenoses of the femoral and popliteal arteries. The trial will enroll up to 15 subjects.
Background: Peripheral arterial disease is a result of atherosclerotic occlusion in the major arteries supplying the lower limbs and is associated with an increased risk of mortality and morbidity. It results in restricted blood flow to the skeletal muscles causing intermittent claudication (IC). IC presents as cramp like pain affecting 5% of the population >50 years and is associated with a substantial reduction in walking capacity, quality of life and diminished physical function. Supervised exercise programmes have been demonstrated to improve maximum walking distances and NICE recommends group-based supervised exercise for treating patients with IC. However, there is significant variability in the impact of treatment across studies and little agreement on the underlying mechanism whereby exercise increases functional outcomes. Potential mechanisms include skeletal muscle metabolism, VO2 max, anaerobic threshold and endothelial function. Studies are needed to better understand how exercise improves outcome and in whom, so as to better refine and target the treatment. The participation of patients with IC in exercise programmes is low. The investigators need to understand factors influencing participation so that we can improve the number of patients with IC benefiting from the programme The research consists of two workstreams: Workstream one Objective: Assess the extent to which patient baseline characteristics and candidate physiological mechanisms are associated with clinical improvement in IC patients participating in an exercise programme Patients: Patients with documented IC referred from a Vascular Consultant. Eligible patients will be invited to participate in a 12 week supervised exercise programme. Testing Schedule: Measurements will be recorded at baseline (prior to exercise), immediately after the completion of the exercise programme and then three months after. Measurements include: Baseline characteristics that might predict outcome: - Quality of life using the VascuQol questionnaire - Clinical indicators of lower limb function: Ankle brachial pressure index (ABPI), intermittent claudication distance (ICD), Maximum walking distance (MWD). Candidate physiological mechanisms - Aerobic capacity (VO2 max & AT) - Muscular strength and endurance - Muscle morphology (including muscle thickness, pennation angle, fascicle length and elastography) - Endothelial function (sheer stress response as measured by flow mediated dilation) Analysis: Regression analysis will be used to explain variation in patient maximum walking distance at 3 months. The regression will use 9 candidate measures of physiological response and 3 baseline measures to explore what mechanism and patient factors may be associated with clinical improvements. 100 patients recruited over 2 years will give a 90% power to detect an additional increase in variability in MWD explained by each candidate measure of around 5% at the a 0.05 significance level. This research will be used to identify which types of exercise may be most influential in improving outcome and in which patients. Workstream two Objective: Explore the reasons behind patients' participation, non-participation in, experience of and adherence to the exercise programme. Study Design: An interview study of patients with IC routinely referred for supervised exercise. Three groups of patients will be invited to participate. Those who: - Choose not to participate in the exercise programme (Group A) - Agree to participate in the exercise programme (Group B). - Agree to participate but discontinue after at least one session (Group C). Semi-structured face-to-face interviews with 20 patients per group, interviews will be conducted using a topic guide to ensure consistency. The format will be flexible to allow participants to generate naturalistic data on what they consider as important and / or successful in terms of outcome. Data will be analysed thematically and managed using Nvivo software - the approach will be inductive and iterative. This research will be used to redesign the current exercise programme to improve participation and so the impact of exercise in patients with IC.
This study evaluates the outcomes of stroke patients treated for intravascular thrombectomy, using either a local anesthetic with sedation, or a general anesthetic. Historical data will be used for those treated with the local anesthetic, and prospective data will be used for those treated with the general anesthetic.
The purpose of this study is to determine the efficacy of oral L-Citrulline on endothelial function and vasodilation in patients with coronary artery disease(CAD) by evaluating the brachial artery diameter in the antecubital area by ultrasonography.
This study evaluates the ability of the drug sildenafil to improved exercise capacity, cardiac performance during exercise, and quality of life in patients with moderate to severe CF lung disease. 3/4 of the subjects will receive sildenafil and 1/4 will receive placebo.
Peripheral vascular disease (PVD) is a common disease of impaired blood flow resulting in the compromised tissue perfusion of lower limbs. PAD patients can experience pain, diminished exercise capacity, and tissue loss, with some ultimately requiring amputation. The economic burden of PVD is significant. In the United States alone, PVD accounts for over $20 billion in annual healthcare related costs. The demand for the development of an effective method to characterize the viability of PVD wounds has resulted in the emergence of several innovative techniques. Commonly used diagnostic methods are ankle-brachial index (ABI), pulse volume recordings, duplex ultrasonography, venous plethysmography, Transcutaneous oxygen tension (TcPO2), toe pressures, angiography by X-ray, computed tomography, and magnetic resonance imaging. Currently, angiography remains the diagnostic gold standard. However, many of these techniques lack the ability to triage and adequately determine the viability of the wound. In addition, there remains a need for effective triage technologies to help clinicians decide whether surgical management is needed. Early determination of surgical versus conservative management may help to improve patient functional outcomes, reduce mortality rates, and prevent limb amputation. Near-infrared point spectroscopy (NIRS) is a non-invasively technology with recent applications in PVD wound assessment. To date, studies have demonstrated the validity of NIRS technology in patients with peripheral arterial disease. NIRS measures flow, concentration, and oxygenation of hemoglobin in arterioles, capillaries, and venules several centimeters deep in tissue. The MSID is an evolution of existing NIRS imaging devices and has become a portable and functional commercial device produced by KENT imaging (Calgary, Canada). Using this new and clinically applicable NIRS technology designed for assessing wound perfusion and oxygenation, this study seeks to adequately identify viable from non-viable wounds and to rapidly determine indication for vascular interventions. This technology is well-suited for use in a wound patient population as the measurements times are short and can quickly be used at the patient bed side. As such, this project intends to apply NIR technology to quickly assess PVD in the investigators' patient population.
Mortality in the major thrombotic microangiopathies (TMAs), TTP and aHUS, exceeds 90% unless rapidly diagnosed and appropriately treated. TMAs complicate 10-20% of allogeneic bone marrow hematopoietic stem cell transplants (alloHSCT), conveying inferior survival. Multiple etiologies have been proposed for these transplant-associated TMAs (TA-TMAs), but once infection, graft vs. host disease (GvHD), and drug effects have been ruled out, most are treated as TTP-like disorders using plasma exchange (PEx). But PEx has no impact on mortality in this setting. Clear definition of the pathophysiology of the TA-TMAs is required to guide effective treatment. Investigators hypothesize that an aHUS-type TMA, related to dysregulation of the alternative complement pathway, is involved and will be characterized by elevated plasma levels of C5b-9 and detectable C5b-9 deposition in bone marrow sinusoidal vessels. Investigators further hypothesize that treatment with inhibitors of terminal complement components will reverse the TMA in vivo, and block endothelial cell damage in our in vitro model systems. The data investigators generate from this observational study of TA-TMAs should enable prediction of their development prior to overt clinical manifestations, and guide appropriate therapy.