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3. Lateral QRS amplitude is independently associated with outcome after cardiac resynchronization therapy: Advancing patient selection?

5. Scar imaging in the dyssynchronous left ventricle: Accuracy of myocardial metabolism by positron emission tomography and function by echocardiographic strain

8. Mechanical dyssynchrony as a selection criterion for cardiac resynchronization therapy: Design of the AMEND‐CRT trial.

15. An interventional sheep model of severe aortic valve stenosis hemodynamics for the evaluation of alterations in coronary physiology and microvascular function

19. Cardiac Magnetic Resonance Identifies Responders to Cardiac Resynchronization Therapy with an Assessment of Septal Scar and Left Ventricular Dyssynchrony

21. Left bundle branch pacing better preserves ventricular mechanical synchrony than right ventricular pacing: a two-centre study

24. Cardiac Microvascular Endothelial Cells in Pressure Overload–Induced Heart Disease

25. Optimal Measurement of Coronary Flow and Microvascular Function in Animals and Humans

26. Mechanical Dyssynchrony Combined with Septal Scarring Reliably Identifies Responders to Cardiac Resynchronization Therapy

27. Shear-Wave Elastography Reflects Myocardial Stiffness Changes in Pediatric Inflammatory Syndrome Post COVID-19

28. Left bundle branch pacing better preserves ventricular mechanical synchrony than right ventricular pacing: a two-centre study.

31. Septal Scar Detection in Patients With Left Bundle Branch Block Using Echocardiographic Shear Wave Elastography

32. Continuous shear wave measurements for dynamic cardiac stiffness evaluation in pigs

36. Serial Non-Invasive Myocardial Work Measurements for Patient Risk Stratification and Early Detection of Cancer Therapeutics-Related Cardiac Dysfunction in Breast Cancer Patients: A Single-Centre Observational Study

39. Visual Presence of Mechanical Dyssynchrony Combined With Septal Scarring Identifies Responders to Cardiac Resynchronization Therapy

42. Clinical and Experimental Evidence for a Strain-Based Classification of Left Bundle Branch Block-Induced Cardiac Remodeling

47. Can nuclear imaging accurately detect scar in ischemic cardiac resynchronization therapy candidates?

50. Right ventricular strain related to pulmonary artery pressure predicts clinical outcome in patients with pulmonary arterial hypertension.

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