Ventricular stimulation with automatic control and back-up pulse warrants maximum safety for the patient and increases device longevity. Fusion phenomenon may hinder evoked response (ER) detection and cause unnecessary back-up stimulation. We evaluated an automatic fusion beat management algorithm and its relationship with atrioventricular (AV) interval programming in a DDD/R pacemaker
We used a cardiac resynchronization therapy defibrillator device with an algorithm for automatic ver...
We investigated the applicability of the Ventricular Capture Control (VCC) and Atrial Capture Contro...
Automatic mode switch (AMS) from DDDR to VVIR pacing is a new algorithm, in response to paroxysmal a...
Ventricular stimulation with automatic control and back-up pulse warrants maximum safety for the pat...
Background: Ventricular stimulation with automatic control and back-up pulse warrants maximum safety...
The Autocapture algorithm enables automatic capture verification on a beat-by-beat basis by recogniz...
This study evaluated a newly developed automatic capture verification scheme for implantable cardiov...
This study evaluated a newly developed automatic capture verification scheme for implantable cardio...
We evaluated the impact of an algorithm for automatic right ventricular (RV) stimulation compared to...
Optimization of the AV-interval (AVI) in DDD pacemakers improves cardiac hemodynamics and reduces pa...
Optimization of the AV-interval (AVI) in DDD pacemakers improves cardiac hemodynamics and reduces pa...
Aims We investigated the applicability of the Ventricular Capture Control (VCC) and Atrial Capture C...
ObjectiveAutomatic algorithms in pacemakers (PM) allow continuous adaptation of settings to patients...
Background: Electrical fusion between left ventricular pacing and spontaneous right ventricular acti...
Ventricular pacing is frequently associated with retrograde ventriculo-atrial con-duction. In the ab...
We used a cardiac resynchronization therapy defibrillator device with an algorithm for automatic ver...
We investigated the applicability of the Ventricular Capture Control (VCC) and Atrial Capture Contro...
Automatic mode switch (AMS) from DDDR to VVIR pacing is a new algorithm, in response to paroxysmal a...
Ventricular stimulation with automatic control and back-up pulse warrants maximum safety for the pat...
Background: Ventricular stimulation with automatic control and back-up pulse warrants maximum safety...
The Autocapture algorithm enables automatic capture verification on a beat-by-beat basis by recogniz...
This study evaluated a newly developed automatic capture verification scheme for implantable cardiov...
This study evaluated a newly developed automatic capture verification scheme for implantable cardio...
We evaluated the impact of an algorithm for automatic right ventricular (RV) stimulation compared to...
Optimization of the AV-interval (AVI) in DDD pacemakers improves cardiac hemodynamics and reduces pa...
Optimization of the AV-interval (AVI) in DDD pacemakers improves cardiac hemodynamics and reduces pa...
Aims We investigated the applicability of the Ventricular Capture Control (VCC) and Atrial Capture C...
ObjectiveAutomatic algorithms in pacemakers (PM) allow continuous adaptation of settings to patients...
Background: Electrical fusion between left ventricular pacing and spontaneous right ventricular acti...
Ventricular pacing is frequently associated with retrograde ventriculo-atrial con-duction. In the ab...
We used a cardiac resynchronization therapy defibrillator device with an algorithm for automatic ver...
We investigated the applicability of the Ventricular Capture Control (VCC) and Atrial Capture Contro...
Automatic mode switch (AMS) from DDDR to VVIR pacing is a new algorithm, in response to paroxysmal a...