View clinical trials related to Heart Failure.
Filter by:A number of large randomized studies have demonstrated the importance of left ventricle ejection fraction (LV EF) for ventrucular tachyarhrythmia's (VT) prediction. The use of this indicator as the sole predictor of high arrhythmic risk requiring ICD implantation is enshrined in the current clinical recommendations. At the same time, many experts consider LV EF as too generalized indicator, which can be an integral indicator of total cardiovascular mortality, but lacks specificity in determining the risk of VT. It is known that only about 20% of patients with ICD implanted for primary prevention of sudden cardiac death (SCD) receive appropriate life-saving therapy. Purpose of the study: to develop additional criteria for selection of patients with heart failure for implantation of cardioverter-defibrillator for the purpose of primary SCD prevention on the basis of stratification of the risk of occurrence of stable ventricular tachyarrhythmias.
The study aims to assess the effect of music on the heart resulting in a change in their exercise capacity among systolic heart failure patients undergoing Cardiopulmonary Exercise testing.
A short description, 5000 characters Ischemic cardiomyopathy related to coronary artery disease is currently the leading cause of heart failure. When it is responsible for heart failure, the coronary artery disease likely involves 2 or 3 vessels. Percutaneous coronary angioplasty, which is the other available technique for coronary revascularization, has never been evaluated in this indication. The results of retrospective registries studying the strategy for multivessel revascularization in patients with heart failure are inconsistent and no randomized study has been performed so far. Currently, ESC guidelines recommends to perform coronary-artery bypass grafting (IB) or percutaneous coronary intervention (IIa C) with the acknowledgement that percutaneous coronary intervention has never been properly evaluated in this setting. However, it has been previously demonstrated that left ventricle dysfunction significantly increases mortality and morbidity during and after cardiac surgery (3-10% mortality when LVEF is ≤30%). Moreover, the technical progresses in stent development and manufacturing have led to a dramatic decrease in the incidence of stent thrombosis and in-stent restenosis. Therefore, we hypothesize that percutaneous coronary angioplasty may be an attractive strategy for revascularization in patients with multi-vessel disease and left ventricle dysfunction, who are at high risk of surgical complication. Thus, we aim to test the hypothesis that percutaneous coronary intervention is non-inferior to coronary-artery bypass grafting for revascularization in patients with multivessel disease and left ventricle dysfunction. The main objective is to demonstrate that percutaneous coronary angioplasty is non-inferior to coronary-artery bypass grafting for multivessel revascularization in patients with left ventricular dysfunction on major cardiac and cerebrovascular events (MACCE). Method:A Prospective Randomized Open label, Blinded Endpoint, parallel-group, active controlled, non-inferiority, multicenter trial.
The REHAB-HFpEF trial will determine whether a novel physical rehabilitation intervention will improve the primary outcome of combined all-cause rehospitalizations and mortality and the secondary outcome of major mobility disability during 6-month follow-up in patients hospitalized for heart failure and preserved ejection fraction (HFpEF), which is nearly unique to older persons, and for which there are few treatment options.
Measurement of cardiorespiratory fitness (VO2max) is considered an important tool in risk prediction of cardiovascular disease and overall patient management. The gold standard method for determining VO2max is a maximal cardiopulmonary exercise test (CPET). This requires time, maximal exercise until voluntary exhaustion and expensive equipment and are therefor not always suitable. A non-exercise VO2max prediction model using seismocardiography (SCG) at rest in combination with demographic data has been proposed as an possible alternative. SCG is a non-invasive three-dimensional measurement technique of precordial vibrations caused by the beating heart and can provide information on cardiac performance. New advances in low-weight three-axis accelerometer, signal processing and feature selection has made this methodology attractive in the recent years. VentriJect Aps has develop a medical device for measuring SCG (SeismoFit) together with an cloud solution for signal processing and prediction of VO2max. The validity of the SeismoFit device has previously been assesses in healthy subjects, but not yet in patients. The aim of this study is therefore to investigate the validity of the SeismoFit VO2max estimation in patients with heart failure (HF) or ischemic heart disease (IHD).
