1. Wulff P, Schonewille M, Renzi M, Viltono L, Sassoè-Pognetto M, Badura A, Gao Z, Hoebeek FE, van Dorp S, Wisden W et al.. (2009) Synaptic inhibition of Purkinje cells mediates consolidation of vestibulo-cerebellar motor learning.. Nat Neurosci, 12 (8): (1042-9). [PMID:19578381] |
2. Dunlop J et al.. (2009) Old and new pharmacology: positive allosteric modulation of the alpha7 nicotinic acetylcholine receptor by the 5-hydroxytryptamine(2B/C) receptor antagonist SB-206553 (3,5-dihydro-5-methyl-N-3-pyridinylbenzo[1,2-b:4,5-b']di pyrrole-1(2H)-carboxamide).. J Pharmacol Exp Ther, 328 (3): (766-76). [PMID:19050173] |
3. Kelamangalath L et al.. (2011) ?-Opioid receptor inhibition of calcium oscillations in spinal cord neurons.. Mol Pharmacol, 79 (6): (1061-71). [PMID:21422300] |
4. Di Angelantonio S et al.. (2014) A role for intracellular zinc in glioma alteration of neuronal chloride equilibrium.. Cell Death Dis, 5 (e1501). [PMID:25356870] |
5. Meunier CN et al.. (2013) 5-HT1A receptors direct the orientation of plasticity in layer 5 pyramidal neurons of the mouse prefrontal cortex.. Neuropharmacology, 71 (37-45). [PMID:23523560] |
6. Holmes NM et al.. (2017) a2-adrenoceptor-mediated inhibition in the central amygdala blocks fear-conditioning.. Sci Rep, 7 (11712). [PMID:28916748] |
7. Barker M et al.. (2012) Acoustic overexposure increases the expression of VGLUT-2 mediated projections from the lateral vestibular nucleus to the dorsal cochlear nucleus.. PLoS One, 7 (5): (e35955). [PMID:22570693] |
8. Bouthour W et al.. (2012) A human mutation in Gabrg2 associated with generalized epilepsy alters the membrane dynamics of GABAA receptors.. Cereb Cortex, 22 (7): (1542-53). [PMID:21908847] |
9. Pugh JR & Jahr CE. (2013) Activation of axonal receptors by GABA spillover increases somatic firing.. J Neurosci, 33 (43): (16924-9). [PMID:24155298] |
10. Uwechue NM et al.. (2012) Activation of glutamate transport evokes rapid glutamine release from perisynaptic astrocytes.. J Physiol, 590 (Pt 10): (2317-31). [PMID:22411007] |
11. Vilar B et al.. (2013) Alleviating pain hypersensitivity through activation of type 4 metabotropic glutamate receptor.. J Neurosci, 33 (48): (18951-65). [PMID:24285900] |
12. Tovar KR & Westbrook GL. (2012) Amino-terminal ligands prolong NMDA Receptor-mediated EPSCs.. J Neurosci, 32 (23): (8065-73). [PMID:22674281] |
13. Brown JT & Randall AD. (2009) Activity-dependent depression of the spike after-depolarization generates long-lasting intrinsic plasticity in hippocampal CA3 pyramidal neurons.. J Physiol, 587 (Pt 6): (1265-81). [PMID:19171653] |
14. Chamma I et al.. (2013) Activity-dependent regulation of the K/Cl transporter KCC2 membrane diffusion, clustering, and function in hippocampal neurons.. J Neurosci, 33 (39): (15488-503). [PMID:24068817] |
15. Salesse C et al.. (2011) Age-dependent remodelling of inhibitory synapses onto hippocampal CA1 oriens-lacunosum moleculare interneurons.. J Physiol, 589 (Pt 20): (4885-901). [PMID:21825029] |
16. Ren L et al.. (2018) Anesthetics alleviate learning and memory impairment induced by electroconvulsive shock by regulation of NMDA receptor-mediated metaplasticity in depressive rats.. Neurobiol Learn Mem, 155 (65-77). [PMID:29953948] |
17. Pugh JR & Jahr CE. (2011) Axonal GABAA receptors increase cerebellar granule cell excitability and synaptic activity.. J Neurosci, 31 (2): (565-74). [PMID:21228165] |
18. Groth RD et al.. (2011) Beta Ca2+/CaM-dependent kinase type II triggers upregulation of GluA1 to coordinate adaptation to synaptic inactivity in hippocampal neurons.. Proc Natl Acad Sci U S A, 108 (2): (828-33). [PMID:21187407] |
