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1. Inositol Trisphosphate Receptors and Nuclear Calcium in Atrial Fibrillation

2. Atrial Cardiomyocytes contribute to the Inflammatory Status associated with Atrial Fibrillation in Right Heart Disease

4. The role of cellular senescence in profibrillatory atrial remodelling associated with cardiac pathology

5. An inflammation resolution–promoting intervention prevents atrial fibrillation caused by left ventricular dysfunction

6. The role of cellular senescence in profibrillatory atrial remodelling associated with cardiac pathology

7. An inflammation resolution–promoting intervention prevents atrial fibrillation caused by left ventricular dysfunction

9. Atrial cardiomyocytes contribute to the inflammatory status associated with atrial fibrillation in right heart disease.

17. MicroRNA-26 governs profibrillatory inward-rectifier potassium current changes in atrial fibrillation

18. Genomic structure, transcriptional control, and tissue distribution of HERG1 and KCNQ1 genes

19. The muscle-specific microRNA miR-1 regulates cardiac arrhythmogenic potential by targeting GJA1 and KCNJ2

20. Restoring depressed HERG [K.sup.+] channel function as a mechanism for insulin treatment of abnormal QT prolongation and associated arrhythmias in diabetic rabbits

26. The inflammation-resolution promoting molecule resolvin-D1 prevents atrial proarrhythmic remodelling in experimental right heart disease.

28. Role of atrial arrhythmia and ventricular response in atrial fibrillation induced atrial remodelling.

32. Intracellular Angiotensin‐II Interacts With Nuclear Angiotensin Receptors in Cardiac Fibroblasts and Regulates RNA Synthesis, Cell Proliferation, and Collagen Secretion

36. The muscle-specific microRNA miR-1 regulates cardiac arrhythmogenic potential by targeting GJA1 and KCNJ2

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