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Bradycardia clinical trials

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NCT ID: NCT01007474 Withdrawn - Bradycardia Clinical Trials

One Hospital ClinicalService Project

OHCS
Start date: January 2004
Phase:
Study type: Observational

The One Hospital ClinicalService Project is an integrated system composed by a network of International Hospital Departments, a clinical data repository and a shared environment for the collection, management, analysis and reporting of clinical and diagnostics data from patients treated by Medtronic therapies or patients wearing Medtronic implantable devices used within their intended use. The One Hospital ClinicalService is composed by a suite of systematic, data-guided activities designed to bring about immediate improvements in health delivery in particular settings. Data are prospectively collected. An independent committee of physicians prospectively identifies key clinical questions on a yearly basis for development of quality improvement activities, analyses and publications. A charter, approved by Hospital Istitutional Review Boards or other Hospital entities, assigns the ownership of data to the centers and governs the conduct of the project and the relationship of the scientific committee and Medtronic. Hospital is the data controller, while Medtronic is the data processor on behalf of the Hospital. Data collected for quality improvement purposes may be mined to perform clinical research.

NCT ID: NCT00989326 Completed - Bradycardia Clinical Trials

Evaluate the Benefits of Pacemaker Follow-Up With Home-Monitoring

COMPAS
Start date: December 2005
Phase: N/A
Study type: Interventional

The study investigates whether home monitoring follow-up of Pace-Maker patients is as efficient as conventional method in terms of Significant Serious Adverse Event (SSAE).

NCT ID: NCT00976482 Completed - Bradyarrhythmia Clinical Trials

Clinical Outcome of Pacemaker paTIents According to Pacing Modality and Primary INDications

OPTI-MIND
Start date: September 2009
Phase: N/A
Study type: Observational

The study objective is to collect mid-term clinical outcome in a group of patients implanted with permanent pacemaker (PM) according to real-life clinical practice in a multicenter and international environment.

NCT ID: NCT00950287 Completed - Bradycardia Clinical Trials

Detection of Neonatal Bradycardia

INTEM
Start date: September 2009
Phase: N/A
Study type: Observational

Apnea-bradycardia is a frequent phenomenon in preterm infants which has been associated with short term complications and alterations in neurodevelopment. Duration and amplitude of the bradycardias depend on the time delay between the beginning of the bradycardia and the intervention of the nurse. The purpose of the study is to test a new method set for early detection of bradycardia in preterm infants.

NCT ID: NCT00839384 Completed - Bradycardia Clinical Trials

AdvisaTM IPG Clinical Evaluation Study

Start date: February 2009
Phase: N/A
Study type: Interventional

The purpose of the Advisa IPG clinical study is to evaluate the overall system safety and clinical performance of the Advisa DR Implantable Pulse Generator (IPG).

NCT ID: NCT00832260 Completed - Sinus Node Disease Clinical Trials

IES-ACap: Influence of Atrial Pulse Width in the Behaviour of ACap™ Confirm Algorithm.

IES-ACap
Start date: January 2009
Phase:
Study type: Observational

The purpose of this observational study is to collect data regarding the population of patients with a pacemaker implanted.

NCT ID: NCT00721136 Completed - Atrial Fibrillation Clinical Trials

Randomized Study of the Use of Warfarin During Pacemaker or ICD Implantation in Patients Requiring Long Term Anticoagulation

Start date: September 2007
Phase: N/A
Study type: Interventional

Patients requiring long term anticoagulation often undergo transition of their warfarin to heparin in anticipation of invasive surgical procedures such as pacemaker or ICD implantation. This may require inpatient hospitalization several days prior to and after the procedure, potentially increasing medical costs and patient inconvenience. Patients undergoing such a process are initiated on heparin while their INRs drift to normal levels. Immediately prior to surgery, heparin is discontinued and restarted several hours after the procedure. Unfortunately, this process has resulted in a high incidence of surgical wound hematomas and other bleeding complications often requiring longer periods of discontinued anticoagulation or repeat surgical exploration. Previous investigators have tried to reduce the incidence of wound hematomas by prolonging the time from surgical wound closure to the reinitiation of heparin. A small randomized trial demonstrated that there was no significant difference in the incidence of wound hematomas whether heparin was started 6 hours or 24 hours after surgery (J Am Coll Cardiology 2000;35:1915-8). This has led many investigators to perform pacemaker and ICD implantation without reversal of warfarin therapy. A recent retrospective observational study demonstrated that the incidence of wound hematomas in patients with an INR of 2.6 was no different than patients with an INR of 1.5 (PACE 2004;27:358-60). Furthermore, a more recent, larger retrospective observational study reported in abstract form at the recent Heart Rhythm Society Annual 2007 Scientific Meeting demonstrated that not only is performing pacemaker and ICD implantations safe without reversing warfarin anticoagulation, but the incidence of wound hematomas is significantly smaller as compared to the strategy of reversing warfarin and initiating periprocedural heparin. Given these findings, the hypothesis of this randomized study is that pacemaker and ICD implantation while fully anticoagulated on warfarin therapy is safe. Findings from this study will have significant implications on the clinical practice of pacemaker or ICD implantation in this patient population given that no randomized study on this subject has been performed to date.

