View clinical trials related to Heart Failure.
Filter by:This study consists of two parts (Part 1 and Part 2). The purpose of Part 1 is to evaluate the way the body absorbs, distributes, metabolizes and removes the drug LCZ696. This will help determine the proper dose of LCZ696 for Part 2 of the study. The purpose for Part 2 is to compare the effectiveness and safety of LCZ696 with enalapril in a double-blind manner, in pediatric heart failure patients over 52 weeks of treatment.
Heart failure is a condition where the heart pump does not function normally causing the lungs to become congested. The primary symptom of heart failure is shortness of breath, and this often leads to patients visiting the emergency department for care. Decision-making in the emergency department is a high-stakes situation, where there is a need for decision support to guide clinicians to make better decisions about admission to hospital or discharge home. Many low-risk patients who could potentially be managed at home are admitted to hospital whereas some patients who are thought safe to discharge are actually high risk and will have adverse outcomes if they are discharged home from the emergency department. In this trial, the investigators will study a new strategy for heart failure care, comprised of a computer algorithm to help doctors make decisions in the emergency department about the risk of their patient. For low-risk patients who are discharged home from the emergency department or after a short hospital stay, patients will be referred to a rapid follow-up clinic where the heart specialist team will rapidly assess and treat patients.
The aim of the SCIENCE study is, in an international multicentre double-blind placebo-controlled study, to investigate efficacy of direct intra-myocardial injection of 100 mio. allogeneic Cardiology Stem Cell Centre_adipose derived stem cells (CSCC_ASCs) in patients with reduced left ventricular Ejection Fraction (EF) (≤45%) and heart failure.
This study aims to evaluate the safety and clinical feasibility of epicardially delivered autologous atrial appendage micrografts in the treatment of heart failure. The micrografts consisting atrial-derived cells and their extracellular matrix, are placed on an infarction scar during CABG surgery.
This is a multi-centre, prospective randomised double-blinded cross over study, recruiting a sub-population of patients with heart failure. All patients will be implanted with a CRT (Cardiac Resynchronisation Therapy) pacemaker with one of the leads positioned on the His bundle in order to obtain direct His-bundle capture. There will be a 2-month run-in period where the device is not active. A double-blinded cross-over design will then be employed to investigate the effect of His bundle pacing. Patients will be allocated in random order to six month treatment periods in each of the following two states (1) No pacing; (2) AV optimised direct His-bundle pacing. Endpoint measurements will be taken at baseline, 6 months and 12 months post randomisation. Treatment allocation will be blinded to the endpoint assessor and the patient. 126 patients will be needed to detect the expected effect size on the primary endpoint with 90% power. A total of 160 patients will be recruited to allow for patient drop-out.
The main goal of this study is to test two new radioactive drugs, 4-[18F]fluoro-meta-hydroxyphenethylguanidine ([18F]4F-MHPG) and 3-[18F]fluoro-para-hydroxyphenethylguanidine ([18F]3F-PHPG) in human subjects with congestive heart failure. Evaluations of these imaging agents will include their uptake in heart, lungs and liver, their metabolic breakdown in blood, and their kinetics in the heart. Based on these studies, the better of the two drugs will be chosen for further studies in patients with heart disease. After the better compound is chosen, additional measures of its imaging properties, metabolism and pharmacokinetics will be done in subjects with heart failure.
Patients admitted for acute heart failure and undergoing right heart catheterization will be enrolled in this study. Subjects will undergo catheterization of the heart to obtain central cardiac pressure and other cardiac hemodynamic parameters. Subsequently, the subject will undergo a regional nerve block of the splanchnic nerves. Patients will remain in the catheterization lab for the duration of anesthetic block and will be continuously hemodynamically monitored. This study will be a prospective, uncontrolled clinical trial. The study will not be controlled as invasive monitoring of hemodynamics will be performed, allowing clear demonstration of a cause-effect relationship. The goal of the study is to provide proof of concept.
The purpose of this study is to determine whether neuromuscular electrical stimulation can improve exercise tolerance for patients with heart failure and continuous dobutamine use in a hospital.
With the increasing aging population demographics and life expectancies, the number of very elderly patients undergoing surgery is rising. Elderly patients constitute an increasingly large proportion of the high-risk surgical group. Cardiac complications and postoperative pulmonary complications are equally prevalent and contribute similarly to morbidity, mortality, and length of hospital stay. Specific optimization strategy of general anesthesia has been tested in high-risk patients undergoing major surgery to improve outcomes. Our hypothesis is that a combined optimization strategy of anesthesia concerning hemodynamic, ventilation, and depth of anesthesia may improve short- and long- term outcome in elderly undergoing high risk surgery.
Project aim is to quantify the influence of a severe therapy-refractory heart failure caused by ischemic or dilative myocardiopathy on the function of the diaphragm, its molecular biological parameters and on the M. vastus lateralis. The control group consists of patients with coronary artery disease (CAD) and normal left ventricular ejection fraction indicated for coronary artery bypass graft surgery (CABG) Differences in the geneses of heart failure (ischemic vs. dilative cardiomyopathy) will be evaluated during analysis. The ubiquitin-proteasome signaling pathway is considered as a central issue for the mechanism of the analyses muscle catabolism.