View clinical trials related to Heart Failure.
Filter by:Trimethylamine N-oxide (TMAO) has recently gained increasing scientific interest in the field of cardiovascular disease, including its role in cell protection against osmotic and hydrostatic stress. Aortic stenosis (AS) is the most common valvular heart disease, affecting about 7.6 million people over 75 years of age in North America and Europe alone. We hypothesized that TMAO plays a role in protection of the cardiomyocytes against pressure overload in patients with AS. The primary aim of this study is to assess the correlation between the serum and urine TMAO concentration, and (i) echocardiographic, (ii) biochemical and (iii) histopathological parameters of heart failure in patients with severe AS. The secondary aim of this study is to evaluate a correlation between the baseline TMAO concentrations and the post-treatment clinical status, as well as the post-treatment echocardiographic and biochemical parameters.
Intra-Aortic Balloon Pumps (IABP) is a widely used and effective left ventricular adjuvant therapy. IABP is an inflatable device placed in the aorta that inflates with diastole and deflates with systole. The aim of this study is to investigate the outcome of patients treated With IABP, and to evaluate the short-term and long-term outcomes of patients with IABP.
Extracorporeal life support (ECLS), also called extracorporeal membrane oxygenation (ECMO), is an extracorporeal technique of providing effective circulatory and (or) respiratory failure, with a growing number of critically ill patients benefit from it. The aim of this study is to investigate the outcome of patients treated With ECMO, and to evaluate the short-term and long-term outcomes of patients with ECLS.
This study aims to monitor the safety and effectiveness of the Occlutech AFR device in patients with heart failure for 3 years following AFR device implantation.
Randomized, parallel group controlled study examines the effect of supporting the Heart failure supply through pulmonary arterial (PA) pressure measurement with the CardioMEMS™ HF system to hard endpoints, safety and quality of life. The target population consists of heart failure (HF) patients who have been predominantly in New York Heart Association (NYHA) Stage III for the past 30 days and at least once in the past 12 months for HF were admitted to hospital. All patients receive basic care, which is based on structured telephone contact (between the care center, patient and family doctor) to optimize guideline compliant therapy. In the intervention group a PA pressure sensor is (CardioMEMS™-HF Sensor) implanted. These patients are structured by specially trained non-medical personnel aftercare with additional inclusion of the PA pressure values: adjusted to the basis of the information collected in PA monitoring the therapy is optimized. The follow-up period until the primary endpoint is 12 months.
The role of ECMO in the treatment of patients with severe COVID-19 (Acute Respiratory Distress Syndrome (ARDS) and/or acute refractory heart failure) is not yet known. The present study will aim to report the results of the ECMO management of the most severe forms of COVID-19 through the first French ECMO registry.
This prospective multicenter registry study aims to detect the serial changes in ventriculo-ventricular conduction times according to cardiac-resynchronization therapy response.
The BioVAT-HF trial will test the hypothesis that cardiomyocyte implantation via engineered heart muscle (EHM), the proposed investigational medicinal product (IMP; designated "Biological Ventricular Assist Tissue" or BioVAT), results in sustainable remuscularization and biological enhancement of myocardial performance in the failing heart. EHM are constructed from defined mixtures of induced pluripotent stem cell (iPSC)-derived cardiomyocytes and stromal cells in a bovine collagen type I hydrogel. Comprehensive preclinical testing confirmed the rationale for the clinical translation of the myocardial remuscularization strategy by EHM implantation. The patient target population for EHM therapy is patients suffering from advanced heart failure with reduced ejection fraction (HFrEF; EF: ≤35%) and no realistic option for heart transplantation.
Analysis of longitudinal data, cardiovascular magnetic resonance (CMR) imaging and health related data, of patients with heart failure and preserved ejection fraction (HFpEF) over a timeframe of 5 years per patient. In this study routine clinical data are collected along with additional research parameters measured during CMR. CMR will occur throughout a 5-year follow-up.
Background: Coronavirus disease (COVID-19) is a tremendous challenge the modern world has never seen before and is overwhelming the capacities of healthcare systems worldwide. Patients with cardiovascular diseases, heart failure in particular, and cardiovascular risk factors seem to be at a very high risk if affected by COVID-19 - and vice versa there are more and more reports of cardiac manifestations with the viral disease. Aim: The purpose of the study is to characterise the clinical course of adult inpatients with COVID-19 and concomitant cardiovascular affection in a worldwide, multicentre PCHF registry. Methods: Retrospective and prospective data analysis. Data on demographic, clinical, selected laboratory, electrocardiography and echocardiography parameters, treatment and outcome will be collected. The principal investigator provides dedicated electronic case report form. The primary outcome is in-hospital mortality. The secondary endpoints will be ICU length of stay, hospital length of stay, the need and duration of invasive mechanical ventilation, cardiovascular hospitalisation after 3 and 6 months from index hospitalisation, all-cause and cardiovascular mortality after 3 and 6 months from index hospitalisation.