The paraventricular nucleus of the hypothalamus–a potential target for integrative treatment of autonomic dysfunction AV Ferguson, KJ Latchford, WK Samson Expert opinion on therapeutic targets 12 (6), 717-727, 2008 | 364 | 2008 |
Sensory circumventricular organs: central roles in integrated autonomic regulation GT Cottrell, AV Ferguson Regulatory peptides 117 (1), 11-23, 2004 | 256 | 2004 |
The area postrema: a brain monitor and integrator of systemic autonomic state CJ Price, TD Hoyda, AV Ferguson The Neuroscientist 14 (2), 182-194, 2008 | 239 | 2008 |
Nitric oxide actions in paraventricular nucleus: cardiovascular and neurochemical implications T Horn, PM Smith, BE McLaughlin, L Bauce, GS Marks, QJ Pittman, ... American Journal of Physiology-Regulatory, Integrative and Comparative …, 1994 | 223 | 1994 |
Obestatin acts in brain to inhibit thirst WK Samson, MM White, C Price, AV Ferguson American Journal of Physiology-Regulatory, Integrative and Comparative …, 2007 | 217 | 2007 |
Facilitatory influence of noradrenergic afferents on the excitability of rat paraventricular nucleus neurosecretory cells. TA Day, AV Ferguson, LP Renaud The Journal of physiology 355 (1), 237-249, 1984 | 214 | 1984 |
The orexin/hypocretin system: a critical regulator of neuroendocrine and autonomic function AV Ferguson, WK Samson Frontiers in neuroendocrinology 24 (3), 141-150, 2003 | 209 | 2003 |
The sensory circumventricular organs: brain targets for circulating signals controlling ingestive behavior M Fry, AV Ferguson Physiology & behavior 91 (4), 413-423, 2007 | 196 | 2007 |
Nitric oxide regulates NMDA‐driven GABAergic inputs to type I neurones of the rat paraventricular nucleus. JS Bains, AV Ferguson The Journal of Physiology 499 (3), 733-746, 1997 | 190 | 1997 |
Orexin actions in hypothalamic paraventricular nucleus: physiological consequences and cellular correlates WK Samson, MM Taylor, M Follwell, AV Ferguson Regulatory peptides 104 (1-3), 97-103, 2002 | 186 | 2002 |
Nesfatin-1 inhibits NPY neurons in the arcuate nucleus CJ Price, WK Samson, AV Ferguson Brain research 1230, 99-106, 2008 | 182 | 2008 |
Paraventricular nucleus neurons projecting to the spinal cord receive excitatory input from the subfornical organ JS Bains, AV Ferguson American Journal of Physiology-Regulatory, Integrative and Comparative …, 1995 | 181 | 1995 |
Angiotensin II: a peptidergic neurotransmitter in central autonomic pathways AV Ferguson, DLS Washburn Progress in neurobiology 54 (2), 169-192, 1998 | 170 | 1998 |
Subfornical organ efferents to paraventricular nucleus utilize angiotensin as a neurotransmitter Z Li, AV Ferguson American Journal of Physiology-Regulatory, Integrative and Comparative …, 1993 | 162 | 1993 |
Actions of angiotensin in the subfornical organ and area postrema: implications for long term control of autonomic output AV Ferguson, JS Bains Clinical and experimental pharmacology and physiology 24 (1), 96-101, 1997 | 155 | 1997 |
Electrophysiology of the circumventricular organs AV Ferguson, JS Bains Frontiers in neuroendocrinology 17 (4), 440-475, 1996 | 153 | 1996 |
Hormonal and neurotransmitter roles for angiotensin in the regulation of central autonomic function AV Ferguson, DLS Washburn, KJ Latchford Experimental biology and medicine 226 (2), 85-96, 2001 | 152 | 2001 |
Angiotensin II actions in paraventricular nucleus: functional evidence for neurotransmitter role in efferents originating in subfornical organ JS Bains, A Potyok, AV Ferguson Brain research 599 (2), 223-229, 1992 | 152 | 1992 |
Systemic angiotensin acts at subfornical organ to facilitate activity of neurohypophysial neurons AV Ferguson, LP Renaud American Journal of Physiology-Regulatory, Integrative and Comparative …, 1986 | 143 | 1986 |
Functional evidence that the angiotensin antagonist losartan crosses the blood-brain barrier in the rat Z Li, JS Bains, AV Ferguson Brain research bulletin 30 (1-2), 33-39, 1993 | 141 | 1993 |