Clinical Trials Logo

Heart Failure clinical trials

View clinical trials related to Heart Failure.

Filter by:

NCT ID: NCT03254485 Completed - Clinical trials for Heart Failure With Preserved Ejection Fraction

A Study of the Effect of IW-1973 on the Exercise Capacity of Patients With Heart Failure With Preserved Ejection Fraction (HFpEF)

CAPACITY-HFpEF
Start date: November 7, 2017
Phase: Phase 2
Study type: Interventional

The objective of the CAPACITY-HFpEF study is to evaluate the safety and efficacy of IW-1973 compared with placebo when administered daily for approximately 12 weeks to patients with HFpEF. The study will evaluate the effect of oral IW-1973 on peak exercise capacity in patients with HFpEF, with or without permanent or persistent atrial fibrillation.

NCT ID: NCT03254108 Completed - Clinical trials for Congestive Heart Failure

Clinical Pharmacology Trial to Investigate the Dose of OPC-61815 Injection Equivalent to Tolvaptan 15-mg Tablet in Patients With Congestive Heart Failure

Start date: November 6, 2017
Phase: N/A
Study type: Interventional

The dose for intravenous administration of OPC-61815 achieving tolvaptan exposure equivalent to that for oral administration of tolvaptan 15-mg tablet will be investigated by administering OPC-61815 injection 2 to 16mg or tolvaptan 15-mg oral tablet to subjects with congestive heart failure.

NCT ID: NCT03251183 Completed - Clinical trials for Heart Failure With Normal Ejection Fraction

Validation of CMR Against Invasive Haemodynamics in Patients With HFpEF

DECIPHER-HFpEF
Start date: January 14, 2018
Phase:
Study type: Observational

Heart failure (HF) currently affects app. 2% of the western population and app. 10% of people >75 years. In about 50% of patients with symptomatic HF ejection fraction (EF) is preserved (HF-PEF). Once patients develop symptoms, the prognosis is poor with 25% mortality at 1 year and 50% mortality at 5 years. HFpEF is one of the major unresolved areas in clinical cardiology. The diagnosis of HFpEF remains a diagnosis of exclusion and currently no non-invasive measure provides a clear diagnosis. Cardiovascular magnetic resonance (CMR) provides non invasive and radiation free evaluation of heart structure and function. New CMR parameters offer the possibility to describe the underlying pathological and physiological changes associated with HFpEF. The investigators propose to undertake the first systematic comparison between a CMR protocol and invasive haemodynamics as the best possible gold standard, as well as define the histopathological drivers in myocardial biopsies. The investigators will also examine the relations with tissue and serological biomarkers implicated in HFpEF and the role with standard and novel parameters by echocardiography. If successful, this study will provide tools for a reliable and accurate non-invasive characterization of patients with HFpEF, supporting the diagnosis and grading the severity of disease. This study will provide a reference basis for future diagnostic algorithms in HFpEF, both, for CMR and echocardiography, but also for their relative value in comparison to blood markers or invasive testing. In addition to a new pathway to acess the effects of current and novel therapeutic interventions, the investigators see the greatest potential in identifying a disease stage where the myocardial injury may be reversible.

NCT ID: NCT03247829 Completed - Heart Failure Clinical Trials

Investigation to Optimize Hemodynamic Management of Left Ventricular Assist Devices Using the CardioMEMS™

INTELLECT 2-HF
Start date: August 24, 2017
Phase:
Study type: Observational

This observational post market study is intended to characterize hemodynamic-guided management of patients with an existing left ventricular assist device (LVAD) to protocol specified target ranges and its impact on functional status, quality of life, and readmissions

NCT ID: NCT03247608 Completed - Clinical trials for Coronary Artery Disease

ConnectedHeartHealth - Heart Failure Readmission Intervention

CHH
Start date: November 2015
Phase: N/A
Study type: Interventional

This is a single-center, pilot study that will evaluate the effectiveness of the AHA science based CarePlans and the Ambio Health technology in improving the risk adjusted 30 day readmissions rate, patient compliance, and biometrics. The study will also be used to assess the feasibility of similar heart failure transition programs in the future.

NCT ID: NCT03246035 Completed - Heart Failure Clinical Trials

Reducing Readmission for Frail Elderly Patients With Decompensated Heart Failure

HFF-ED
Start date: March 1, 2018
Phase: N/A
Study type: Interventional

A randomized study designed to determine whether telephone based interventions can prevent return hospital visits for elderly and frail patients with acute symptoms of heart failure. Specifically, the intervention will improve patients ability to monitor and address self care of heart failure at home.

