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Results of search for 'su:"Subfornical Organ"', page 7 of 40
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Authors
Camargo, L A
Ciriello, J
Davisson, Robin L
Ferguson, A V
Ferguson, Alastair V
Fitts, D A
Gross, P M
Johnson, A K
Kadekaro, M
McKinley, M J
Nomura, M
Oldfield, B J
Saad, W A
Saavedra, J M
Saito, H
Schmid, H A
Seto, K
Simpson, J B
Tanaka, J
Tanaka, Junichi
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Topics
Angiotensin II
Animals
Blood Pressure
Brain
Drinking
Female
Male
Neurons
Neurosecretory Systems
Paraventricular Hypothalamic Nucleus
Rats
Rats, Inbred Strains
Rats, Sprague-Dawley
Rats, Wistar
Subfornical Organ
cytology
drug effects
metabolism
pharmacology
physiology
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121.
Dissociated adult rat subfornical organ neurons maintain membrane properties and angiotensin responsiveness for up to 6 days.
[electronic resource]
by
Ferguson, A V
Bicknell, R J
Carew, M A
Mason, W T
Producer:
19980205
In:
Neuroendocrinology
vol. 66
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122.
Cardiovascular actions of leptin in the subfornical organ are abolished by diet-induced obesity.
[electronic resource]
by
Smith, P M
Ferguson, A V
Producer:
20120827
In:
Journal of neuroendocrinology
vol. 24
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123.
Ionic mechanisms underlying tonic and burst firing behavior in subfornical organ neurons: a combined experimental and modeling study.
[electronic resource]
by
Medlock, Laura
Shute, Lauren
Fry, Mark
Standage, Dominic
Ferguson, Alastair V
Producer:
20190802
In:
Journal of neurophysiology
vol. 120
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124.
Neurophysiological analysis of mechanisms for subfornical organ and area postrema involvement in autonomic control.
[electronic resource]
by
Ferguson, A V
Producer:
19921125
In:
Progress in brain research
vol. 91
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125.
Central receptor sites for angiotensin-induced drinking: a critical review.
[electronic resource]
by
Simpson, J B
Mangiapane, M L
Dellmann, H D
Producer:
19790124
In:
Federation proceedings
vol. 37
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126.
Macromolecular changes in the subfornical organ area after dehydration and renin.
[electronic resource]
by
Summy-Long, J Y
Severs, W B
Producer:
19790917
In:
The American journal of physiology
vol. 237
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127.
Calcium-sensing receptor in the brain.
[electronic resource]
by
Yano, Shozo
Brown, Edward M
Chattopadhyay, Naibedya
Producer:
20040713
In:
Cell calcium
vol. 35
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128.
Salt and gene expression: evidence for [Na+]i/[K+]i-mediated signaling pathways.
[electronic resource]
by
Orlov, Sergei N
Hamet, Pavel
Producer:
20151026
In:
Pflugers Archiv : European journal of physiology
vol. 467
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129.
Response to angiotensin II after selective lesioning of brain regions believed to be involved in water intake regulation.
[electronic resource]
by
Volmert, R F
Firman, J D
Producer:
19920724
In:
Poultry science
vol. 71
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130.
Integrative peptides.
[electronic resource]
by
Hoebel, B G
Producer:
19851022
In:
Brain research bulletin
vol. 14
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131.
Terminal degeneration in supraoptic nucleus following subfornical organ lesions: ultrastructural observations in the rat.
[electronic resource]
by
Renaud, L P
Rogers, J
Sgro, S
Producer:
19831220
In:
Brain research
vol. 275
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132.
Accumulation of blood-borne horseradish peroxidase in medial portions of the mouse hippocampus.
[electronic resource]
by
Ueno, M
Akiguchi, I
Hosokawa, M
Yagi, H
Takemura, M
Kimura, J
Takeda, T
Producer:
19950420
In:
Acta neurologica Scandinavica
vol. 90
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133.
The subfornical organ as a model of neurohumoral integration.
[electronic resource]
by
Gross, P M
Producer:
19851015
In:
Brain research bulletin
vol. 15
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134.
Subfornical organ. Does it protect against angiotensin II-induced hypertension in the rat?
[electronic resource]
by
Bruner, C A
Mangiapane, M L
Fink, G D
Producer:
19850422
In:
Circulation research
vol. 56
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135.
Effect of arcuate nucleus activation on neuronal activity in subfornical organ.
[electronic resource]
by
Rosas-Arellano, M P
Solano-Flores, L P
Ciriello, J
Producer:
19931020
In:
Brain research
vol. 619
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136.
Effects of SFO lesions on salt appetite during multiple sodium depletions.
[electronic resource]
by
Ruhf, A A
Starbuck, E M
Fitts, D A
Producer:
20020307
In:
Physiology & behavior
vol. 74
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137.
Chronic effects of angiotensin II and at1 receptor antagonists in subfornical organ-lesioned rats.
[electronic resource]
by
Collister, John P
Hendel, Michael D
Producer:
20060117
In:
Clinical and experimental pharmacology & physiology
vol. 32
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138.
Neurons in the median preoptic nucleus of the rat with collateral branches to the subfornical organ and supraoptic nucleus.
[electronic resource]
by
Oldfield, B J
Hards, D K
McKinley, M J
Producer:
19920929
In:
Brain research
vol. 586
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139.
Systemic angiotensin acts at subfornical organ to facilitate activity of neurohypophysial neurons.
[electronic resource]
by
Ferguson, A V
Renaud, L P
Producer:
19861112
In:
The American journal of physiology
vol. 251
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140.
Electrophysiological evidence that circulating angiotensin II sensitive neurons in the subfornical organ alter the activity of hypothalamic paraventricular neurohypophyseal neurons in the rat.
[electronic resource]
by
Tanaka, J
Kaba, H
Saito, H
Seto, K
Producer:
19851112
In:
Brain research
vol. 342
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