View clinical trials related to Heart Failure.
Filter by:It is unclear to what extent systemic fluid overload has an impact on T1-mapping results by cardiovascular mangetic resonance imaging. In this study, patients will undergo body composition monitoring assessing systemic fluid overload and T1-mapping using MOLLI by cardiovacular magnetic resonance imaging in order to investigate a possible association with each other.
The registry is primarily designed to assess outcome, efficacy and residual safety aspects of CRT based on long-term data from an unselected, real-life clinical set-up. Moreover, the observation of the patient status should help to find possible predictors for HF events and to identify areas of improvement for CRT and for CRT device settings.
Background Cardiac Resynchronization Therapy (CRT) is proven to improve survival and heart function of patient with certain electrical conduction abnormality and heart failure. However, in patient with certain electrical conduction abnormality, a good response is observed in less than 40% in patient receiving CRT. Conventionally the surgical approach of CRT is to implant one pacing lead in the right heart and one in the left heart to resynchronize the contraction and the pacing lead in the left heart is usually placed in the posterior or lateral portion of the left heart. However, this single approach may not be optimal, especially for those patients with conduction abnormality known to have poor response to CRT. Purpose of the clinical investigation The purpose of the Electrical Activation Guided CRT Study is to study the effectiveness of a tailored made approach to CRT procedure by using a noninvasive globally mapping system studying the electrical conduction under different approaches to delivery CRT. The pacing approach that optimally corrects conduction abnormality will be determined before the actual implantation procedure. Conduct of the Investigation This study will include 93 patients with conduction abnormality that known to have a poor response to CRT from Prince of Wales Hospital, Hong Kong.Subjects will be followed up at 3 months and 6 months visit.
Continuous-flow left ventricular assist devices (LVAD) move blood from the left ventricle (the largest chamber of the heart) to the aorta (the body's main artery) to help the heart better meet the needs of the body and to improve survival for patients with advanced heart failure (HF). The ability of the right ventricle (the large chamber on the right side of the heart) to keep up with the improved blood flow following LVAD greatly effects how well a person does following surgery. It is understood that a high pulmonary artery pressure (pressure in the blood vessel that takes blood from the right side of the heart to the lungs) measured before surgery, indicates that a higher risk of right heart failure exists after LVAD implantation. This is important because right heart failure after surgery is related to longer intensive care unit (ICU) and hospital stays, increased morbidity (other health problems) including organ failure and worse outcomes following heart transplant, and increased death rates. Sildenafil (Revatio®) has been approved by Health Canada in the treatment of pulmonary arterial hypertension (high blood pressure in the lungs) in patients with connective tissue disease. Sildenafil has not yet been approved by Health Canada for the treatment of pulmonary hypertension in heart failure. Sildenafil lowers blood pressure in the lungs and lessens the workload of the right ventricle (the right side of the heart). The purpose of this study is to determine if lowering blood pressure in the lungs, in heart failure patients at risk for developing right heart failure after LVAD implant, lowers the incidence of right heart failure, shortens ICU and hospital stays and reduces morbidity (other health problems) and mortality (death rates). This is an open label, single arm study. Everyone who participates in this study will receive sildenafil before and after LVAD surgery. It is expected that 24 patients who are scheduled to have LVAD implantation for advanced heart failure will be enrolled from 6 sites across Canada. Participants will be followed in the study for about 2 months.
This study is comparing the use of Kcentra vs. standard transfusion in patients undergoing heart transplantation surgery. Half of the patients will receive Kcentra, while the other half will receive fresh frozen plasma.
The investigators set out to evaluate the effects of the traditional Chinese medicinal mixture under the brand name YangXinShi (YXS) on the prognosis in patients with chronic heart failure when it is combined with the optimal combination drug treatment of heart failure.
Columbia University Medical Center is conducting a pilot clinical research study that will assess the use of the medication metformin for heart failure in patients who are not diabetic and have no evidence of insulin resistance. Patients will received either the study drug metformin or placebo for 4 months. During the study, the patients will undergo extensive testing that will include symptom assesment, exercise capacity, echocardiography, cardiac PET imaging and blood tests.