19. Sasaki T et al.. (2012) Application of an optogenetic byway for perturbing neuronal activity via glial photostimulation.. Proc Natl Acad Sci U S A, 109 (50): (20720-5). [PMID:23185019] |
20. Su LD & Shen Y. (2009) Blockade of glutamate transporters facilitates cerebellar synaptic long-term depression.. Neuroreport, 20 (5): (502-7). [PMID:19289926] |
21. Goz RU et al.. (2020) BRAFV600E expression in neural progenitors results in a hyperexcitable phenotype in neocortical pyramidal neurons.. J Neurophysiol, 123 (6): (2449-2464). [PMID:32401131] |
22. Greenwood SM & Bushell TJ. (2010) Astrocytic activation and an inhibition of MAP kinases are required for proteinase-activated receptor-2-mediated protection from neurotoxicity.. J Neurochem, 113 (6): (1471-80). [PMID:20402964] |
23. Wheeler DG et al.. (2012) Ca(V)1 and Ca(V)2 channels engage distinct modes of Ca(2+) signaling to control CREB-dependent gene expression.. Cell, 149 (5): (1112-24). [PMID:22632974] |
24. Younts TJ et al.. (2013) CA1 pyramidal cell theta-burst firing triggers endocannabinoid-mediated long-term depression at both somatic and dendritic inhibitory synapses.. J Neurosci, 33 (34): (13743-57). [PMID:23966696] |
25. Rock C & Apicella AJ. (2015) Callosal projections drive neuronal-specific responses in the mouse auditory cortex.. J Neurosci, 35 (17): (6703-13). [PMID:25926449] |
26. Ledgerwood CJ et al.. (2011) Cannabidiol inhibits synaptic transmission in rat hippocampal cultures and slices via multiple receptor pathways.. Br J Pharmacol, 162 (286-94). [PMID:20825410] |
27. Maroto M et al.. (2013) Chondroitin sulfate, a major component of the perineuronal net, elicits inward currents, cell depolarization, and calcium transients by acting on AMPA and kainate receptors of hippocampal neurons.. J Neurochem, [PMID:23350646] |
28. Evstratova A et al.. (2011) Cell type-specific and activity-dependent dynamics of action potential-evoked Ca2+ signals in dendrites of hippocampal inhibitory interneurons.. J Physiol, 589 (Pt 8): (1957-77). [PMID:21486769] |
29. Nissen W et al.. (2010) Cell type-specific long-term plasticity at glutamatergic synapses onto hippocampal interneurons expressing either parvalbumin or CB1 cannabinoid receptor.. J Neurosci, 30 (4): (1337-47). [PMID:20107060] |
30. Tyan L et al.. (2014) Dendritic inhibition provided by interneuron-specific cells controls the firing rate and timing of the hippocampal feedback inhibitory circuitry.. J Neurosci, 34 (13): (4534-47). [PMID:24671999] |
31. Mahler SV et al.. (2014) Designer receptors show role for ventral pallidum input to ventral tegmental area in cocaine seeking.. Nat Neurosci, 17 (4): (577-85). [PMID:24584054] |
32. Rudolph S et al.. (2011) Desynchronization of multivesicular release enhances Purkinje cell output.. Neuron, 70 (5): (991-1004). [PMID:21658590] |
33. Partridge JG et al.. (2014) Contrasting actions of group I metabotropic glutamate receptors in distinct mouse striatal neurones.. J Physiol, 592 (13): (2721-33). [PMID:24710062] |
34. Wills TA et al.. (2013) Developmental changes in the acute ethanol sensitivity of glutamatergic and GABAergic transmission in the BNST.. Alcohol, 47 (7): (531-7). [PMID:24103431] |
35. Yang Y & Xu-Friedman MA. (2015) Different pools of glutamate receptors mediate sensitivity to ambient glutamate in the cochlear nucleus.. J Neurophysiol, 113 (10): (3634-45). [PMID:25855696] |
36. Husson Z et al.. (2014) Differential GABAergic and glycinergic inputs of inhibitory interneurons and Purkinje cells to principal cells of the cerebellar nuclei.. J Neurosci, 34 (28): (9418-31). [PMID:25009273] |
