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Bradycardia clinical trials

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NCT ID: NCT04235491 Active, not recruiting - Bradycardia Clinical Trials

Longitudinal Coverage With Evidence Development Study on Micra AV Leadless Pacemakers (Micra AV CED)

Start date: February 6, 2020
Phase:
Study type: Observational

The primary purpose of the study is to meet the CMS mandated Coverage with Evidence Development requirement in the National Coverage Determination for Leadless Pacemakers as they apply to Medtronic Micra devices. The study uses administrative claims data of the Medicare population implanted with Micra AV leadless pacemakers or dual-chamber transvenous pacemakers. Patients are enrolled through submission of claims or encounter data to CMS.

NCT ID: NCT04200014 Recruiting - Clinical trials for Implantable Loop Recorder

Bradycardia Risk Stratification With Loop Recorder After Syncope

Start date: December 9, 2019
Phase:
Study type: Observational

Syncope is a common symptom that may be related to a conductive disorder. If no bradycardia is authenticated, it is often necessary to implant an implantable loop recorder. In somes cases, implantable loop recorder records cardiac conductive disorders. In this study, we want to try to identify a group of patients for whom we could immediately implant a pacemaker without prior implantation of an implantable loop recorder given the high probability of implantation of a pacemaker after interrogation of the implantable loop recorder. It would be interesting for the reduction of interventions for the patients and for the economic aspect of the healthcare system

NCT ID: NCT04198220 Completed - Atrial Fibrillation Clinical Trials

BIO|STREAM.ICM Obesity

Start date: September 17, 2020
Phase:
Study type: Observational

The aim of the submodule study is to assess whether a high BMI may influence the sensing performance and the sECG quality of the BIOMONITOR.

NCT ID: NCT04184245 Completed - Preterm Birth Clinical Trials

Hemodynamic Responses to Cardio-respiratory Events in Preterm Infants

Start date: February 22, 2018
Phase:
Study type: Observational

Intermittent episodes of hypoxemia and/or bradycardia, also defined as cardio-respiratory events (CRE) are very frequent in preterm infants and may result in transient hypoxia and hypoperfusion of target organs, with possible clinical implications. The hemodynamic instability that characterizes the first 72 hours of life, also called as transitional period, place preterm infants at high risk of complications and may contribute to enhance fluctuations in end-organ perfusion and oxygenation induced by CRE. In this study we aimed to explore cardiovascular and cerebrovascular changes determined by different CRE types in preterm infants during the transitional period.

NCT ID: NCT04123691 Completed - Premature Birth Clinical Trials

Cardio-respiratory Events in Preterm Infants During Transition

Start date: February 21, 2018
Phase:
Study type: Observational

Cardio-respiratory events (CRE), defined as intermittent episodes of hypoxemia and/or bradycardia, are particularly common among preterm infants. It has been previously shown that CRE result in transient brain hypoxia and hypoperfusion and may represent a possible risk factor for neurodevelopmental impairment and retinopathy of prematurity. The high cardio-respiratory instability typically seen in preterm infants during the first 72 hours of life may influence CRE occurrence, with possible clinical implications. This study aims to characterize CRE features in this transitional period and to evaluate whether specific neonatal and clinical characteristics are associated with different CRE types. Newborn infants with gestational age (GA) <32 weeks or birth weight (BW) <1500 g are enrolled. Congenital malformations and mechanical ventilation are exclusion criteria. During the first 72 hours, heart rate (HR) and peripheral oxygen saturation (SpO2) are continuously monitored, and an echocardiogram is performed to assess the status of the ductus arteriosus. CRE are clustered into isolated desaturation (ID, SpO2<85%), isolated bradycardia (IB, HR<100 bpm or <70% baseline), combined desaturation and bradycardia (DB, occurrence of the two events within a 60-sec window). According to their duration and SpO2 and/or HR nadir values, CRE are also classified as mild (SpO2 80-84% and HR 80-100 bpm and duration <60 sec), moderate (SpO2 70-79% or HR 80-60 bpm or duration 61-120 sec) or severe (SpO2 <70% or HR <60 bpm or duration >120 sec). A generalized estimating equation (GEE) will be used to examine the impact of relevant variables on CRE type and severity.