The AHF-CORE study is a prospective, non-randomized, multicenter regional study. The main objective of the AHF-CORE study is to identify congestion markers (clinical, biological and ultrasound) at the beginning and at the end of hospitalization for acute heart failure that are more strongly associated with the risk of all cause death or rehospitalization for acute heart failure within 3 months of hospital discharge. Secondary objectives are: - Quantify the variations in congestion markers between the beginning and end of hospitalization for acute heart failure. - Assess the correlation between changes in congestion markers between the beginning and end of hospitalization. - Identify the congestion markers at the beginning of hospitalization that are most strongly associated with residual congestion at the end of hospitalization. - Identify the added value of ultrasound and biological markers of congestion in addition to clinical variables for the prediction of all-cause death or hospitalization for acute heart failure at 3 months after hospital discharge. - Identify the association of ultrasound and biologic congestion markers assessed at admission and final discharge with NYHA class at 3 months after hospital discharge
The primary aim of the current study is a better understanding of the role of Type 2 Diabetes Mellitus (T2DM) in heart failure and, in particular, changes in cardiac metabolism, which may contribute to heart failure. Various biomarkers in the coronary artery blood, as well as in the arterial and peripheral venous blood, are to be identified for this purpose. Included are patients with and without T2DM and with or without heart failure (HFpEF, HFmrEF, HFrEF), who have a clinically indicated and guidance-appropriate Cardiac Resynchronisation Therapy (CRT) implantation or pulmonary vein ablation/electrophysiological examination. Not all patients currently benefit from the implantation of a CRT system (so-called non-responder). Despite narrow inclusion criteria, these "non-responders" cannot be unmasked in advance of the implantation. A further aim of this study is to identify biomarkers, which can be determined in advance of implantation to differentiate between responders and non-responders.
Background: Chronic heart failure (HF) is frequently accompanied by functional mitral regurgitation (FMR) caused by left ventricular (LV) remodeling and subsequent papillary muscle displacement resulting in mitral valve (MV) leaflet tethering, dilatation and flattening of the mitral annulus and reduced closing forces. Up to moderate FMR affects the majority of patients with systolic heart failure - roughly 80% - still independently increasing mortality. Every fifth patient with chronic heart failure experiences a progression of FMR during the first three years of follow up despite guideline directed heart failure therapy, which is independently associated with a poor prognosis. Furthermore, MR is well known to have a strong dynamic component not only during the cardiac cycle at rest and with exercise. Aims of the study: The investigators therefore aim to assess whether stress tests in patients with functional mitral regurgitation unmasks significant dynamic mitral regurgitation or might aid to identify patients at risk of FMR progression in patients with functional mitral regurgitation in heart failure with reduced ejection fraction (HFrEF) under guideline directed medical therapy. Study design: The investigators will prospectively perform stress tests in all patients with non-severe FMR that are routinely seen in the heart failure outpatient clinic. Study patients: Patients with stable chronic heart failure on optimal medical therapy, who undergo routine ambulatory clinical control visits in the heart failure outpatient ward of the Medical University of Vienna, will be included in the present study. A written informed consent will be obtained before inclusion. Inclusion criteria will be a non-severe FMR, an age of at least 18 years and stable heart failure related medical therapy in the last 3 months. Methods: All patients that are willing to participate will undergo stress testing (i.e. volume challenge and low dose dobutamine stress) to determine whether patients display severe dynamic FMR under stress conditions. Within the registry patients will be followed-up during routine ambulatory visits for three years. Patients with severe dynamic functional mitral regurgitation will be compared to patients without severe dynamic FMR. Record of clinical events during the FUP will be performed. Routine laboratory parameters, have been measured at inclusion. Additionally, neurohormone patterns will be measured at baseline and at peak stress. Sample size: Expecting a prevalence of severe dynamic FMR of 20%, the investigators would include a total of 150 chronic heart failure patients taking also into account a study-dropouts of 20% ( loss of follow-up and mortality).