37. Luo R et al.. (2013) Direct and GABA-mediated indirect effects of nicotinic ACh receptor agonists on striatal neurones.. J Physiol, 591 (Pt 1): (203-17). [PMID:23045343] |
38. Chen N et al.. (2016) Direct modulation of GFAP-expressing glia in the arcuate nucleus bi-directionally regulates feeding.. Elife, 5 [PMID:27751234] |
39. Maher BJ & LoTurco JJ. (2012) Disrupted-in-schizophrenia (DISC1) functions presynaptically at glutamatergic synapses.. PLoS One, 7 (3): (e34053). [PMID:22479520] |
40. García-Junco-Clemente P et al.. (2010) Cysteine string protein-alpha prevents activity-dependent degeneration in GABAergic synapses.. J Neurosci, 30 (21): (7377-91). [PMID:20505105] |
41. Han EB & Heinemann SF. (2013) Distal dendritic inputs control neuronal activity by heterosynaptic potentiation of proximal inputs.. J Neurosci, 33 (4): (1314-25). [PMID:23345207] |
42. Zhao Y et al.. (2009) Distinct functional and anatomical architecture of the endocannabinoid system in the auditory brainstem.. J Neurophysiol, 101 (5): (2434-46). [PMID:19279154] |
43. Luo R et al.. (2013) Distinct roles of synaptic and extrasynaptic GABAAreceptors in striatal inhibition dynamics.. Front Neural Circuits, 7 (186). [PMID:24324406] |
44. Marchionni I et al.. (2010) Distinctive properties of CXC chemokine receptor 4-expressing Cajal-Retzius cells versus GABAergic interneurons of the postnatal hippocampus.. J Physiol, 588 (Pt 15): (2859-78). [PMID:20547684] |
45. Herman MA et al.. (2011) Distribution of extracellular glutamate in the neuropil of hippocampus.. PLoS One, 6 (11): (e26501). [PMID:22069455] |
46. Chiu CQ et al.. (2010) Dopaminergic modulation of endocannabinoid-mediated plasticity at GABAergic synapses in the prefrontal cortex.. J Neurosci, 30 (21): (7236-48). [PMID:20505090] |
47. Neale SA et al.. (2014) Effect of VGLUT inhibitors on glutamatergic synaptic transmission in the rodent hippocampus and prefrontal cortex.. Neurochem Int, 73 (159-65). [PMID:24121008] |
48. Bard L et al.. (2010) Dynamic and specific interaction between synaptic NR2-NMDA receptor and PDZ proteins.. Proc Natl Acad Sci U S A, 107 (45): (19561-6). [PMID:20974938] |
49. Povysheva NV & Johnson JW. (2016) Effects of memantine on the excitation-inhibition balance in prefrontal cortex.. Neurobiol Dis, 96 (75-83). [PMID:27546057] |
50. De Saint Jan D et al.. (2009) External tufted cells drive the output of olfactory bulb glomeruli.. J Neurosci, 29 (7): (2043-52). [PMID:19228958] |
51. Roberts MT et al.. (2008) Fidelity of complex spike-mediated synaptic transmission between inhibitory interneurons.. J Neurosci, 28 (38): (9440-50). [PMID:18799676] |
52. Zhang L & Alger BE. (2010) Enhanced endocannabinoid signaling elevates neuronal excitability in fragile X syndrome.. J Neurosci, 30 (16): (5724-9). [PMID:20410124] |
53. . (1991) From the Centers for Disease Control. AIDS Clinical Trials Information Service.. JAMA, 266 (13): (1756). [PMID:1653860] |
54. Ster J et al.. (2011) Enhancement of CA3 hippocampal network activity by activation of group II metabotropic glutamate receptors.. Proc Natl Acad Sci U S A, 108 (24): (9993-7). [PMID:21628565] |
55. Trigo FF et al.. (2007) Enhancement of GABA release through endogenous activation of axonal GABA(A) receptors in juvenile cerebellum.. J Neurosci, 27 (46): (12452-63). [PMID:18003823] |
56. Stepan J et al.. (2012) Entorhinal theta-frequency input to the dentate gyrus trisynaptically evokes hippocampal CA1 LTP.. Front Neural Circuits, 6 (64). [PMID:22988432] |
