115 results on '"Meine, Mathias"'
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2. Association of vectorcardiographic T-wave area with clinical and echocardiographic outcomes in cardiac resynchronization therapy
3. Automatic measurement of Short-Term Variability of repolarization to indicate ventricular arrhythmias in a porcine model of cardiac ischemia
4. Abstract 16616: Automatic Measurement of Short-Term Variability of Repolarization Captures Modulation by Pacing on Human Intracardiac Electrograms
5. Prognostic implications of invasive haemodynamics during cardiac resynchronization therapy: Stroke Work outperforms dP/dtMAX.
6. Cardiac CT in CRT as a Singular Imaging Modality for Diagnosis and Patient-Tailored Management
7. CI-452767-4 NON-INVASIVE 3D ELECTRICAL ACTIVATION MAPPING TO PREDICT CRT RESPONSE: SITE OF LATEST LV ACTIVATION RELATIVE TO PACING SITE
8. Comparison of the relation of the ESC 2021 and ESC 2013 definitions of left bundle branch block with clinical and echocardiographic outcome in cardiac resynchronization therapy
9. Non-invasive three-dimensional electrical activation mapping to predict cardiac resynchronization therapy response: site of latest left ventricular activation relative to pacing site
10. On-screen image-guided lead placement in cardiac resynchronization therapy: Feasibility and outcome in a multicenter setting
11. Electrocardiogram-based deep learning improves outcome prediction following cardiac resynchronization therapy
12. Economic evaluation of remote monitoring of patients with an implantable cardiac defibrillator (REMOTE-CIED study)
13. Chronically altered ventricular activation causes pro-arrhythmic cardiac electrical remodelling in the chronic AV block dog model
14. Life-threatening ventricular arrhythmia prediction in patients with dilated cardiomyopathy using explainable electrocardiogram-based deep neural networks
15. PO-658-01 EXPLAINABLE DEEP LEARNING OUTPERFORMS GUIDELINE CRITERIA FOR PREDICTION OF CARDIAC RESYNCHRONIZATION THERAPY OUTCOME
16. PO-688-01 ATRIOVENTRICULAR RESTORATION BY BIVENTRICULAR PACING FOR PATIENTS WITH PROLONGED PR INTERVAL: USE OF ECHOCARDIOGRAPHIC MEASUREMENTS
17. PO-688-02 BOTH ATRIOVENTRICULAR AND VENTRICULAR DYSSYNCHRONY DETERMINE OUTCOME TO CARDIAC RESYNCHRONIZATION THERAPY IN PROLONGED PR INTERVAL
18. Does mechanical dyssynchrony in addition to QRS area ensure sustained response to cardiac resynchronization therapy?
19. Aetiology of Heart Failure, Rather than Sex, Determines Reverse LV Remodelling Response to CRT
20. Abstract 12543: Limited Blood Biomarker Changes After Reverse Remodelling: A Markers and Response to CRT (Marc) Substudy
21. Abstract 10161: Predicting Life-Threatening Ventricular Arrhythmias in Patients with Non-Ischemic Dilated Cardiomyopathy Using Electrocardiogram-Based Deep Neural Networks
22. Abstract 13300: Does Mechanical Dyssynchrony in Addition to QRS Area Ensure Sustained Response to Cardiac Resynchronization Therapy?
23. Pacing therapy for atrioventricular dromotropathy: a combined computational–experimental–clinical study
24. Advanced image-supported lead placement in cardiac resynchronisation therapy: protocol for the multicentre, randomised controlled ADVISE trial and early economic evaluation
25. Optimizing lead placement for pacing in dyssynchronous heart failure: The patient in the lead
26. Development and external validation of prediction models to predict implantable cardioverter-defibrillator efficacy in primary prevention of sudden cardiac death
27. Acute recoordination rather than functional hemodynamic improvement determines reverse remodelling by cardiac resynchronisation therapy
28. Reduction in the QRS area after cardiac resynchronization therapy is associated with survival and echocardiographic response
29. Segment length in cine (SLICE) strain analysis: a practical approach to estimate potential benefit from cardiac resynchronization therapy
30. Heart Size Corrected Electrical Dyssynchrony and Its Impact on Sex-Specific Response to Cardiac Resynchronization Therapy
31. High-rate pacing guided by short-term variability of repolarization prevents imminent ventricular arrhythmias automatically by an implantable cardioverter-defibrillator in the chronic atrioventricular block dog model
32. Short‐Term Variability of the QT Interval Can be Used for the Prediction of Imminent Ventricular Arrhythmias in Patients With Primary Prophylactic Implantable Cardioverter Defibrillators
33. Fully automated QRS area measurement for predicting response to cardiac resynchronization therapy
34. Association of ECG characteristics with clinical and echocardiographic outcome to CRT in a non-LBBB patient population
35. Evaluation of a Fully Automatic Measurement of Short-Term Variability of Repolarization on Intracardiac Electrograms in the Chronic Atrioventricular Block Dog
36. The value of septal rebound stretch analysis for the prediction of volumetric response to cardiac resynchronization therapy
37. Strategies to Improve Selection of Patients Without Typical Left Bundle Branch Block for Cardiac Resynchronization Therapy
38. Evaluating Electrocardiography-Based Identification of Cardiac Resynchronization Therapy Responders Beyond Current Left Bundle Branch Block Definitions
39. Akute Herzrhythmusstörungen bei Schrittmacher- und Defibrillatorpatienten
40. Hemodynamic Optimization in Cardiac Resynchronization Therapy
41. Effect of remote monitoring on patient-reported outcomes in European heart failure patients with an implantable cardioverter-defibrillator: primary results of the REMOTE-CIED randomized trial
42. Response to Letter From Vereckei Regarding, “QRS Area Is a Strong Determinant of Outcome in Cardiac Resynchronization Therapy”
43. Multimodality imaging for real-time image-guided left ventricular lead placement during cardiac resynchronization therapy implantations
44. Remote monitoring of implantable cardioverter defibrillators: Patient experiences and preferences for follow‐up
45. QRS Area Is a Strong Determinant of Outcome in Cardiac Resynchronization Therapy
46. Decreased Quality of Life Due to Driving Restrictions After Cardioverter Defibrillator Implantation
47. Strain imaging to predict response to cardiac resynchronization therapy: a systematic comparison of strain parameters using multiple imaging techniques
48. Atrioventricular optimization in cardiac resynchronization therapy with quadripolar leads: should we optimize every pacing configuration including multi-point pacing?
49. 3D Hybrid Imaging for Structural and Congenital Heart Interventions in the Cath Lab
50. Pressure-Volume Loop Analysis of Multipoint Pacing With a Quadripolar Left Ventricular Lead in Cardiac Resynchronization Therapy
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