NCT ID: NCT03245255 Completed - Heart Failure Clinical Trials

Noninvasive Real-time Intracardiac Pressure Measurements Using Subharmonic Ultrasound

Start date: December 4, 2017
Phase: Phase 2
Study type: Interventional

This study will use contrast echocardiography to assess the accuracy of a new non-invasive imaging method for subharmonic aided pressure estimation (SHAPE) compared to simultaneously acquired intra-cardiac pressures measured invasively during cardiac catheterization. This study is designed to verify that contrast echocardiography using the SHAPE method, already proven in a canine model and tested in a human pilot study can be used as a surrogate for cardiac catheterization with sufficient accuracy to allow clinical applicability in humans.

NCT ID: NCT03245125 Completed - Heart Failure Clinical Trials

HIIT Improves Survival of Heart Failure Patients

Start date: January 1, 2009
Phase: N/A
Study type: Observational [Patient Registry]

BACKGROUND Global burdens of heart failure (HF) are increasing in modern societies. High-intensity interval training (HIIT) increases peak oxygen consumption (VO2peak) in HF patients, which was hypothesized to improve the survival of HF patients. OBJECTIVES The cohort study aimed to highlight the effect of HIIT on long-term survivals of HF patients. METHODS 329 HF patients, enrolled between 2009 and 2016, received multidisciplinary disease management program (MDP). They had cardiopulmonary exercise test for peak exercise capacity (VO2peak), echocardiographic examination for left ventricular ejection fraction (LVEF), LV end-diastolic diameter (LVEDD), and LV end-systolic diameter (LVESD), b-type natriuretic peptide (BNP), and quality of life questionnaire. HF patients with LVEF≤ 40% (HFrEF) and HF patients with LVEF> 40% (HFpEF) underwent≥ 36 times of HIIT. HFrEF and HFpEF patients were classified as the MDP group. Generalized estimating equation (GEE) was used to estimate the interaction between time and VO2peak, LVEF, LVEDD, LVESD, and BNP during the follow-up. Survival analysis was conducted to assess effects of HIIT on the long-term survival of HF during at end of the study.

NCT ID: NCT03243942 Completed - Heart Failure Clinical Trials

Noninvasive, Subharmonic Intra-Cardiac Pressure Measurement

Start date: June 1, 2017
Phase: Phase 2
Study type: Interventional

The fundamental hypothesis of this project is that real-time intracardiac pressures can be monitored and quantified noninvasively in humans using a novel contrast-enhanced ultrasound technique called subharmonic-aided pressure estimation (SHAPE).This study will use contrast echocardiography to assess the accuracy of SHAPE compared to simultaneously acquired intracardiac pressures measured invasively during cardiac catheterization. This study is designed to verify that contrast echocardiography using the SHAPE method, already proven in a canine model and tested in a human pilot study can be used as a surrogate for cardiac catheterization with sufficient accuracy to allow clinical applicability in humans.

NCT ID: NCT03243773 Completed - Acute Heart Failure Clinical Trials

Evaluation of Lung Ultrasound in Acute Heart Failure

ELUSIA
Start date: March 1, 2016
Phase:
Study type: Observational

Acute heart failure is a life threatening condition requiring rapid diagnosis and treatment. However, the differentiation between heart failure and other conditions presenting with acute dyspnea is notoriously difficult in the emergency room. Point-of-care lung ultrasound is a simple, rapid and noninvasive technique directly visualizing fluid content in the lung as evidence for acute heart failure. A number of publications showed the diagnostic utility of lung ultrasound in the diagnosis of heart failure, but many open questions remain. The goal of this study is to evaluate the diagnostic accuracy of lung ultrasound to predict a cardiac origin of dyspnea in unselected patients in the emergency room as compared to standard evaluation. Further goals are to evaluate if lung ultrasound provides additional diagnostic information as compared to clinical examination, NT-proBNP and chest X-ray, to compare the diagnostic accuracy of lung ultrasound in different patient subgroups (heart failure with preserved vs reduced ejection fraction, de novo vs decompensated chronic heart failure, age ≥75 vs <75 years, women vs men and presence vs absence of concomitant pulmonary disease) and to compare demographics and clinical characteristics in different patient populations. 300 patients, aged ≥18 years presenting to the emergency room (ER) with acute dyspnoe as principal complaint will undergo initial clinical assessment of the likely etiology of dyspnea by the ER physician in charge. The second assessment by the same physician will include results of NT-proBNP according to predefined cutoffs. Final diagnosis ("Gold Standard") will be done by two experienced investigators after patient discharge taking into account the complete medical record except the results of lung ultrasound. Assessment of chest X-ray and lung ultrasound by investigators will be preforemd blinded regarding all other results.