Chagas disease is an endemic problem in Latin America, where millions of people are chronically infected with T. cruzi. Recently, it was assumed to have clinical and epidemiological relevance in several other countries due to migratory and globalizing social factors. CCC occurs in 30-50% of infected individuals, causing considerable morbidity/mortality rates. Heart failure is the most prevalent morbidity. While CRT and drug treatment have been advocated and implemented without much success to improve the clinical condition of patients with CCC, there is no consistent scientific evidence on the role of cardiac contractility modulation (CCM) as a form of adjuvant treatment for heart failure in patients with CCC. The hypothesis of this study is that patients with CCC, advanced heart failure, severe systolic dysfunction, and non-LBB have better clinical and functional responses when undergoing implantation of a CCM device than when undergoing cardiac resynchronization therapy.
The objective of CABA-HFPEF is to test whether catheter ablation (CA) for atrial fibrillation (AF) can prevent adverse cardiovascular outcomes in patients with heart failure with preserved (HFpEF) or mildly reduced ejection fraction (HFmrEF).
This study examines TRPC6 in predicting and preventing chemotherapy related cardiac toxicity and heart failure in patients with breast cancer. Cardiac toxicity, changes in heart function is a well-recognized complication of certain cancer related therapies. Understanding these changes may allow early intervention against therapy-related cardiac toxicity and also identify novel therapeutic targets to protect patient long-term cardiac health. Studying samples of blood from patients with breast cancer in the laboratory may help doctors learn more about changes that occur in deoxyribonucleic acid (DNA), identify biomarkers related to cardiac toxicity, and prevent the development of therapy-induced cardiac toxicity in patients receiving chemotherapy.
Heart failure (HF) is one of the most common causes of hospital admission in Canada and costs the Canadian healthcare system over $1 billion annually. Influenza vaccination is an inexpensive strategy to prevent influenza infections and reduce an important trigger for HF decompensation and hospital readmission. Yet, the optimal timing of vaccine administration remains unclear. When patients with HF are admitted to the hospital with an acute decompensation in advance of, or during, the 'flu season', this can be an ideal time to administer the vaccine. However, patients with acute HF decompensation have significant inflammatory injury, and may have substantially impaired immune responses; thus vaccine administration while admitted during an acute decompensated HF episode may not lead to high anti-influenza antibody titres. A more effective strategy can be to vaccinate after the decompensation has resolved, when patients are more stable. The FLU-HF randomized trial will determine whether administering the influenza vaccine to patients admitted in-hospital with an acute HF decompensation or waiting until they have stabilized as an out-patient leads to an improved anti-influenza response.
Heart failure is defined as the inability of the heart to provide sufficient output to meet the needs of the body. It can occur in the course of a myocardial infarction, angina pectoris, hypertension, etc. Its frequency increases with age. It is a major public health problem. Heart failure first appears during exercise, then at rest. Initially, the heart tries to adapt to the loss of its contraction force by accelerating its beats (increase in heart rate), then it increases in volume (thickening of the walls or dilation of the cardiac cavities). This extra workload for the heart eventually leads to heart failure. Cardiac amyloidosis is a possible cause of the disease in the West Indian population. Cardiac amyloidosis is a rare disease related to our own proteins that will accumulate and cluster together to form abnormal protein deposits that will eventually lead to heart failure. Cardiac amyloidosis particularly affects West Indians, due to the high frequency in this population of a genetic anomaly associated with the disease: the Valine 122 Isoleucine (Val122l) mutation of the transthyretin gene (protein transthyretin in which isoleucine is substituted for valine at position 122 (Ile 122)). Early detection of amyloidosis appears essential for the implementation of appropriate therapies and therefore for an improvement in patient survival. For this it seems important to better specify the frequency of cardiac amyloidosis in heart failure in the French West Indies.