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3. Impaired Intracellular Calcium Buffering Contributes to the Arrhythmogenic Substrate in Atrial Myocytes From Patients With Atrial Fibrillation

4. Electrophysiological and calcium-handling development during long-term culture of human-induced pluripotent stem cell-derived cardiomyocytes

6. Lysosomal signalling pathways influence heart rhythm, and regulate atrial function

16. High-throughput methods for cardiac cellular electrophysiology studies: the road to personalized medicine.

17. Structure and dynamics of human cardiac fibroblast nanotubes

18. Atrial fibrillation-associated electrical remodelling in human induced pluripotent stem cell-derived atrial cardiomyocytes: a novel pathway for antiarrhythmic therapy development

21. Recording ten-fold larger IKr conductances with automated patch clamping using equimolar Cs+ solutions.

26. Abstract P3129: Strain-induced Cardiac Arrhythmias Caused By A Noonan Syndrome Mutation In Raf1 Can Be Suppressed By Modulation Of The Ras-mapk Pathway In Vitro

27. An Alternative Mechanism of Subcellular Iron Uptake Deficiency in Cardiomyocytes

28. Caveolin3 Stabilizes McT1-Mediated Lactate/Proton Transport in Cardiomyocytes

32. An Alternative Mechanism of Subcellular Iron Uptake Deficiency in Cardiomyocytes

37. Metabolic remodelling in atrial fibrillation: manifestations, mechanisms and clinical implications

40. Phosphodiesterase 8 governs cAMP/PKA-dependent reduction of L-type calcium current in human atrial fibrillation: a novel arrhythmogenic mechanism

42. DNA damage in cytoskeletal protein variant-induced atrial fibrillation: A guide to novel treatment and screening targets (DnAFiX)

48. Contributors

49. Phosphodiesterase 8 governs cAMP/PKA-dependent reduction of L-type calcium current in human atrial fibrillation: a novel arrhythmogenic mechanism.

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