Amygdala intercalated neurons are required for expression of fear extinction E Likhtik, D Popa, J Apergis-Schoute, GA Fidacaro, D Paré Nature 454 (7204), 642-645, 2008 | 597 | 2008 |
Two different lateral amygdala cell populations contribute to the initiation and storage of memory JC Repa, J Muller, J Apergis, TM Desrochers, Y Zhou, JE LeDoux Nature neuroscience 4 (7), 724-731, 2001 | 569 | 2001 |
Lesions in the bed nucleus of the stria terminalis disrupt corticosterone and freezing responses elicited by a contextual but not by a specific cue-conditioned fear stimulus GM Sullivan, J Apergis, DEA Bush, LR Johnson, M Hou, JE Ledoux Neuroscience 128 (1), 7-14, 2004 | 397 | 2004 |
Left–right dissociation of hippocampal memory processes in mice OA Shipton, M El-Gaby, J Apergis-Schoute, K Deisseroth, DM Bannerman, ... Proceedings of the National Academy of Sciences 111 (42), 15238-15243, 2014 | 203 | 2014 |
Activation of central orexin/hypocretin neurons by dietary amino acids MM Karnani, J Apergis-Schoute, A Adamantidis, LT Jensen, L de Lecea, ... Neuron 72 (4), 616-629, 2011 | 202 | 2011 |
Coreleased orexin and glutamate evoke nonredundant spike outputs and computations in histamine neurons C Schöne, J Apergis-Schoute, T Sakurai, A Adamantidis, D Burdakov Cell reports 7 (3), 697-704, 2014 | 199 | 2014 |
Optogenetic probing of fast glutamatergic transmission from hypocretin/orexin to histamine neurons in situ C Schöne, ZFH Cao, J Apergis-Schoute, A Adamantidis, T Sakurai, ... Journal of Neuroscience 32 (36), 12437-12443, 2012 | 163 | 2012 |
Optogenetic evidence for inhibitory signaling from orexin to MCH neurons via local microcircuits J Apergis-Schoute, P Iordanidou, C Faure, S Jego, C Schöne, T Aitta-Aho, ... Journal of Neuroscience 35 (14), 5435-5441, 2015 | 141 | 2015 |
General principles of neuronal co-transmission: insights from multiple model systems E Svensson, J Apergis-Schoute, G Burnstock, MP Nusbaum, D Parker, ... Frontiers in neural circuits 12, 117, 2019 | 113 | 2019 |
Sex difference in physical activity, energy expenditure and obesity driven by a subpopulation of hypothalamic POMC neurons LK Burke, B Doslikova, G d'Agostino, M Greenwald-Yarnell, T Georgescu, ... Molecular metabolism 5 (3), 245-252, 2016 | 96 | 2016 |
Low-probability transmission of neocortical and entorhinal impulses through the perirhinal cortex JG Pelletier, J Apergis, D Paré Journal of Neurophysiology 91 (5), 2079-2089, 2004 | 78 | 2004 |
Methods for predicting cortical UP and DOWN states from the phase of deep layer local field potentials AB Saleem, P Chadderton, J Apergis-Schoute, KD Harris, SR Schultz Journal of computational neuroscience 29, 49-62, 2010 | 77 | 2010 |
Basal forebrain and brainstem cholinergic neurons differentially impact amygdala circuits and learning-related behavior T Aitta-Aho, YA Hay, BU Phillips, LM Saksida, TJ Bussey, O Paulsen, ... Current Biology 28 (16), 2557-2569. e4, 2018 | 73 | 2018 |
Rodent doxapram model of panic: behavioral effects and c-Fos immunoreactivity in the amygdala GM Sullivan, J Apergis, JM Gorman, JE LeDoux Biological psychiatry 53 (10), 863-870, 2003 | 73 | 2003 |
Ultrastructural organization of medial prefrontal inputs to the rhinal cortices J Apergis‐Schoute, A Pinto, D Paré European Journal of Neuroscience 24 (1), 135-144, 2006 | 58 | 2006 |
Muscarinic control of long-range GABAergic inhibition within the rhinal cortices J Apergis-Schoute, A Pinto, D Paré Journal of Neuroscience 27 (15), 4061-4071, 2007 | 53 | 2007 |
Cellular activation of hypothalamic hypocretin/orexin neurons facilitates short-term spatial memory in mice T Aitta-Aho, E Pappa, D Burdakov, J Apergis-Schoute Neurobiology of learning and memory 136, 183-188, 2016 | 50 | 2016 |
Accumbal cholinergic interneurons differentially influence motivation related to satiety signaling T Aitta-Aho, BU Phillips, E Pappa, YA Hay, F Harnischfeger, CJ Heath, ... Eneuro 4 (2), 2017 | 28 | 2017 |
Associative properties of the perirhinal network G Unal, J Apergis-Schoute, D Pare Cerebral Cortex 22 (6), 1318-1332, 2012 | 25 | 2012 |
Protein appetite drives macronutrient-related differences in ventral tegmental area neural activity G Chiacchierini, F Naneix, KZ Peters, J Apergis-Schoute, EMS Snoeren, ... Journal of Neuroscience 41 (23), 5080-5092, 2021 | 17 | 2021 |