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Neuroscience Letters|July 31, 1985
Excitation of neuronal function in rabbit caudal ventrolateral medulla elevates plasma vasopressinW W Blessing, J O WilloughbyThe American Journal of Physiology|June 1, 1994
Vasopressin secretion after stimulation of abdominal vagus in rabbit: role of A1 norepinephrine neuronsZ J Gieroba, W W BlessingThe American Journal of Physiology|October 1, 1987
Depressor neurons in rabbit caudal medulla do not transmit the baroreceptor-vasomotor reflexW W Blessing, J O WilloughbyNeuroscience|August 3, 1999
Amygdala co-ordinates sudden falls in ear pinna blood flow in response to unconditioned salient stimuli in conscious rabbitsY H Yu, W W BlessingAutonomic Neuroscience : Basic & Clinical|July 31, 2001
Neurons in amygdala mediate ear pinna vasoconstriction elicited by unconditioned salient stimuli in conscious rabbitsY H Yu, W W BlessingAmerican Journal of Physiology. Regulatory, Integrative and Comparative Physiology|April 6, 2000
Carotid and cardiopulmonary chemoreceptor activity increases hippocampal theta rhythm in conscious rabbitsY H Yu, W W BlessingBrain Research|December 16, 1982
Inhibitory cardiovascular function of neurons in the caudal ventrolateral medulla of the rabbit: relationship to the area containing A1 noradrenergic cellsW W Blessing, D J ReisThe Journal of Physiology|October 1, 1985
Inhibiting the rabbit caudal ventrolateral medulla prevents baroreceptor-initiated secretion of vasopressinW W Blessing, J O WilloughbyNeuroscience Letters|May 27, 1983
Evidence that GABA and glycine-like inputs inhibit vasodepressor neurons in the caudal ventrolateral medulla of the rabbitW W Blessing, D J ReisNeuroscience Letters|February 9, 1996
Nitric oxide synthesising neurons in the central subnucleus of the nucleus tractus solitarius in humansW P Gai, W W BlessingPageof 38