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PreviewIssue DateTitleAuthor(s)
2015High fat diet induced changes in gastric vagal afferent response to adiponectinKentish, S.; Ratcliff, K.; Li, H.; Wittert, G.; Page, A.
2015TRPV1 channels and gastric vagal afferent signalling in lean and high fat diet induced obese miceKentish, S.; Frisby, C.; Kritas, S.; Li, H.; Hatzinikolas, G.; O'Donnell, T.; Wittert, G.; Page, A.; Cota, D.
2014Altered gastric vagal mechanosensitivity in diet-induced obesity persists on return to normal chow and is accompanied by increased food intakeKentish, S.; O'Donnell, T.; Frisby, C.; Li, H.; Wittert, G.; Page, A.
2013Modulation of murine gastric vagal afferent mechanosensitivity by neuropeptide WLi, H.; Kentish, S.; Kritas, S.; Young, R.; Isaacs, N.; O'Donnell, T.; Blackshaw, L.; Wittert, G.; Page, A.
2015Neuropeptide W modulation of gastric vagal afferent mechanosensitivity: impact of age and sexLi, H.; Frisby, C.; O'Donnell, T.; Kentish, S.; Wittert, G.; Page, A.
2012Diet-induced adaptation of vagal afferent functionKentish, S.; Li, H.; Philp, L.; O'Donnell, T.; Isaacs, N.; Young, R.; Wittert, G.; Blackshaw, L.; Page, A.
2014Gastric neuropeptide W is regulated by meal-related nutrientsLi, H.; Feinle-Bisset, C.; Frisby, C.; Kentish, S.; Wittert, G.; Page, A.
2018The role of neuropeptide W in energy homeostasisLi, H.; Kentish, S.; Wittert, G.; Page, A.
2013Gastric vagal afferent modulation by leptin is influenced by food intake statusKentish, S.; O'Donnell, T.; Isaacs, N.; Young, R.; Li, H.; Harrington, A.; Brierley, S.; Wittert, G.; Blackshaw, L.; Page, A.