57. Doengi M et al.. (2009) GABA uptake-dependent Ca(2+) signaling in developing olfactory bulb astrocytes.. Proc Natl Acad Sci U S A, 106 (41): (17570-5). [PMID:19805126] |
58. Li MH et al.. (2014) GABAergic transmission and enhanced modulation by opioids and endocannabinoids in adult rat rostral ventromedial medulla.. J Physiol, [PMID:25362151] |
59. Su LD et al.. (2010) Ethanol acutely modulates mGluR1-dependent long-term depression in cerebellum.. Alcohol Clin Exp Res, 34 (7): (1140-5). [PMID:20477778] |
60. Cohen SM et al.. (2015) Evolutionary and functional perspectives on signaling from neuronal surface to nucleus.. Biochem Biophys Res Commun, 460 (88-99). [PMID:25998737] |
61. Wills TA et al.. (2012) GluN2B subunit deletion reveals key role in acute and chronic ethanol sensitivity of glutamate synapses in bed nucleus of the stria terminalis.. Proc Natl Acad Sci U S A, 109 (5): (E278-87). [PMID:22219357] |
62. Anstötz M et al.. (2022) Glutamate released by Cajal-Retzius cells impacts specific hippocampal circuits and behaviors.. Cell Rep, 39 (7): (110822). [PMID:35584670] |
63. Takazawa T & MacDermott AB. (2010) Glycinergic and GABAergic tonic inhibition fine tune inhibitory control in regionally distinct subpopulations of dorsal horn neurons.. J Physiol, 588 (Pt 14): (2571-87). [PMID:20498232] |
64. Lalchandani RR & Vicini S. (2013) Inhibitory collaterals in genetically identified medium spiny neurons in mouse primary corticostriatal cultures.. Physiol Rep, 1 (6): (e00164). [PMID:24400165] |
65. Le Roux N et al.. (2013) Input-specific learning rules at excitatory synapses onto hippocampal parvalbumin-expressing interneurons.. J Physiol, 591 (Pt 7): (1809-22). [PMID:23339172] |
66. Chiu CQ & Castillo PE. (2008) Input-specific plasticity at excitatory synapses mediated by endocannabinoids in the dentate gyrus.. Neuropharmacology, 54 (68-78). [PMID:17706254] |
67. Baccini G et al.. (2012) Impaired chemosensitivity of mouse dorsal raphe serotonergic neurons overexpressing serotonin 1A (Htr1a) receptors.. PLoS One, 7 (9): (e45072). [PMID:23028768] |
68. Lanore F et al.. (2010) Impaired development of hippocampal mossy fibre synapses in mouse mutants for the presynaptic scaffold protein Bassoon.. J Physiol, 588 (Pt 12): (2133-45). [PMID:20421286] |
69. Fekete CD et al.. (2017) In vivo transgenic expression of collybistin in neurons of the rat cerebral cortex.. J Comp Neurol, 525 (5): (1291-1311). [PMID:27804142] |
70. Zurita H et al.. (2018) Layer 5 Callosal Parvalbumin-Expressing Neurons: A Distinct Functional Group of GABAergic Neurons.. Front Cell Neurosci, 12 (53). [PMID:29559891] |
71. Colavita M et al.. (2016) Layer-specific potentiation of network GABAergic inhibition in the CA1 area of the hippocampus.. Sci Rep, 6 (28454). [PMID:27345695] |
72. Ermolyuk YS et al.. (2012) Independent regulation of Basal neurotransmitter release efficacy by variable Ca²+ influx and bouton size at small central synapses.. PLoS Biol, 10 (9): (e1001396). [PMID:23049481] |
73. Gan J et al.. (2011) Indirect modulation of neuronal excitability and synaptic transmission in the hippocampus by activation of proteinase-activated receptor-2.. Br J Pharmacol, 163 (5): (984-94). [PMID:21366553] |
74. Fadool DA et al.. (2011) Mitral cells of the olfactory bulb perform metabolic sensing and are disrupted by obesity at the level of the Kv1.3 ion channel.. PLoS One, 6 (9): (e24921). [PMID:21966386] |
75. Chamberlain SE et al.. (2013) Long-term depression of synaptic kainate receptors reduces excitability by relieving inhibition of the slow afterhyperpolarization.. J Neurosci, 33 (22): (9536-45). [PMID:23719820] |
