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Robert Ritter
Robert Ritter
Professor of Physiology and Neuroscience, Washington State University
在 vetmed.wsu.edu 的电子邮件经过验证
标题
引用次数
年份
CCK-sensitive C fibers activate NTS leptin receptor-expressing neurons via NMDA receptors
DM Neyens, L Brenner, R Calkins, ET Winzenried, RC Ritter, ...
American Journal of Physiology-Regulatory, Integrative and Comparative …, 2024
2024
Lesion of NPY Receptor-expressing Neurons in Perifornical Lateral Hypothalamus Attenuates Glucoprivic Feeding
PP Choi, Q Wang, LA Brenner, AJ Li, RC Ritter, SM Appleyard
Endocrinology, bqae021, 2024
2024
Chemogenetic activation of ventral medullary astrocytes enhances feeding and corticosterone release in response to mild glucoprivation
AJ Li, Q Wang, RC Rogers, G Herman, RC Ritter, S Ritter
American Journal of Physiology-Regulatory, Integrative and Comparative …, 2023
2023
Linking drug and food addiction via compulsive appetite
A Laque, GE Wagner, A Matzeu, GL De Ness, TM Kerr, AM Carroll, ...
British journal of pharmacology 179 (11), 2589-2609, 2022
102022
Leptin sensitizes NTS neurons to vagal input by increasing postsynaptic NMDA receptor currents
D Neyens, H Zhao, NJ Huston, GA Wayman, RC Ritter, SM Appleyard
Journal of Neuroscience 40 (37), 7054-7064, 2020
292020
Neuroanat and Physiology of Abdominal Vagal Afferents
S Ritter, RC Ritter, CD Barnes
CRC Press, 2020
2020
Participation of vagal sensory neurons in putative satiety signals from the upper gastrointestinal tract
RC Ritter, L Brenner, DP Yox
Neuroanat and Physiology of Abdominal Vagal Afferents, 221-248, 2020
602020
Obesity, Diabetes and Energy Homeostasis: NPY2 receptor activation in the dorsal vagal complex increases food intake and attenuates CCK-induced satiation in male rats
NJ Huston, LA Brenner, ZC Taylor, RC Ritter
American Journal of Physiology-Regulatory, Integrative and Comparative …, 2019
2019
NPY2 receptor activation in the dorsal vagal complex increases food intake and attenuates CCK-induced satiation in male rats
NJ Huston, LA Brenner, ZC Taylor, RC Ritter
American Journal of Physiology-Regulatory, Integrative and Comparative …, 2019
72019
ADDICTION-LINKED DRUG AND ALCOHOL HISTORY RESULTS IN COMPULSIVE APPETITE VIA NON-HOMEOSTATIC PATHWAYS
A Laque, A Matzeu, GE Wagner, G De Ness, T Kerr, TC Jhou, RC Ritter, ...
ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH 41, 36A-36A, 2017
2017
11 Vagal Afferent Signaling and the Integration of Direct and Indirect
RC Ritter, CA Campos, J Nasse, JH Peters
Appetite and Food Intake: Central Control, 2017
2017
Vagal afferent signaling and the integration of direct and indirect controls of food intake
RC Ritter, CA Campos, J Nasse, JH Peters
Appetite and Food Intake, 229-258, 2017
72017
The neural control of movement must contend with trajectory-specific and nonlinearly distorted manifolds of afferent muscle spindle activity
JA Berry, R Ritter, A Nagamori, FJ Valero-Cuevas
2017 International Joint Conference on Neural Networks (IJCNN), 1188-1194, 2017
42017
Gastrointestinal Peptides and the Control of Food Intake
JF Davis, RC Ritter
Elsevier, 2017
2017
NMDA-type glutamate receptors participate in reduction of food intake following hindbrain melanocortin receptor activation
CA Campos, RC Ritter
American Journal of Physiology-Regulatory, Integrative and Comparative …, 2015
282015
Frequency‐dependent facilitation of synaptic throughput via postsynaptic NMDA receptors in the nucleus of the solitary tract
H Zhao, JH Peters, M Zhu, SJ Page, RC Ritter, SM Appleyard
The Journal of physiology 593 (1), 111-125, 2015
412015
Central vagal afferent endings mediate reduction of food intake by melanocortin-3/4 receptor agonist
CA Campos, H Shiina, RC Ritter
Journal of Neuroscience 34 (38), 12636-12645, 2014
352014
NMDA-type Glutamate Receptors Participate in Reduction of Food Intake Following
CA Campos, RC Ritter, RC Ritter
2014
Vagal afferent NMDA receptors modulate CCK-induced reduction of food intake through synapsin I phosphorylation in adult male rats
CA Campos, H Shiina, M Silvas, S Page, RC Ritter
Endocrinology 154 (8), 2613-2625, 2013
312013
CCK-induced reduction of food intake and hindbrain MAPK signaling are mediated by NMDA receptor activation
CA Campos, JS Wright, K Czaja, RC Ritter
Endocrinology 153 (6), 2633-2646, 2012
632012
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