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1. Electrophysiological Effects of Ghrelin in the Hypothalamic Paraventricular Nucleus Neurons

2. Recent advances in central cardiovascular control: sex, ROS, gas and inflammation [version 1; referees: 2 approved]

3. The subfornical organ and organum vasculosum of the lamina terminalis: Critical roles in cardiovascular regulation and the control of fluid balance

4. The actions of ghrelin in the paraventricular nucleus: energy balance and neuroendocrine implications

5. Hydrogen sulfide regulates cardiovascular function by influencing the excitability of subfornical organ neurons.

6. The transcriptome of the rat subfornical organ is altered in response to early postnatal overnutrition

7. The subfornical organ and organum vasculosum of the lamina terminalis: Critical roles in cardiovascular regulation and the control of fluid balance

8. Phoenixin influences the excitability of nucleus of the solitary tract neurones, effects which are modified by environmental and glucocorticoid stress

9. Novel regulator of vasopressin secretion: phoenixin

10. Sex-specific differences in cardiovascular and metabolic hormones with integrated signalling in the paraventricular nucleus of the hypothalamus

11. Adropin acts in the rat paraventricular nucleus to influence neuronal excitability

12. Subfornical organ neurons integrate cardiovascular and metabolic signals

14. Phosphodiesterase 1C integrates store-operated calcium entry and cAMP signaling in leading-edge protrusions of migrating human arterial myocytes

15. Hydrogen sulfide depolarizes neurons in the nucleus of the solitary tract of the rat

16. Interaction between angiotensin II and glucose sensing at the subfornical organ

17. Electrophysiological Effects of Ghrelin in the Hypothalamic Paraventricular Nucleus Neurons

18. Brain‐derived neurotrophic factor acts at neurons of the subfornical organ to influence cardiovascular function

19. Tumor necrosis factor-α potentiates the effects of angiotensin II on subfornical organ neurons

20. The subfornical organ: A novel site for prolactin action

21. Physiological roles for the subfornical organ: a dynamic transcriptome shaped by autonomic state

22. Actions of a hydrogen sulfide donor (NaHS) on transient sodium, persistent sodium, and voltage-gated calcium currents in neurons of the subfornical organ

23. The proinflammatory cytokine tumor necrosis factor-α excites subfornical organ neurons

24. Sex-specific differences in cardiovascular and metabolic hormones with integrated signalling in the paraventricular nucleus of the hypothalamus

25. Glucose concentrations modulate brain-derived neurotrophic factor responsiveness of neurones in the paraventricular nucleus of the hypothalamus

26. Metabolic Signaling to the Central Nervous System: Routes Across the Blood Brain Barrier

27. The subfornical organ: a novel site of action of cholecystokinin

28. Regulation of Nervous System Function by Circumventricular Organs

29. Cellular Actions of Nesfatin-1 on Hypothalamic and Medullary Neurons

30. Circumventricular organs: Targets for integration of circulating fluid and energy balance signals?

31. Apelin acts in the subfornical organ to influence neuronal excitability and cardiovascular function

32. Effects of acetylcholine and cholinergic antagonists on the activity of nucleus of the solitary tract neurons

33. Nesfatin-1 influences the excitability of neurons in the nucleus of the solitary tract and regulates cardiovascular function

34. Cardiovascular Actions of Leptin in the Subfornical Organ are Abolished by Diet-Induced Obesity

35. Glucose-responsive neurons in the subfornical organ of the rat—a novel site for direct CNS monitoring of circulating glucose

36. Neurohumoral Integration of Cardiovascular Function by the Lamina Terminalis

37. Switching control of sympathetic activity from forebrain to hindbrain in chronic dehydration

38. The transcriptome of the medullary area postrema: the thirsty rat, the hungry rat and the hypertensive rat

39. Effects of albumin-conjugated PYY on food intake: the respective roles of the circumventricular organs and vagus nerve

40. Adiponectin Modulates Excitability of Rat Paraventricular Nucleus Neurons by Differential Modulation of Potassium Currents

41. Prokineticin 2 modulates the excitability of area postrema neurons in vitro in the rat

42. Gastrointestinal hormone actions in the central regulation of energy metabolism: potential sensory roles for the circumventricular organs

43. The subfornical organ: a central nervous system site for actions of circulating leptin

44. Adiponectin acts in the nucleus of the solitary tract to decrease blood pressure by modulating the excitability of neuropeptide Y neurons

45. Adiponectin Depolarizes Parvocellular Paraventricular Nucleus Neurons Controlling Neuroendocrine and Autonomic Function

46. Neuronostatin Encoded by the Somatostatin Gene Regulates Neuronal, Cardiovascular, and Metabolic Functions

47. Prokineticin 2 influences subfornical organ neurons through regulation of MAP kinase and the modulation of sodium channels

48. Nesfatin-1 Influences the Excitability of Paraventricular Nucleus Neurones

49. Adiponectin selectively inhibits oxytocin neurons of the paraventricular nucleus of the hypothalamus

50. Obestatin inhibits vasopressin secretion: evidence for a physiological action in the control of fluid homeostasis

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