76. Borisovska M et al.. (2011) Loss of olfactory cell adhesion molecule reduces the synchrony of mitral cell activity in olfactory glomeruli.. J Physiol, 589 (Pt 8): (1927-41). [PMID:21486802] |
77. Roberts MT & Trussell LO. (2010) Molecular layer inhibitory interneurons provide feedforward and lateral inhibition in the dorsal cochlear nucleus.. J Neurophysiol, 104 (5): (2462-73). [PMID:20719922] |
78. Soto D et al.. (2014) Molecular Mechanisms Contributing to TARP Regulation of Channel Conductance and Polyamine Block of Calcium-Permeable AMPA Receptors.. J Neurosci, 34 (35): (11673-83). [PMID:25164663] |
79. Najac M et al.. (2011) Monosynaptic and polysynaptic feed-forward inputs to mitral cells from olfactory sensory neurons.. J Neurosci, 31 (24): (8722-9). [PMID:21677156] |
80. Jo J et al.. (2010) Muscarinic receptors induce LTD of NMDAR EPSCs via a mechanism involving hippocalcin, AP2 and PSD-95.. Nat Neurosci, 13 (10): (1216-24). [PMID:20852624] |
81. Mast TG & Fadool DA. (2012) Mature and precursor brain-derived neurotrophic factor have individual roles in the mouse olfactory bulb.. PLoS One, 7 (2): (e31978). [PMID:22363780] |
82. Trapani JG & Nicolson T. (2011) Mechanism of spontaneous activity in afferent neurons of the zebrafish lateral-line organ.. J Neurosci, 31 (5): (1614-23). [PMID:21289170] |
83. Zhao Y et al.. (2011) Mechanisms underlying input-specific expression of endocannabinoid-mediated synaptic plasticity in the dorsal cochlear nucleus.. Hear Res, 279 (1-2): (67-73). [PMID:21426926] |
84. Tang AH et al.. (2011) Nerve terminal nicotinic acetylcholine receptors initiate quantal GABA release from perisomatic interneurons by activating axonal T-type (Cav3) Ca²? channels and Ca²? release from stores.. J Neurosci, 31 (38): (13546-61). [PMID:21940446] |
85. Du H et al.. (2013) Neuregulin-1 impairs the long-term depression of hippocampal inhibitory synapses by facilitating the degradation of endocannabinoid 2-AG.. J Neurosci, 33 (38): (15022-31). [PMID:24048832] |
86. Kitko KE et al.. (2018) Membrane cholesterol mediates the cellular effects of monolayer graphene substrates.. Nat Commun, 9 (796). [PMID:29476054] |
87. Cosgrove KE & Maccaferri G. (2012) mGlu1a-dependent recruitment of excitatory GABAergic input to neocortical Cajal-Retzius cells.. Neuropharmacology, 63 (3): (486-93). [PMID:22579657] |
88. Doengi M et al.. (2008) New evidence for purinergic signaling in the olfactory bulb: A2A and P2Y1 receptors mediate intracellular calcium release in astrocytes.. FASEB J, 22 (7): (2368-78). [PMID:18310463] |
89. Lu C et al.. (2015) Micro-electrode array recordings reveal reductions in both excitation and inhibition in cultured cortical neuron networks lacking Shank3.. Mol Psychiatry, [PMID:26598066] |
90. Pugh JR & Jahr CE. (2011) NMDA receptor agonists fail to alter release from cerebellar basket cells.. J Neurosci, 31 (46): (16550-5). [PMID:22090481] |
91. Quattrocolo G & Maccaferri G. (2013) Novel GABAergic circuits mediating excitation/inhibition of Cajal-Retzius cells in the developing hippocampus.. J Neurosci, 33 (13): (5486-98). [PMID:23536064] |
92. Lafourcade CA et al.. (2009) Novel mGluR- and CB1R-independent suppression of GABA release caused by a contaminant of the group I metabotropic glutamate receptor agonist, DHPG.. PLoS One, 4 (7): (e6122). [PMID:19568435] |
93. Barker GR & Warburton EC. (2013) Object-in-Place Associative Recognition Memory Depends on Glutamate Receptor Neurotransmission Within Two Defined Hippocampal-Cortical Circuits: A Critical Role for AMPA and NMDA Receptors in the Hippocampus, Perirhinal, and Prefrontal Cortices.. Cereb Cortex, [PMID:24035904] |