NCT ID: NCT00704093 Completed - Bradycardia Clinical Trials

The Effect of Right Ventricular Pacing on Myocardial Oxidative Metabolism and Efficiency

Start date: January 2008
Phase: N/A
Study type: Interventional

Right ventricular (RV) apical pacing induces a left bundle branch block (LBBB) type electrical activation sequence in the heart. This abnormal activation pattern of the ventricles may have detrimental effects on cardiac structure and function. RV pacing has been shown to impair left ventricular (LV) function both in normal and failing hearts. Importantly, it has been demonstrated that this deterioration in LV function is related to the presence of LV dyssynchrony during RV pacing. The exact effects of RV pacing on myocardial perfusion, oxidative metabolism and cardiac efficiency have not been fully elucidated. The objective of the present study is to evaluate the effect of RV pacing on both global and regional oxidative metabolism and perfusion, and myocardial efficiency. In addition, the effect of RV pacing induced LV dyssynchrony on myocardial oxidative metabolism and efficiency will be studied. Our hypothesis is that LV dyssynchrony during RV pacing results in regional abnormalities in LV perfusion and oxidative metabolism. LV dyssynchrony will also result in altered myocardial efficiency.

NCT ID: NCT00655213 Completed - Clinical trials for Sinus Node Dysfunction

Spontaneous Atrio Ventricular Conduction Preservation

SAVER
Start date: November 2003
Phase: Phase 4
Study type: Interventional

In case of sinus node dysfunction, it is often necessary to choose the safer option provided by a DDD pacemaker even though the most appropriate mode of pacing is AAI mode. In addition to saving energy, the latter mode allows spontaneous ventricular activation, the haemodynamic consequences of which are, in most cases, better than those obtained with dual chamber pacing. Recent studies as the MOST study suggest also that ventricular desynchronization imposed by right ventricular apical pacing even when AV synchrony is preserved increases the risk of atrial fibrillation in patients with SND. Similar results were already given by anterior studies (PIPAF) which, taking into account the percentage of ventricular pacing, suggested that AF prevention algorithm in combination with a preserved native conduction are efficient in reducing AF burden. However, current practice is to implant a dual chamber pacemaker to prevent the risk of atrioventricular block (AVB) even if DDDR pacing with a fixed long AV delay was found inefficient in reducing ventricular pacing and was associated with a high risk of arrhythmias. The Symphony 2550 cardiac pacemaker offers pacing modes that automatically switch from AAI(R) mode to DDD(R) or DDI(R) in event of severe atrioventricular conduction disorder, irrespective of whether or not these are accompanied by an atrial arrhythmia, returning spontaneously to AAI(R) mode as soon as the spontaneous AV conduction has resumed. These 2 particular modes are called the AAI SafeR and DDD/AMC (R) mode. The main differences between both modes are that (i) AAI SafeR does not trigger any AV Delay after a sensed or paced atrial event which allows long PR intervals or even limited ventricular pauses with no switch to DDD(R), while (ii) DDD/AMC (R) is able to optimize AV Delay after switching to DDD(R) according to measured spontaneous conduction times and to provide an acceleration in case of vaso-vagal syndrome. This pacing mode has previously been assessed in clinical studies. This study intends to demonstrate that the automatic modes switching significantly reduce the percentage of ventricular pacing in patients implanted with a spontaneous AV conduction and reduce the occurrence of atrial arrhythmias, on a mid-term follow-up period, in comparison to standard DDD pacing with long AVDelay.

NCT ID: NCT00654693 Completed - Hypertension Clinical Trials

NTX Wireless Patient Monitoring System

Start date: March 2008
Phase: N/A
Study type: Observational

- Determine the accuracy of the NTX wireless monitoring system alerts - Evaluate patient compliance with wearing device - Determine false alarm rates