372 results on '"Bányász, Tamás"'
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2. Balance Between Rapid Delayed Rectifier K+ Current and Late Na+ Current on Ventricular Repolarization
3. Altered K+ current profiles underlie cardiac action potential shortening in hyperkalemia and β-adrenergic stimulation
4. Enhanced Depolarization Drive in Failing Rabbit Ventricular Myocytes
5. β-adrenergic regulation of late Na+ current during cardiac action potential is mediated by both PKA and CaMKII
6. Complex electrophysiological remodeling in postinfarction ischemic heart failure
7. Ion current profiles in canine ventricular myocytes obtained by the “onion peeling” technique
8. Ca2+-activated Cl− current is antiarrhythmic by reducing both spatial and temporal heterogeneity of cardiac repolarization
9. Beta-Adrenergic Activation of the Inward Rectifier K + Current Is Mediated by the CaMKII Pathway in Canine Ventricular Cardiomyocytes.
10. Implication of frequency-dependent protocols in antiarrhythmic and proarrhythmic drug testing
11. Ionic Current Changes during Action Potentials in Porcine Post-MI Heart Failure Model
12. Electrophysiological Determination of Submembrane Na+ Concentration in Cardiac Myocytes
13. Late sodium current in human, canine and guinea pig ventricular myocardium
14. Mexiletine-like cellular electrophysiological effects of GS967 in canine ventricular myocardium
15. Optimizing Population Variability to Maximize Benefit
16. Recording of Ionic Currents Under Physiological Conditions: Action Potential-Clamp and ‘Onion-Peeling’ Techniques
17. Ca2 +-activated Cl− current is antiarrhythmic by reducing both spatial and temporal heterogeneity of cardiac repolarization
18. Selective Inhibition of Cardiac Late Na+ Current Is Based on Fast Offset Kinetics of the Inhibitor
19. Sarcolemmal Ca2+-entry through L-type Ca2+ channels controls the profile of Ca2+-activated Cl− current in canine ventricular myocytes
20. Conductance Changes of Na+ Channels during the Late Na+ Current Flowing under Action Potential Voltage Clamp Conditions in Canine, Rabbit, and Guinea Pig Ventricular Myocytes
21. ABT-333 (Dasabuvir) Increases Action Potential Duration and Provokes Early Afterdepolarizations in Canine Left Ventricular Cells via Inhibition of IKr
22. Frequency-dependent effects of omecamtiv mecarbil on cell shortening of isolated canine ventricular cardiomyocytes
23. Pharmacological Modulation and (Patho)Physiological Roles of TRPM4 Channel—Part 2: TRPM4 in Health and Disease
24. Selective Inhibition of Cardiac Late Na + Current Is Based on Fast Offset Kinetics of the Inhibitor.
25. Dynamics of the late Na+ current during cardiac action potential and its contribution to afterdepolarizations
26. Effects of pioglitazone on cardiac ion currents and action potential morphology in canine ventricular myocytes
27. Ca2 + waves in the heart
28. Contribution of ion currents to beat-to-beat variability of action potential duration in canine ventricular myocytes
29. Profile of L-type Ca 2+ current and Na +/Ca 2+ exchange current during cardiac action potential in ventricular myocytes
30. Correction: Kovács et al. ABT-333 (Dasabuvir) Increases Action Potential Duration and Provokes Early Afterdepolarizations in Canine Left Ventricular Cells via Inhibition of I Kr. Pharmaceuticals 2023, 16 , 488.
31. Therapeutic Approaches of Ryanodine Receptor-Associated Heart Diseases
32. Pharmacological Modulation and (Patho)Physiological Roles of TRPM4 Channel—Part 1: Modulation of TRPM4
33. 9–Anthracene carboxylic acid is more suitable than DIDS for characterization of calcium-activated chloride current during canine ventricular action potential
34. Asynchronous activation of calcium and potassium currents by isoproterenol in canine ventricular myocytes
35. Conductance Changes of Na + Channels during the Late Na + Current Flowing under Action Potential Voltage Clamp Conditions in Canine, Rabbit, and Guinea Pig Ventricular Myocytes.
36. Late Na+ Current Is [Ca2+]i-Dependent in Canine Ventricular Myocytes
37. Pharmacological Modulation and (Patho)Physiological Roles of TRPM4 Channel—Part 2: TRPM4 in Health and Disease
38. Electrophysiological Effects of the Transient Receptor Potential Melastatin 4 Channel Inhibitor 4-chloro-2-(2-chlorophenoxy)acetamido) Benzoic Acid (CBA) in Canine Left Ventricular Cardiomyocytes
39. Effects of tacrolimus on action potential configuration and transmembrane ion currents in canine ventricular cells
40. Tetrodotoxin blocks L-type Ca2+ channels in canine ventricular cardiomyocytes
41. Effects of the PKC inhibitors chelerythrine and bisindolylmaleimide I (GF 109203X) on delayed rectifier K+ currents
42. Effects of ropinirole on action potential characteristics and the underlying ion currents in canine ventricular myocytes
43. Reverse rate-dependent changes are determined by baseline action potential duration in mammalian and human ventricular preparations
44. Contribution of I Kr and I K1 to ventricular repolarization in canine and human myocytes: is there any influence of action potential duration?
45. Canine Myocytes Represent a Good Model for Human Ventricular Cells Regarding Their Electrophysiological Properties
46. Late Sodium Current Inhibitors as Potential Antiarrhythmic Agents
47. Contribution of I Ks to ventricular repolarization in canine myocytes
48. L-364,373 fails to activate the slow delayed rectifier K+ current in canine ventricular cardiomyocytes
49. Eavesdropping on the Social Lives of Ca 2+ Sparks
50. A New Approach to the Detection and Statistical Classification of Ca 2+ Sparks
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