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Heart Failure clinical trials

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NCT ID: NCT05473481 Recruiting - Heart Failure Clinical Trials

Dynamic EchoCardiographic Optimisation REsponse Study

DECORE
Start date: July 1, 2022
Phase:
Study type: Observational

The aim of this study is to evaluate the effects of heart rate optimization and guided A-V and V-V delay from color Doppler echocardiography, in subjects affected by heart failure with reduced ejection fraction and CRT-D device wearers who did not respond to device implantation in clinical, electrophysiological, and other terms.

NCT ID: NCT05467735 Recruiting - Clinical trials for Heart Failure,Congestive

Above-Knee-High Application of Lower Limb Compression and Its Impact on Clinical Outcome in Patients Hospitalized With Heart Failure Exacerbation.

A-KHALIFE
Start date: April 30, 2022
Phase: N/A
Study type: Interventional

Heart failure (HF) remains one of the most common causes of hospitalization with high morbidity and mortality, and its worldwide prevalence is increasing. Despite notable progress in outcomes for HF the rate of early rehospitalization for HF (re-HHF) remains high, especially in the first 30 days. The rate of 30-day HF rehospitalization in the claims databases of the USA and in worldwide randomized clinical trials is 20-25% and 5-10% respectively. In patients with bilateral leg edema, the presence of CHF (congestive heart failure) as the factor causing or worsening local leg swelling should be evaluated. Application of local leg compression can be considered in stable CHF patients without decompensated heart function (NYHA Class I and II) for both CHF-related edema treatment and for treatment of concomitant diseases leading to leg swelling occurrence. Current literature does not have recommendations on the routine use of lower limb compression in leg swelling related to end stage heart disease and advanced, decompensated heart failure. Potential benefits of applying medical compression in more severe classes of CHF (NYHA Class III and IV) would need to be evaluated by further randomized clinical studies to determine which cohort of patients would benefit most from lower limb compression, as well as to choose the safest and most efficient compression protocol for these patients. The AIM of this study is to improve the clinical outcome of patients admitted with exacerbation of heart failure with associated volume overload. The primary objectives are: 1) diminish the duration of hospitalization of CHF patients; 2) decrease the incidence of rehospitalization from CHF exacerbation and 3) prevent local complications associated with prolonged lower extremity edema. The investigators hypothesize that the application of local compression to bilateral lower extremities, when added to guideline-based therapy for CHF exacerbation, will improve overall clinical outcome in patients at the University of Texas Medical Branch (UTMB). If our intervention is proven to be beneficial, it could lead to a significant reduction in nationwide hospitalization costs associated with heart failure.

NCT ID: NCT05467163 Recruiting - Heart Failure Clinical Trials

Conduction System Pacing Versus Biventricular Pacing After Atrioventricular Node Ablation

CONDUCT-AF
Start date: July 18, 2023
Phase: N/A
Study type: Interventional

Atrioventricular node ablation (AVNA) with biventricular (BiV) pacemaker implantation is a feasible treatment option in patients with symptomatic refractory atrial fibrillation and heart failure. However, conduction system pacing (CSP) modalities, including His bundle pacing and left bundle branch pacing, could offer advantages over BiV pacing by providing more physiological activation. The randomized, interventional, multicentric study will explore whether CSP is non-inferior to BiV pacing in echocardiographic and clinical outcomes in heart failure (EF <50%) patients with symptomatic AF and narrow QRS scheduled for AVNA.

NCT ID: NCT05461547 Recruiting - Acute Heart Failure Clinical Trials

Pre-Hospital Lung Ultrasound Impact on Diagnosis

Start date: February 9, 2023
Phase: N/A
Study type: Interventional

Acute heart failure (AHF) is a major reason patients seek emergency care and is a significant public health burden. The ability to differentiate AHF from other etiologies of dyspnea remains a challenge as symptoms and physical exam findings overlap, especially in the pre-hospital setting where diagnostic tools are not readily available. The inability to differentiate AHF from other causes of dyspnea leads to misdiagnosis, delays in diagnosis, and ultimately delays in appropriate treatment. Delays in initiating HF therapies is associated with poor outcomes including higher rates of in-hospital mortality and longer hospital length of stay. Optimizing treatment for AHF in the pre-hospital setting is associated with increased survival and lower rates of hospital re-admission. Thus, accurate diagnosis and early treatment for AHF in the pre-hospital setting remains a critical unmet need. Lung ultrasound (LUS), through assessment of B-lines, allows for an easy and accurate method for detection of pulmonary congestion seen in AHF patients. Although multiple studies have shown LUS is easy to learn, there is a paucity of data assessing clinical impact of LUS in the pre-hospital setting. The investigators hypothesize that the use of LUS by pre-hospital personnel will improve accuracy for detecting AHF in the pre-hospital setting when compared to usual care (no LUS). Specific Aims: To determine if the use of pre-hospital LUS improves diagnostic accuracy for detecting AHF in patients transported by emergency medical services (EMS) for acute dyspnea when compared to usual care (no LUS).

