587 results on '"PLOUX, SYLVAIN"'
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52. Troubleshooting the Malfunctioning Implantable Cardiac Defibrillator: A Systematic Approach
53. Comparative Electromechanical and Hemodynamic Effects of Left Ventricular and Biventricular Pacing in Dyssynchronous Heart Failure: Electrical Resynchronization Versus Left–Right Ventricular Interaction
54. Cardiac Contractility Modulation in a Model of Repaired Tetralogy of Fallot: A Sheep Model
55. Remote monitoring for cardiac implantable electronic devices: A practical guide
56. PO-618-06 REMOTE PROGRAMMING OF CARDIAC IMPLANTABLE ELECTRONIC DEVICES: MULTI-CENTRIC EVALUATION OF A CUSTOM MULTIVENDOR SOLUTION
57. PO-668-08 SMARTWATCH ELECTROCARDIOGRAMS FOR AUTOMATED AND MANUAL DIAGNOSIS OF ATRIAL FIBRILLATION: A COMPARATIVE ANALYSIS OF THREE MODELS
58. PO-631-04 ACCURACY OF A SMARTWATCH ECG TO DIAGNOSE ATRIAL FIBRILLATION AND NORMAL SINUS RHYTHM
59. PO-618-05 DEEP LEARNING ALGORITHMS FOR SCREENING OF LEAD NOISE IN ELECTROCARDIOGRAMS TRANSMITTED BY CARDIAC IMPLANTABLE ELECTRONIC DEVICES
60. Comparison of different invasive hemodynamic methods for AV delay optimization in patients with cardiac resynchronization therapy: Implications for clinical trial design and clinical practice
61. MP-470545-008 RISK OF ELECTROMAGNETIC INTERFERENCES AND INAPPROPRIATE SHOCKS DURING CONCOMITANT USE OF SUBCUTANEOUS INTRACARDIAC CARDIOVERTER-DEFIBRILLATOR AND HEARTMATE III ASSIST DEVICE: A MULTICENTER REGISTRY
62. The role of electrocardiographic imaging in patient selection for cardiac resynchronization therapy
63. Mechanisms of Undersensing by a Noise Detection Algorithm That Utilizes Far-Field Electrograms With Near-Field Bandpass Filtering
64. Alternative to left ventricular lead implantation through the coronary sinus: 1-year experience with a minimally invasive and robotically guided approach
65. Using a smartwatch to record an electrocardiogram in the pediatric population
66. Purkinje network and myocardial substrate at the onset of human ventricular fibrillation: implications for catheter ablation
67. Smartwatch Electrocardiograms for Automated and Manual Diagnosis of Atrial Fibrillation: A Comparative Analysis of Three Models
68. 122 - Transvenous Implantable Cardioverter-Defibrillator: Clinical Aspects
69. Beyond the wrist: Using a smartwatch electrocardiogram to detect electrocardiographic abnormalities
70. Recording an ECG With a Smartwatch in Newborns and Young Children: Feasibility and Perspectives
71. Optimal Strategies on Avoiding CRT Nonresponse
72. Pacemaker-Mediated Tachycardia: Manufacturer Specifics and Spectrum of Cases
73. Biventricular stimulation improves right and left ventricular function after tetralogy of Fallot repair: Acute animal and clinical studies
74. Benchmark of deep learning algorithms for the automatic screening in electrocardiograms transmitted by implantable cardiac devices
75. Using a smartwatch electrocardiogram to detect abnormalities associated with sudden cardiac arrest in young adults
76. Remote monitoring of pacemakers
77. B-PO02-032 SUCCINATE ACCUMULATION IN ATRIAL CARDIOMYOCYTES INCREASES MITOCHONDRIAL REVERSE ELECTRON FLUX, OXIDATIVE STRESS, AND MIGHT PARTICIPATE TO AF STABILIZATION IN THE SHEEP
78. Absence of additional improvement in outcome of patients receiving cardiac resynchronization therapy paced at the most delayed left ventricular region
79. Echocardiographic study of the optimal atrioventricular delay at rest and during exercise in recipients of cardiac resynchronization therapy systems
80. Influence of left ventricular lead position relative to scar location on response to cardiac resynchronization therapy: a model study
81. Leadless pacemakers in critically ill patients requiring prolonged cardiac pacing: A multicenter international study
82. Endocardial Pacing: The Wave of the Future?
83. Left Ventricular Endocardial Pacing and Multisite Pacing to Improve CRT Response
84. Management of Subacute and Delayed Right Ventricular Perforation With a Pacing or an Implantable Cardioverter-Defibrillator Lead
85. Implantable Cardioverter- Defibrillator Interference After LVAD Implantation
86. Impact of Pacing Site on QRS Duration and Its Relationship to Hemodynamic Response in Cardiac Resynchronization Therapy for Congestive Heart Failure
87. Remote monitoring of patients with heart failure during the first national lockdown for COVID-19 in France
88. Should we still monitor QTc duration in frail older patients on low-dose haloperidol? A prospective observational cohort study
89. Impact of paced left ventricular dyssynchrony on left ventricular reverse remodeling after cardiac resynchronization therapy
90. Single surgical procedure combining epicardial pacemaker implantation and subsequent extraction of the infected pacing system for pacemaker-dependent patients
91. Pre- and Intra-Procedural Predictors of Reverse Remodeling After Cardiac Resynchronization Therapy: An MRI Study
92. Using a smartwatch electrocardiogram to detect abnormalities associated with sudden cardiac arrest in young adults.
93. Depression and Severe Heart Failure: Benefits of Cardiac Resynchronization Therapy
94. Microbiologic Characteristics and In Vitro Susceptibility to Antimicrobials in a Large Population of Patients with Cardiovascular Implantable Electronic Device Infection
95. Contributions of a Hemodynamic Sensor Embedded in an Atrial Lead in a Porcine Model
96. Three left ventricular leads required for improved haemodynamic and clinical status of a patient with very severe heart failure and a narrow QRS duration
97. Long-Term Outcomes after Pocket or Scar Revision and Reimplantation of Pacemakers with Preerosion
98. Should we still monitor QTc duration in frail older patients on low-dose haloperidol? A prospective observational cohort study
99. Electrogram morphology discriminators in implantable cardioverter defibrillators: A comparative evaluation
100. Reply to the Editor—S-ICD oversensing: A fork in the road
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