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Andrew G Ramage

Showing results (1-10 of 24) with videos related to

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British Journal of Pharmacology|February 9, 2006
The role of central 5-hydroxytryptamine (5-HT, serotonin) receptors in the control of micturitionAndrew G Ramage
Trends in Pharmacological Sciences|December 17, 2008
5-hydroxytryptamine and cardiovascular regulationAndrew G Ramage, Carlos M Villalón
British Journal of Pharmacology|September 30, 2009
Evidence that 5-hydroxytryptamine(7) receptors play a role in the mediation of afferent transmission within the nucleus tractus solitarius in anaesthetized ratsDiana Oskutyte, David Jordan, Andrew G Ramage
European Journal of Pharmacology|July 19, 2011
Nicotine's central cardiovascular actions: receptor subtypes involved and their possible physiological role in anaesthetized ratsChristopher Moore, Yun Wang, Andrew G Ramage
Autonomic Neuroscience : Basic & Clinical|November 21, 2009
Both GABAA and GABAB receptors mediate vagal inhibition in nucleus tractus solitarii neurones in anaesthetized ratsYun Wang, David Jordan, Andrew G Ramage
European Journal of Pharmacology|April 17, 2004
Pharmacological studies of 8-OH-DPAT-induced pupillary dilation in anesthetized ratsYongxin Yu, Andrew G Ramage, Michael C Koss
The Journal of Physiology|December 22, 2004
Central 5-HT7 receptors are critical for reflex activation of cardiac vagal drive in anaesthetized ratsDaniel O Kellett, Andrew G Ramage, David Jordan
The Journal of Physiology|February 20, 2015
Cardiovascular afferents cause the release of 5-HT in the nucleus tractus solitarii; this release is regulated by the low- (PMAT) not the high-affinity transporter (SERT)Patrick S Hosford, Julian Millar, Andrew G Ramage
British Journal of Pharmacology|November 2, 2002
Modulation of reflexly evoked vagal bradycardias by central 5-HT1A receptors in anaesthetized rabbitsMatthew R Skinner, Andrew G Ramage, David Jordan
The Journal of Pharmacology and Experimental Therapeutics|March 13, 2014
5-hydroxytryptamine-mediated neurotransmission modulates spontaneous and vagal-evoked glutamate release in the nucleus of the solitary tract effect of uptake blockadePatrick S Hosford, Steve W Mifflin, Andrew G Ramage
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
British Journal of Pharmacology|February 9, 2006
The role of central 5-hydroxytryptamine (5-HT, serotonin) receptors in the control of micturitionAndrew G Ramage
Trends in Pharmacological Sciences|December 17, 2008
5-hydroxytryptamine and cardiovascular regulationAndrew G Ramage, Carlos M Villalón
British Journal of Pharmacology|September 30, 2009
Evidence that 5-hydroxytryptamine(7) receptors play a role in the mediation of afferent transmission within the nucleus tractus solitarius in anaesthetized ratsDiana Oskutyte, David Jordan, Andrew G Ramage
European Journal of Pharmacology|July 19, 2011
Nicotine's central cardiovascular actions: receptor subtypes involved and their possible physiological role in anaesthetized ratsChristopher Moore, Yun Wang, Andrew G Ramage
Autonomic Neuroscience : Basic & Clinical|November 21, 2009
Both GABAA and GABAB receptors mediate vagal inhibition in nucleus tractus solitarii neurones in anaesthetized ratsYun Wang, David Jordan, Andrew G Ramage
European Journal of Pharmacology|April 17, 2004
Pharmacological studies of 8-OH-DPAT-induced pupillary dilation in anesthetized ratsYongxin Yu, Andrew G Ramage, Michael C Koss
The Journal of Physiology|December 22, 2004
Central 5-HT7 receptors are critical for reflex activation of cardiac vagal drive in anaesthetized ratsDaniel O Kellett, Andrew G Ramage, David Jordan
The Journal of Physiology|February 20, 2015
Cardiovascular afferents cause the release of 5-HT in the nucleus tractus solitarii; this release is regulated by the low- (PMAT) not the high-affinity transporter (SERT)Patrick S Hosford, Julian Millar, Andrew G Ramage
British Journal of Pharmacology|November 2, 2002
Modulation of reflexly evoked vagal bradycardias by central 5-HT1A receptors in anaesthetized rabbitsMatthew R Skinner, Andrew G Ramage, David Jordan
The Journal of Pharmacology and Experimental Therapeutics|March 13, 2014
5-hydroxytryptamine-mediated neurotransmission modulates spontaneous and vagal-evoked glutamate release in the nucleus of the solitary tract effect of uptake blockadePatrick S Hosford, Steve W Mifflin, Andrew G Ramage
Pageof 3