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Bradycardia clinical trials

View clinical trials related to Bradycardia.

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NCT ID: NCT04919733 Recruiting - Heart Failure Clinical Trials

Fluoroscopy Reduction or Elimination in CIED Implants

Start date: January 3, 2020
Phase: N/A
Study type: Interventional

CIED implants require different amounts of fluoroscopy; using 3-D mapping systems, these times could be reduced to near zero fluoroscopy. The investigators aim to describe to what extent fluoroscopy times are reduced on a routine basis on CIED implants

NCT ID: NCT04919447 Recruiting - Heart Failure Clinical Trials

Clinical Study of LBBP

Start date: June 1, 2021
Phase:
Study type: Observational

At present, cardiac pacing has been widely used in the treatment of bradyarrhythmias and heart failure, which can effectively improve the survival rate of patients. With the rapid development of technology, you can choose to pace the heart in different parts. The atrium can choose the right atrial appendage, the atrial septum and the right ventricular side wall. The right ventricle can choose to be paced in the His bundle, right ventricular apex and ventricular septal outflow tract. The right ventricle can choose the pacing positions including left bundle branch pacing and left ventricular pacing via coronary vein. There are few studies comparing the long-term efficacy and safety of different pacing programs in daily practice. This study is to observe the short-term and long-term effects and safety of different parts of cardiac pacing, and compare the advantages and disadvantages of different parts of cardiac pacing.

NCT ID: NCT04917653 Recruiting - Atrial Fibrillation Clinical Trials

Portable Measurement Methods Combined With Artificial Intelligence in Detection of Atrial Fibrillation

WB-AF
Start date: June 7, 2021
Phase:
Study type: Observational

In Western countries, every sixth person in their lifetime and 15,000 people in Finland have a new stroke each year. About every fourth stroke is based on cardiac embolism. Atrial fibrillation (AF) is the most common arrhythmia that increases the risk of thromboembolic complications, such as stroke. It may cause formation of thrombi in the left atrium with ensuing embolization in the cerebral and peripheral circulation. AF is often asymptomatic and paroxysmal. Thus, the diagnosis of AF is often challenging. A new onset AF is usually treated with cardioversion (CV), in which the abnormal rhythm is converted back to sinus rhythm (SR). However, a long-lasting AF (>48 hours) is associated with risk of stroke. Therefore, the duration of AF needs to be known before a CV can be performed. This study evaluates the ability of novel customer-targeted heart measuring devices to detect rhythm change and short AF episodes. Moreover, novel biomarkers will be analyzed from the blood samples of AF patients and their suitability to estimate the duration of AF will be evaluated. The research will be accomplished in cooperation with the Kuopio University Hospital Emergency Department, the Heart Center, the Department of Applied Physics of the University of Eastern Finland and Heart2Save Ltd. The results of the research project will be published in the scientific journals of medicine and medical technology and will be presented at scientific conferences of the respective fields. The research results of the project can be utilized by all companies in the medical technology industry, in particular companies that produce ECG measuring instruments and companies that produce rhythm recognition software.

NCT ID: NCT04905199 Recruiting - Tachyarrhythmia Clinical Trials

Temporary Transvenous Pacemaker Placement by Intracavitary Electrocardiogram Monitoring

Start date: March 25, 2021
Phase:
Study type: Observational

Traditional temporary pacing catheter insertion by intracavitary electrocardiogram (IC-ECG) monitoring which only monitoring tip polar, the negative one. The investigators modified the technique by monitoring both negative and positive polar which will be precisely locating catheter tip and indicating the direction of the catheter tip. Extensively used temporary pacing catheter tip has two electrodes which are about 1 cm apart. Distal electrode is negative (-) and active, proximal electrode is positive (+) and indifferent. Investigators use both distal (-) and proximal (+) electrodes which can be attached to any two of the V leads, record as V(-) and V(+). Monitoring positions of the electrodes by V(-) and V(+) could provide more information about the tip position. Comparing the QRS amplitudes between V(-) and V(+), when catheter tip enters right ventricle chamber: the case of V(-) > V(+) infers tip toward apex ventricle wall ; conversely, the case of V(-)<V(+) indicates tip directs to outflow tract. The investigators hypothesis this monitoring will help precisely placement.

NCT ID: NCT04858698 Recruiting - Bradycardia Clinical Trials

Reduction Or Elimination Of Radiation During Implantation of Cardiac Devices Using Ultrasound

RADICAL USE
Start date: July 30, 2021
Phase: N/A
Study type: Interventional

Specialized equipment is required to put pacemakers in the heart. This requires use of radiation to see the wires or leads being implanted in the heart. Repeated radiation use can result in permanent injury to the patient and to the doctor. The investigators aim to investigate if they can use ultrasound to guide and help in the implantation of leads into the heart. Ultrasound is a safe method and requires only a small handheld probe and a small screen to see different structures in the heart. If ultrasounds proves successful as a tool to reduce radiation then this would be very useful technical breakthrough. It would help develop smaller centres where pacemakers can be implanted without purchasing xray equipment and expensive setups.

NCT ID: NCT04831125 Recruiting - Heart Failure Clinical Trials

Conduction System Pacing International Registry (CONSPIRE)

Start date: April 4, 2021
Phase:
Study type: Observational [Patient Registry]

The purpose of this registry study is to collect information about routine clinical practices with device implantation to treat bradycardia and cardiac systolic dysfunction (heart rhythm disorders) across global centers of excellence in cardiac pacing. In particular, this study will examine the use of conduction system pacing (CSP) in clinical practice. Information collected in the registry will help researchers better characterize strengths and limitations of current technology and treatments.

NCT ID: NCT04738396 Completed - Cardiac Pacing Clinical Trials

Electrogram and Hemodynamic Characteristics of Adaptive LBBAP in Patients With Heart Failure or Bradycardia

Start date: December 29, 2020
Phase:
Study type: Observational

This is a multi-site, non-randomized, data collection study. The purpose of this study is to investigate the cardiac electrical and mechanical function during LBBAP with different AV intervals.

NCT ID: NCT04697797 Recruiting - Bradyarrhythmia Clinical Trials

Mechanical and Electrical Dyssynchrony During His-Bundle Pacing Versus His-Bundle Area Right Ventricular Pacing

Start date: December 14, 2020
Phase:
Study type: Observational

The aim of this study is to evaluate mechanical and electrical cardiac dyssynchrony in patients with pacemakers and the right ventricular electrode implanted in His Bundle area.

NCT ID: NCT04632641 Completed - Atrial Fibrillation Clinical Trials

Suture Closure AFtEr VEIN Access for Cardiac Procedures (SAFE-VEIN) Trial

SAFE-VEIN
Start date: April 23, 2021
Phase: N/A
Study type: Interventional

Primary objective: To compare the safety and efficacy of closure strategies post venous access procedures. Hypothesis: We anticipate that the use of a venous closure device will decrease the time to hemostasis (TTH), time to ambulation (TTA) and time to discharge (TTD) compared to conventional methods of closure following venous access procedure.

NCT ID: NCT04583709 Completed - Heart Failure Clinical Trials

ECG Belt to Assess Electrical Synchronization

Start date: January 13, 2021
Phase: N/A
Study type: Interventional

The objective of the study is to assess the utility of ECG Belt to understand the conduction and ECG characteristics of Left Bundle Branch Pacing (LBBAP) and His-Optimized Cardiac Resynchronization Therapy (HOT-CRT) and compare with preexisting data in traditional Cardiac Resynchronization Therapy (CRT) and Right Ventricular Pacing (RVP).