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Filters: Keyword is Inhibitory Postsynaptic Potentials  [Clear All Filters]
2015
Crosby, Karen M., Dinara V. Baimoukhametova, Jaideep S. Bains, and Quentin J. Pittman. "Postsynaptic Depolarization Enhances GABA Drive to Dorsomedial Hypothalamic Neurons through Somatodendritic Cholecystokinin Release." J Neurosci 35, no. 38 (2015): 13160-70.
2014
Tyan, Leonid, Simon Chamberland, Elise Magnin, Olivier Camiré, Ruggiero Francavilla, Linda Suzanne David, Karl Deisseroth, and Lisa Topolnik. "Dendritic inhibition provided by interneuron-specific cells controls the firing rate and timing of the hippocampal feedback inhibitory circuitry." J Neurosci 34, no. 13 (2014): 4534-47.
Cusulin, Jaclyn I. Wamsteek, Laura Senst, Campbell G Teskey, and Jaideep S. Bains. "Experience salience gates endocannabinoid signaling at hypothalamic synapses." J Neurosci 34, no. 18 (2014): 6177-81.
Xie, Yicheng, Shangbin Chen, Yujin Wu, and Timothy H. Murphy. "Prolonged deficits in parvalbumin neuron stimulation-evoked network activity despite recovery of dendritic structure and excitability in the somatosensory cortex following global ischemia in mice." J Neurosci 34, no. 45 (2014): 14890-900.
2013
Bories, Cyril, Zoé Husson, Matthieu J. Guitton, and Yves De Koninck. "Differential balance of prefrontal synaptic activity in successful versus unsuccessful cognitive aging." J Neurosci 33, no. 4 (2013): 1344-56.
Cusulin, Jaclyn I. Wamsteek, Tamás Füzesi, Wataru Inoue, and Jaideep S. Bains. "Glucocorticoid feedback uncovers retrograde opioid signaling at hypothalamic synapses." Nat Neurosci 16, no. 5 (2013): 596-604.
Inoue, Wataru, Dinara V. Baimoukhametova, Tamás Füzesi, Jaclyn I. Wamsteek Cusulin, Kathrin Koblinger, Patrick J. Whelan, Quentin J. Pittman, and Jaideep S. Bains. "Noradrenaline is a stress-associated metaplastic signal at GABA synapses." Nat Neurosci 16, no. 5 (2013): 605-12.
2012
Raingo, Jesica, Mikhail Khvotchev, Pei Liu, Frederic Darios, Ying C. Li, Denise M. O. Ramirez, Megumi Adachi, Philippe Lemieux, Katalin Toth, Bazbek Davletov et al. "VAMP4 directs synaptic vesicles to a pool that selectively maintains asynchronous neurotransmission." Nat Neurosci 15, no. 5 (2012): 738-45.