View clinical trials related to Atrial Fibrillation.
Filter by:This study is designed to investigate the role of lipids/lipoproteins as a potential cause for the harmful changes seen in fibrin clot properties with renal dysfunction and atrial fibrillation
The purpose of this study is to assess the effects of Dexmedetomidine (DEX), on heart rate control in patients with rapid atrial fibrillation (AF) through a pragmatic, randomized, double blinded study comparing the addition of Dex or placebo to standard of care (SOC) treatment.
MACACOD is a clinical record in the usual clinical practice of direct oral anticoagulants (dabigatran, rivaroxaban, apixaban and edoxaban). Design: single-center, observational, prospective, uncontrolled study of anticoagulated patients with any direct oral anticoagulant (DOAC) with atrial fibrillation or venous thromboembolism to determine the incidence of serious complications (thromboembolic or hemorrhagic) in real life
Atrial fibrillation (AF) is the most common type of chronic heart rhythm disease worldwide, with significant associated co-morbidities. Although there have been advances in understanding the mechanisms of AF, the underlying cause of AF and factors which perpetuate it remain incompletely understood. This is particularly the case for persistent AF (persAF). Drug treatments for persAF have a role but can have undesirable side effects with relatively limited efficacy. Furthermore, current invasive therapies for persAF remain suboptimal, requiring significant resources, and with potentially serious complications for patients. Catheter ablation is an effective treatment for paroxysmal AF. For persistent AF (persAF), however, catheter ablation does not provide similar results. This is because there remains a poor understanding of the electrophysiological mechanisms driving persAF. Part of this study aims to further explore the specific locations that represent important substrates which would guide more effective catheter ablation. There have been several different ablation approaches explored in the past (see below), however, these did not improve the outcome post procedure compared with pulmonary vein isolation alone. A pilot study has already been carried out and I aim to expand this further with a larger cohort of patients (10-20) over 2 years. In this study the investigators want to explore whether stable high dominant frequency (HDF) sites (with a high organisation index) act as potential drivers of Atrial Fibrillation. Thus, targeting these sites may results in prolongation of the cycle length and thus possible termination of the arrhythmia.
The proposed clinical study aims at validating the diagnostic performance, in comparison with a reference ECG, of Withings HWA08 watch for the automatic identification of atrial fibrillation (AF).
This pilot study aims to assess the feasibility and safety of using an ILR to identify the incidence of recurrent AF after an episode of newly diagnosed AF. The study further aims to assess the risk of AF recurrence in this low risk population based on left atrial and left atrial appendage anatomic and functional indices in addition to the standardized clinical CHA2DS2-Vasc score.
The purpose of this study is to determine if catheter-based atrial fibrillation (AF) ablation is superior to treatment with antiarrhythmic drugs as a first-line therapy for symptomatic persistent AF.
This study will report the incidence of atrial fibrillation after elective colorectal cancer resection in the over 65 age group. This will be used to validate a risk model for the development of post-operative atrial fibrillation. Eligible patients will undergo electrocardiogram based screening for atrial fibrillation, as well as brain natriuretic peptide tests prior to surgery. They will undergo 24 hour holter monitor prior to surgery, and at 30 and 90 days following surgery. The primary outcome will be occurrence of atrial fibrillation within 90 days of surgery. Secondary outcomes include quality of life change, use of hospital services for atrial fibrillation, and complications of atrial fibrillation. This will be used to validate the pre-existing model for prediction of atrial fibrillation.
Objectives: - First, to determine if patients with a history of AF have acute measurable changes in cognitive functioning while in an episode of AF. - Second, to collect basic insight into what specific physiologic (blood pressure, pulse oximetry, heart rate, temperature) and pharmacologic (antiarrhythmic medications, rate control medications, anticoagulants, antiplatelet medications, etc.) factors minimize the neurological impact on patients while they are in AF. It is hypothesized that when using a tablet-based cognitive testing software - Cambridge Cognition (specifically to assess executive function, learning and working memory: Rapid Visual Information Processing test, Spatial Working Memory/Spatial Span Task tests, One touch Stockings of Cambridge test, Cambridge Gambling Task, Multitasking Test/Intra-Extra Dimensional Set shift tests) - a significant difference will be noted between how the patients perform while in atrial fibrillation compared to the patients' performance while in normal sinus rhythm.
Background: Biphasic truncated exponential (BTE) waveforms are standard for cardiac defibrillation and synchronized cardioversion up to date. BTE waveforms differ by design characteristics and technologies for pulse commutation (rectilinear, standard truncated exponential, pulsed). Clinical evaluation of BTE waveforms can be planned during cardioversion (CVS) as a well-established procedure of atrial fibrillation patients who are able to give consent and also present a more controlled population. Scarce studies have been found to present the relative efficacy and safety of different BTE waveforms during CVS. The validity of significantly deviating results of the pulsed waveform in one CVS study is questionable. Objective: To compare the CVS efficacy and safety two different biphasic defibrillators - a standard truncated exponential waveform and a pulsed biphasic waveform. Experimental design: Patients will be recruited at the Intensive Cardiology Care Unit (ICCU), Cardiology Clinic, University National Heart Hospital (NHH), Sofia, Bulgaria, underwent the pre-CVS medical exams and check for eligibility. All eligible patients will sign a written informed consent prior to the CVS and will receive the standard hospital procedures during CVS, accepted in the NHH, and approved by the NHH Local Ethic Committee. Atrial fibrillation patients will be alternatively randomized to CVS using one of the two defibrillators, following the same energy selection protocol in both defibrillators. The statistical power analysis will consider a non-inferiority comparison between the cumulative energy actually delivered by both defibrillators. The secondary CVS outcome measures are: the cumulative success rate (measured at 1 minute post-shock) and number of delivered shocks. Delivered energy will be measured during each shock with a dedicated pulse recording device (approved by the NHH Local Ethic Committee). Heart rhythm will be monitoring in continuously recorded peripheral ECG. The secondary CVS safety outcome measures: Biochemical markers for myocardial necrosis (high sensitive troponin I - hsTnI, creatine kinase MB fraction - CK-MB) will be evaluated on blood samples taken before and 12 hours after cardioversion; ST-segment changes will be measured in lead II (baseline and 10 s post-shock) and 12-lead ECG; Complications after cardioversion will be measured during 2 hours follow-up period in the ICCU.