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2. Current perspectives on Coronavirus 2019 (COVID‐19) and cardiovascular disease: A white paper by the JAHA editors

3. Current Perspectives on Coronavirus Disease 2019 and Cardiovascular Disease: A White Paper by the JAHA Editors.

6. Genetic background determines the severity of age-dependent cardiac structural abnormalities and arrhythmia susceptibility in Scn5a-1798insD mice.

7. Chronic Mexiletine Administration Increases Sodium Current in Non-Diseased Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes.

8. Decreasing microtubule detyrosination modulates Nav1.5 subcellular distribution and restores sodium current in mdx cardiomyocytes.

10. Hypertrophic cardiomyopathy dysfunction mimicked in human engineered heart tissue and improved by sodium–glucose cotransporter 2 inhibitors.

14. Gene- and variant-specific efficacy of serum/glucocorticoid-regulated kinase 1 inhibition in long QT syndrome types 1 and 2

16. Animal models and animal-free innovations for cardiovascular research

17. Gene- and variant-specific efficacy of serum/glucocorticoid-regulated kinase 1 inhibition in long QT syndrome types 1 and 2

19. DNA repair in cardiomyocytes is critical for maintaining cardiac function in mice

22. Guidelines for assessment of cardiac electrophysiology and arrhythmias in small animals

25. Sex- and age specific association of new-onset atrial fibrillation with in-hospital mortality in hospitalised COVID-19 patients

26. 2022 ESC Guidelines for the management of patients with ventricular arrhythmias and the prevention of sudden cardiac death

28. Subcellular diversity of Nav1.5 in cardiomyocytes: distinct functions, mechanisms and targets.

29. Inhibition of minor intron splicing reduces Na+ and Ca2+ channel expression and function in cardiomyocytes.

34. Sex- and age specific association of new-onset atrial fibrillation with in-hospital mortality in hospitalised COVID-19 patients

35. Edward Carmeliet (1930–2021)—channelling scientific curiosity: a tribute from the ESC Working Group on Cardiac Cellular Electrophysiology

37. Inhibition of minor intron splicing reduces Na+ and Ca2+ channel expression and function in cardiomyocytes.

38. Inhibition of minor intron splicing reduces Na+ and Ca2+ channel expression and function in cardiomyocytes.

39. ESC working group on cardiac cellular electrophysiology position paper: relevance, opportunities, and limitations of experimental models for cardiac electrophysiology research

40. Targeting the Microtubule EB1-CLASP2 Complex Modulates Na V 1.5 at Intercalated Discs

42. Chronically elevated branched chain amino acid levels are pro-arrhythmic

46. Sex-Related Differences in Cardiac Channelopathies

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