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Neuroscience Research|August 1, 1992
Neurons in the nucleus of the solitary tract mediating inputs from emetic vagal afferents and the area postrema to the pattern generator for the emetic act in dogsT Koga, H FukudaNeuroscience Research|August 1, 1993
Hypercapnia and hypoxia which develop during retching participate in the transition from retching to expulsion in dogsH Fukuda, T KogaNeuroscience Research|December 1, 1991
The Bötzinger complex as the pattern generator for retching and vomiting in the dogH Fukuda, T KogaNeuroscience Research|September 1, 1995
Activation of peripheral and/or central chemoreceptors changes retching activities of Bötzinger complex neurons and induces expulsion in decerebrate dogsH Fukuda, T KogaEuropean Journal of Pharmacology|February 24, 1998
Capsaicin in the 4th ventricle abolishes retching and transmission of emetic vagal afferents to solitary nucleus neuronsY Shiroshita, T Koga, H FukudaExperimental Brain Research|April 18, 1998
The central pattern generator for vomiting may exist in the reticular area dorsomedial to the retrofacial nucleus in dogsT Koga, R Qu, H FukudaNeuroscience Letters|January 6, 1999
Non-N-methyl-D-aspartate receptors may mediate the transmission of emetic signals between visceral vagal afferents and the solitary nucleus in dogsN Furukawa, M Hatano, H Fukuda, et al.Neuroscience Research|March 30, 1999
The tachykinin NK1 receptor antagonist GR205171 abolishes the retching activity of neurons comprising the central pattern generator for vomiting in dogsH Fukuda, T Koga, N Furukawa, et al.The American Journal of Physiology|November 14, 1998
A neurokinin-1 receptor antagonist reduced hypersalivation and gastric contractility related to emesis in dogsN Furukawa, H Fukuda, M Hatano, et al.Brain Research|March 20, 1999
The site of the anti-emetic action of tachykinin NK1 receptor antagonists may exist in the medullary area adjacent to the semicompact part of the nucleus ambiguusH Fukuda, E Nakamura, T Koga, et al.Pageof 200