NCT ID: NCT05456906 Recruiting - Hypertension Clinical Trials

Avoidable Hospitalizations/ Emergency Department Visits- Systematic Review and Meta-synthesis of Qualitative Research

Start date: June 1, 2022
Phase:
Study type: Observational

The aim of the study is to synthesize qualitative evidence related to preventable hospitalizations/ emergency department visits from the perspectives of patients, their families/caregivers, health care providers, and stakeholders, in the hope to identify generalizable conclusions about why social risk factors matter to preventable hospitalizations/ emergency department visits

NCT ID: NCT05448833 Recruiting - Heart Failure Clinical Trials

V-Lap System For Wirelessly Measuring And Monitoring Left Atrial Pressure (LAP) In Patients With Advance Chronic Heart Failure

Start date: July 31, 2023
Phase: N/A
Study type: Interventional

The objective of this study is to evaluate the safety and performance of the V-LAP System in subjects with New York Heart Association (NYHA) functional class II and III HF, irrespective of left ventricular ejection fraction.

NCT ID: NCT05447598 Recruiting - Nurse's Role Clinical Trials

Remote Monitoring After Heart Failure

Start date: April 25, 2023
Phase: N/A
Study type: Interventional

Heart failure (HF) is a leading cause of hospitalisation and disability-adjusted life years lost, with mortality rates exceeding most cancers. Despite compelling evidence and recommendations, less than 20% of the HF patients are followed-up by the specialist healthcare after hospital discharge. Due to limited outpatient capacity, human resources and increasing incidence of HF over the next decades, new care models are obviously needed. Remote monitoring (i.e. telemonitoring) encompasses the use of audio, video and other telecommunication technologies to monitor patient status at a distance. Remote monitoring is a promising strategy that can facilitate rapid access to care when needed and reduce patient travel to hospital consultations. It also promotes self-care behaviour, psychosocial support, and early detection of cardiac decompensation. Despite intensive research for >10 years, randomised trials show conflicting results, and European HF guidelines are confined to a weak (class IIb, level of evidence B) recommendation. More knowledge about the role of remote monitoring strategies in HF management, especially in the transition from hospital to home, is thus requested in the most recent European and US guidelines. In particular, studies of high-risk patients integrating the community health services are largely lacking. Furthermore, the components of the intervention that mediate the effect need to be identified. The proposed study aims to address these gaps in evidence and assess whether individually tailored remote monitoring at home (IT-HEART) is improves clinical outcomes in patients hospitalized with decompensated HF. We also aim to identify modifiable clinical and behavioural (drug adherence, self-care, psychological factors) outcome predictors. A prospective, multicentre, randomized, open-label, blinded endpoint adjudication (PROBE) intervention study is designed and powered to include at least150 patients with at least one HF hospitalization in the 12 months preceding enrolment. To ensure generalizability, patients will be included regardless of comorbidity, frailty and ejection fraction. We have conducted a pilot-study providing empirical evidence for the expected participation rate, readmission rate and barriers to HF management in current clinical practice that will be targets for the intervention. This will promote high adherence to the intervention and positive long-term clinical and health economic effects.

NCT ID: NCT05443321 Recruiting - Asthma Clinical Trials

Advancing Health Information Exchange (HIE) During Inter-hospital Transfer (IHT) to Improve Patient Outcomes

Start date: November 1, 2022
Phase: N/A
Study type: Interventional

Sub-optimal transfer of clinical information during inter-hospital transfer (IHT, the transfer of patients between acute care hospitals) is common and can lead to patient harm. To address this problem, the investigators will use key stakeholder input to refine and implement an interoperable health information exchange platform that integrates with the electronic health record and improves the reliability of and access to necessary clinical information in three use cases involving transfer of patients between sending and receiving hospitals with varying levels of affiliation and health record integration. The investigators will assess the effect of this intervention on frequency of medical errors, evaluate the use and usability of this platform from the perspective of those that interact with it, and use these results to develop a dissemination plan to spread implementation and use of this platform across other similar institutions.

NCT ID: NCT05441839 Recruiting - Clinical trials for Heart Failure With Preserved Ejection Fraction (HFpEF)

UK Heart Failure With Preserved Ejection Fraction

UK HFpEF
Start date: October 7, 2022
Phase:
Study type: Observational

Heart failure occurs when the heart is no longer able to pump blood around the body properly. It can cause breathlessness, swollen feet and ankles, and tiredness. In about half of patients with heart failure, one measure of the heart's pumping function, called the 'ejection fraction', is normal. This type of heart failure is called heart failure with preserved ejection fraction, or HFpEF. HFpEF remains poorly understood. It is not clear why some people develop HFpEF, or what determines the severity of the condition. Treatment options may be limited. UK HFpEF is a study that aims to gain a better understanding of why people develop HFpEF, develop better tests to diagnosis it, identify and test new treatments, and follow the health of the people taking part over many years.

NCT ID: NCT05434962 Recruiting - Heart Failure Clinical Trials

The Left Bundle Cardiac Resynchronization Therapy Trial

Start date: June 27, 2022
Phase: N/A
Study type: Interventional

Cardiac resynchronization therapy (CRT) via biventricular (BiV) pacing significantly reduces morbidity and mortality in patients with left bundle branch block (LBBB), impaired LV function and heart failure in spite of optimal medical treatment. CRT positive effects are based on the existence of an electromechanical dyssynchrony induced by the abnormal activation sequence associated with the presence of a left bundle branch block (LBBB), which is thought to be responsible for a negative LV remodeling leading to LVEF impairment and heart failure progression. However, one third of patients undergoing CRT are considered non responders due to different reasons. Recently, left bundle branch area pacing (LBBAP) has emerged as a novel physiological pacing modality aiming for conduction system recruitment in patients with normal or impaired atrioventricular conduction, including patients with LBBB. LBBAP achieves LBBB correction in up to 85% of the cases and thus could be a promising pacing modality for CRT candidates.