95 results on '"sinoatrial node"'
Search Results
2. Lifelong longitudinal assessment of the contribution of multi-fractal fluctuations to heart rate and heart rate variability in aging mice: role of the sinoatrial node and autonomic nervous system
3. Physiological effects of ivabradine in heart failure and beyond
4. α1-Adrenergic Receptors Control the Activity of Sinoatrial Node by Modulating Transmembrane Transport of Chloride Anions
5. Heinrich Ewald Hering’s discovery of the heart pacemaker: Hering, Tawara and Aschoff’s search for its morphological basis, the sinoatrial node, and why they failed
6. Harnessing cell reprogramming for cardiac biological pacing
7. Development of a new histological identification method of human sinoatrial node suitable for immunohistochemical study
8. Depressed HCN4 function in the type 2 diabetic sinoatrial node
9. Emergence of heartbeat frailty in advanced age I: perspectives from life-long EKG recordings in adult mice
10. Respiratory variability of sinus node activation in humans: insights from ultra-high-density mapping
11. The Molecular and Cellular Mechanisms of Heart Pacemaker Development in Vertebrates
12. Quality control in scRNA-Seq can discriminate pacemaker cells: the mtRNA bias
13. Virus-induced inhibition of cardiac pacemaker channel HCN4 triggers bradycardia in human-induced stem cell system
14. Sinoatrial node pacemaker cells share dominant biological properties with glutamatergic neurons
15. Transcriptome profile of the sinoatrial ring reveals conserved and novel genetic programs of the zebrafish pacemaker
16. TRPM7 regulates angiotensin II-induced sinoatrial node fibrosis in sick sinus syndrome rats by mediating Smad signaling
17. Mathematical Simulation of the Pacemaker Activity of Rabbit Sinoatrial Node Cells Using Similitude Theory
18. The effects of intracellular calcium dynamics on the electrical activity of the cells of the sinoatrial node
19. β1-Adrenergic blocker bisoprolol reverses down-regulated ion channels in sinoatrial node of heart failure rats
20. Effects of Nicotinamide Adenine Dinucleotide (NAD+) and Diadenosine Tetraphosphate (Ap4A) on Electrical Activity of Working and Pacemaker Atrial Myocardium in Guinea Pigs
21. Hyperhomocysteinemia Alters Sinoatrial and Atrioventricular Nodal Function: Role of Magnesium in Attenuating These Effects
22. Effect of Exogenous Extracellular Nicotinamide Adenine Dinucleotide (NAD+) on Bioelectric Activity of the Pacemaker and Conduction System of the Heart
23. Simulation of the fibroblast effect on electrical activity of sinoatrial node cells
24. Carvedilol analog modulates both basal and stimulated sinoatrial node automaticity
25. Islet1 is a direct transcriptional target of the homeodomain transcription factor Shox2 and rescues the Shox2-mediated bradycardia
26. The mechanism of increased postnatal heart rate and sinoatrial node pacemaker activity in mice
27. Effect of Ibutilide on the Canine Cardiac Conduction System
28. Structure–Function Relationship in the Sinus and Atrioventricular Nodes
29. Functional M3 cholinoreceptors are present in pacemaker and working myocardium of murine heart
30. The Negative Chronotropic Effect of Cs+ Ions on Generation of Transmembrane Potentials in Mouse Sinoatrial Node Cells
31. Muscarinic-activated potassium current mediates the negative chronotropic effect of pilocarpine on the rabbit sinoatrial node
32. Protective effects of adenosine in rabbit sinoatrial node ischemia–reperfusion model in vivo: control of arrhythmia by hyperpolarization-activated cyclic nucleotide-gated (HCN)4 channels
33. Computer simulations of pacemaker shift in the sinoatrial node
34. Investigation of pacemaker shift in the rabbit sinoatrial node using the optical mapping technique
35. Computer simulation of the preautomatic pause in pacemaker cells of the sinoatrial node
36. Effects of muscarinic receptor stimulation on Ca2+ transient, cAMP production and pacemaker frequency of rabbit sinoatrial node cells
37. Morphological Analysis of Myocyte Relationships in the Sinoatrial Node in Rats
38. Transcription profiling of HCN-channel isotypes throughout mouse cardiac development
39. P2 purinergic receptor mRNA in rat and human sinoatrial node and other heart regions
40. HCN channels: Structure, cellular regulation and physiological function
41. To the formation of a unified rhythm in the heart sinoatrial node
42. Control of the unified rhythm of the heart
43. HCN4 provides a ‘depolarization reserve’ and is not required for heart rate acceleration in mice
44. Age-related down-regulation of HCN channels in rat sinoatrial node
45. Pathophysiology of HCN channels
46. Downregulation of neuronal sodium channel subunits Nav1.1 and Nav1.6 in the sinoatrial node from volume-overloaded heart failure rat
47. Biological pacemakers based on I f
48. Propagation of pacemaker activity
49. Computer modelling of the sinoatrial node
50. Gene therapy to create biological pacemakers
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