NCT ID: NCT04093414 Terminated - Bradycardia Clinical Trials

Left Bundle Area Versus Selective His Bundle Pacing

LEFTBASH
Start date: October 7, 2019
Phase: N/A
Study type: Interventional

This is a voluntary research study to find out which location in the heart a pacemaker wire is the most efficient for a patient's heart and for battery life. Patients who volunteer and are eligible for the study will be randomized to receive one of two positions for the wire to be screwed into, in addition to studying multiple positions in the heart during the pacemaker insertion. Enrolled patients will be in the study for 1 year. They will also have an Ultrasound of their heart performed to assess how the pacemaker wire is affecting their heart. Pacemakers are connected to the heart by wires that are screwed into the heart. The wires can be connected to the heart in different places, which can affect how well the heart beats over time. The typical position is at the tip of the heart. This position may cause the heart to beat inefficiently. Over time, this could lead to weakened heart muscle, irregular heart rhythm, and more hospitalizations. The heart has special muscle cells and fibers that carry electrical signals through and around the heart. An alternative spot to place the pacemaker wire is in an area where these special cells are grouped together (called the HIS bundle). The pacemaker wire can be connected to the heart at a location which may allow the heart to beat more efficiently when compared to putting the wire at traditional spots in the heart (called HIS bundle pacing). However, sometimes connecting the wire into the HIS bundle may cause the pacemaker battery to wear out faster. Physicians can also connect the pacemaker wired near the HIS bundle (called Left left Bundle bundle area pacing). The study physicians hope this will allow the heart to beat more efficiently without causing the battery to wear out faster. The study physicians would like to study how different wire positions change heart beat efficiency and how long the pacemaker battery lasts when the wires are placed in different locations. This study will connect the pacemaker wire at either the HIS Bundle or the left bundle area pacing, to see how effectively the heart pumps and how much battery is being used.

NCT ID: NCT04075084 Recruiting - Atrial Fibrillation Clinical Trials

Observation of Clinical Routine Care for Patients With BIOTRONIK Implantable Cardiac Monitors (ICMs)

BIOSTREAM-ICM
Start date: October 28, 2019
Phase:
Study type: Observational [Patient Registry]

This registry is performed for the long-term assessment of outcome, performance and residual safety aspects of the BIOMONITOR III and possible successors in a real-life clinical set-up. In addition, this registry is set up in a way that it may also be used as a platform for submodules to investigate additional scientific and regulatory aspects while minimizing the additional effort for the investigational sites and patients.

NCT ID: NCT04069078 Completed - Clinical trials for Cesarean Section Complications

Hyoscine Butylbromide for Prevention of Bradycardia During Cesarean Section

Start date: October 10, 2019
Phase: Phase 4
Study type: Interventional

The aim of this study is to assess the efficacy of Iv hyoscine butylbromide in preventing Bradycardia during cesarean section under spinal anaesthesia with local anaesthetic and morphine.

NCT ID: NCT04016870 Enrolling by invitation - Bradycardia Clinical Trials

Project My Heart Your Heart: Pacemaker Reuse

MHYH
Start date: October 13, 2018
Phase: N/A
Study type: Interventional

Lack of access to pacemakers is a major challenge to the provision of cardiovascular health care in Low and Middle Income Countries (LMIC). Post-mortem pacemaker utilization could be safe, efficacious, and ethically responsible means of delivering the needed care. Reconditioned pacemakers can provide therapy for patients with symptomatic bradycardia and no means of receiving a new device. The objective of the clinical trial is to determine if pacemaker reutilization can be shown to be a safe means of delivering pacemakers to patients in LMIC without resources. Consented patients in this multi-center trial will be randomized to undergo implantation of either a reconditioned device or a new device.

NCT ID: NCT03984526 Completed - Bradycardia Clinical Trials

Atropine or Ephedrine Pretreatment for Preventing Bradycardia in Elderly Patients

Start date: June 25, 2019
Phase: Phase 4
Study type: Interventional

Spinal anesthesia is widely used for lower extremity surgery, and sedation is often required during surgery. For sedation, propofol, midazolam and dexmedetomidine are frequently used. Dexmedetomidine is a highly selective alpha 2 receptor agonist, and has sedating and analgesic effect. Compared with propofol and midazolam, it has little or no respiratory inhibition and hemodynamically stable. It also has the effect of reducing delirium in the elderly. Dexmedetomidine has also been reported to prolong the duration of sensory and motor blockade effects of spinal anesthesia. However, several studies have reported that administration of dexmedetomidine in spinal anesthesia increases the incidence of bradycardia. In a study of healthy young adults, concurrent administration of atropine with dexmedetomidine in spinal anesthesia significantly reduced the frequency of bradycardia requiring treatment. However, in elderly patients, it is often reported that there is little response to atropine in bradycardia, and ephedrine is more effective in treating bradycardia than atropine in the elderly. The investigators therefore compared ephedrine and atropine as pretreatment to reduce the incidence of bradycardia when using dexmedetomidine as a sedative in elderly patients undergoing spinal anesthesia.