View clinical trials related to Heart Failure.
Filter by:The aim of this study was to design a deep learning-based trained model to assist in HFimpEF diagnosis.
The purpose of this clinical study is to compare the effect of video-assisted training on the quality of life and symptom management of patients over the age of 65. The main questions it aims to answer are: -Is there a difference between symptom management and quality of life between the first and last follow-up periods of patients in the application and control groups?
Despite significant scientific breakthrough in management, patients with heart failure with reduced ejection fraction (HFrEF) remain high morbidity and mortality, with a 5-year survival rate of 25% after hospitalization for HFrEF. The autonomic nervous system (ANS), particularly the sympathetic nervous system (SNS), plays a critical compensatory role in maintaining cardiovascular homeostasis in the failing heart. This is critical given the huge unmet need for novel treatment strategies for HFrEF. Thoracic epidural anesthesia (TEA), the infusion of anesthetic agents (eg, lidocaine or ropivacaine) into the epidural space, is used to achieve sympathetic block at the T1 to T4 levels in thoracic and abdominal surgical procedures. Since 1995, Professor Liu Fengqi has pioneered the use of TEA to treat end-stage HFrEF and achieved surprising results. TEA could reduce the enlarged heart cavity, halt and reverse cardiac remodeling, and improve cardiac systolic and diastolic function. Currently, thousands of HFrEF patients have received TEA procedure. However, it is unclear whether TEA could positively impact the clinical outcomes of patients with HFrEF.
The effect of parenteral glutamine on the biomarkers of myocardial injury and inflammation in patients undergoing cardiac surgery with and without cardiopulmonary bypass (DCP) will be analyzed. Randomized controlled clinical trial, from October 2018 to February 2022. 124 patients: 14 patients with DCP and 14 patients without DCP, both + glutamine (L-alanyl-L-glutamine dipeptide, at a dose of 0.4 g / kg) 6 hours before surgery and 14 patients with PCD and 14 patients without PCD + placebo (saline) 6 hours before surgery. Blood samples will be taken to measure the level of TROP-I, CPK-MB, HSP-70, TNFa, IL6, IL10 and PCR 1 hour before the administration of Glutamine / Placebo, 1 hour before surgery, then at 1 , 12 and 24 hours after surgery.
This study will be conducted to determine the effect of the training given to indivuduals with heart failure by teach back method on their symptom control, adherence to treatment and self care behaviours.
Heart failure is a special clinical syndrome such as difficulty breathing, fatigue, and swollen legs characterized by increased JVP, crackle lung sounds, and peripheral edema caused by heart disorders both structural and/or functional, resulting in decreased cardiac output and increased intracardiac pressure at rest and activity. Body positioning has been shown to affect stroke volume and parasympathetic modulating activity. The right lateral 30" semifowler position is a very safe position in heart failure patients admitted to the ICU. Although body positioning can affect stroke volume, and parasympathetic modulation, it is not yet clear what effect it has on cardiac output
This study is a prospective, double blind, self-controlled, randomized, cross-over study to evaluate the feasibility, efficacy, and safety of treating patients with Heart Failure with preserved Ejection Fraction (HFpEF) associated with hypertension using the PressurePace™ system of Right Atrial Pacing regulated by blood pressure in subjects with dual chamber pacemakers. The objective of this study is to show that blood pressure-controlled right atrial pacing improves exercise tolerance, improves heart failure symptoms, and improves hypertension control in subjects with HFpEF associated with hypertension compared to conventional bradycardia pacing alone.
This is an observational, retrospective non-inferiority study with a study sample from a large national database. A machine learning (ML) model will use a national database to predict the clinical diagnosis of ATTRwt-CM among HF patients. This study will include HF patients ≥50 years old.
The aim of the study is to demonstrate that conduction system pacing (CSP) can preserve a normal ventricular function compared to right ventricular apical pacing (RVAP) in patients with pre-implant preserved left ventricular ejection fraction (LVEF) and a high burden of expected ventricular pacing due to atrioventricular conduction block (AV block). After informed consent signature, patients with high degree AV block and normal LVEF will be randomized to permanent pacemaker stimulation with CSP vs RVAP. All the patients have a complete evaluation before the procedure and at 3 and 6 months follow-up.
The mechanism by which heart failure initiates and progresses and the mechanisms of heart repair remain unclear. The left ventricular assist device (LVAD) is a therapy to stabilise patients while they await their transplant. The LVAD helps pump blood around the body, giving the heart an opportunity to recover. During surgery, the apical core tissue is routinely removed to allow the implantation of the device (this tissue is normally discarded). Some patients demonstrate cardiac recovery, allowing the device to be removed without later needing a transplant. As part of the LVAD removal procedure, the section around the device might need to be removed (this tissue is normally discarded). To further understand the cellular and molecular mechanisms by which the heart is repaired, the investigators wish to utilise this surplus tissue for research purposes. The collection of this tissue is part of routine treatment and does not represent additional risk for the patient for research purposes. Some patients might still require a transplant following VAD treatment. The native heart is removed from these patients (routinely discarded) and replaced by a donor heart. The investigators wish to utilise this discarded tissue for research purposes, so that the investigators can identify the cellular and molecular factors involved in cardiac repair and which distinguish responsive and non-responsive patients. Heart transplant recipients who require extracorporeal membrane oxygenation will have an additional heart biopsy sample taken for research purposes when performed as part of routine clinical practice. There is no additional risk to the patient for research purposes. Heart failure patients scheduled for transplantation (who have not received a VAD) will be recruited prior to transplantation and their native heart retained for research purposes. An additional peripheral blood sample will be collected from all patients for research purposes when performed for routine clinical practice.