View clinical trials related to Heart Failure.
Filter by:This study is being conducted to compare the effects that 2 different combinations of heart failure medications have on the levels of certain blood markers which cause and/or worsen heart failure. Additionally, the investigators will investigate any differences that may exist between Hispanics and Non-Hispanics. The investigators hope to find that Hispanic Americans will have a greater response to this new regimen compared to non-Hispanic Americans.
The purpose of this study is to investigate whether the medicine ivabradine, a novel drug which slows the heart rate has a favourable effect on patients with diastolic heart failure. Ivabradine is a specific heart rate-lowering agent. It has a licence for treating patients with angina who are intolerant of agents such as beta blockers or whose angina is not adequately controlled. It has been shown to prolong exercise tolerance in these patients and to reduce the frequency of chest pain. Its mechanism of action is felt to be purely due to reducing heart rate, by as much as 10 beats per minute at rest, as well as by reducing the heart rate response to exercise. Patients with diastolic heart failure often complain of breathlessness on exertion which relates to the stiffness or lack of compliance of their heart i.e. the heart fails to relax rapidly enough to allow it to fill with blood between each heart beat. This may result in high pressure in the heart chamber which backs up in to the lungs and may be experienced as breathlessness. There is little evidence that any specific therapy benefits patients with this type of heart failure besides treating coexisting problems such as high blood pressure or angina. By slowing the heart rate down with ivabradine, the heart would have a longer time to fill during exercise which would make it more effective. This slowing of the heart rate may therefore relieve the breathlessness experienced on activity such as walking to the shops or up a flight of stairs etc.
The primary objective of this trial is to compare the relative hemodynamic effect of a novel intravenous formulation of amiodarone (PM101), administered as an immediate IV bolus push, with placebo and with the currentlyl available formulation of Amiodarone IV, administered as a 10-minute IV infusion, on systolic arterial pressure.
The purpose of this study is to investigate, if immunoadsorption of autoantibodies with subsequent substitution of immunoglobulins is able to improve cardiac function of patients with heart failure after myocardial infarction and presence of cardiac autoantibodies.
The purpose of this study is to determine the genetic basis of cardiomyopathies and heart failure.
Recently literature revealed facts, that show H+/K+ ATPase expression is not limited tot he stomach. H+/K+ ATPase was also found in smooth muscle cells and in other tissues (McCabe, R.D. et al., Am J Physiol. 1992). For myocard a localisation is only proven for rats yet (Beisvag, V. et al., Acta Physiol Scand. 2003). Moreover biochemical hints lead us to a highly probability of a myocardial H+/K+ ATPase (Nagashima, R. et al., Jpn Heart J. 1999).
The purpose of this study is to test bone marrow mononuclear cells for patients with recent heart attack who are at high risk of experiencing heart failure. This study drug is made of you own cells. Studies similar to this one have suggested that the use of cell-based transfer after heart attack can improve the recuperation of the heart. The purpose of this study is to assess whether cell transfer can improve the healing of the heart after a heart attack.
Single center investigator initiated sponsored by Guidant Boston Scientific Corp. to evaluate the benefit of ventricular rate regularization (VRR) in patients with congestive heart failure (CHF) and significant atrial fibrillation (AF) burden.
It is hypothesized that elevated BNP level correlate with an elevated thoracic impedance/fluid index as measured separately by CRT-D devices and external impedance cardiography. Ultimately, it is also hypothesized that both BNP and thoracic impedance/fluid index measurements are predictive of atrial and ventricular arrhythmias.
This study utilizes the 3D mapping capabilities of the EnSite NavX mapping system to help guide the placement of the left ventricular lead during cardiovascular resynchronization therapy implant procedures with the goal of reducing fluoroscopic exposure and procedure time.