94. Kaplan JS et al.. (2013) Opposite actions of alcohol on tonic GABAA receptor currents mediated by nNOS and PKC activity.. Nat Neurosci, 16 (12): (1783-93). [PMID:24162656] |
95. Nagode DA et al.. (2011) Optogenetic release of ACh induces rhythmic bursts of perisomatic IPSCs in hippocampus.. PLoS One, 6 (11): (e27691). [PMID:22110723] |
96. Balia M et al.. (2015) Postnatal down-regulation of the GABAA receptor ?2 subunit in neocortical NG2 cells accompanies synaptic-to-extrasynaptic switch in the GABAergic transmission mode.. Cereb Cortex, 25 (4): (1114-23). [PMID:24217990] |
97. Leroy F et al.. (2015) Potassium currents dynamically set the recruitment and firing properties of F-type motoneurons in neonatal mice.. J Neurophysiol, 114 (3): (1963-73). [PMID:26269551] |
98. Lu C et al.. (2019) Overexpression of NEUROG2 and NEUROG1 in human embryonic stem cells produces a network of excitatory and inhibitory neurons.. FASEB J, 33 (4): (5287-5299). [PMID:30698461] |
99. Owen SF et al.. (2013) Oxytocin enhances hippocampal spike transmission by modulating fast-spiking interneurons.. Nature, 500 (7463): (458-62). [PMID:23913275] |
100. Fischer T et al.. (2012) P2Y1 receptor activation by photolysis of caged ATP enhances neuronal network activity in the developing olfactory bulb.. Purinergic Signal, 8 (2): (191-8). [PMID:22187118] |
101. Vaden RJ et al.. (2020) Parvalbumin interneurons provide spillover to newborn and mature dentate granule cells.. Elife, 9 [PMID:32602839] |
102. Li S et al.. (2013) Pathogenic plasticity of Kv7.2/3 channel activity is essential for the induction of tinnitus.. Proc Natl Acad Sci U S A, 110 (24): (9980-5). [PMID:23716673] |
103. Montalbano A et al.. (2015) Pharmacological Characterization of 5-HT1A Autoreceptor-Coupled GIRK Channels in Rat Dorsal Raphe 5-HT Neurons.. PLoS One, 10 (10): (e0140369). [PMID:26460748] |
104. Avrabos C et al.. (2013) Real-time imaging of amygdalar network dynamics in vitro reveals a neurophysiological link to behavior in a mouse model of extremes in trait anxiety.. J Neurosci, 33 (41): (16262-7). [PMID:24107957] |
105. Habbas S et al.. (2011) Purinergic signaling in the cerebellum: Bergmann glial cells express functional ionotropic P2X7 receptors.. Glia, 59 (12): (1800-12). [PMID:21830236] |
106. McLeod F et al.. (2013) Reduced seizure threshold and altered network oscillatory properties in a mouse model of Rett syndrome.. Neuroscience, 231 (195-205). [PMID:23238573] |
107. Kim J & Alger BE. (2010) Reduction in endocannabinoid tone is a homeostatic mechanism for specific inhibitory synapses.. Nat Neurosci, 13 (5): (592-600). [PMID:20348918] |
108. Khubieh A et al.. (2016) Regulation of Cortical Dynamic Range by Background Synaptic Noise and Feedforward Inhibition.. Cereb Cortex, 26 (8): (3357-69). [PMID:26209846] |
109. Apostolides PF & Trussell LO. (2013) Rapid, activity-independent turnover of vesicular transmitter content at a mixed glycine/GABA synapse.. J Neurosci, 33 (11): (4768-81). [PMID:23486948] |
110. Andrade AL & Rossi DJ. (2010) Simulated ischaemia induces Ca2+-independent glutamatergic vesicle release through actin filament depolymerization in area CA1 of the hippocampus.. J Physiol, 588 (Pt 9): (1499-514). [PMID:20211977] |
111. Balakrishnan V et al.. (2009) Slow glycinergic transmission mediated by transmitter pooling.. Nat Neurosci, 12 (3): (286-94). [PMID:19198604] |
112. Tonini R et al.. (2013) Small-conductance Ca2+-activated K+ channels modulate action potential-induced Ca2+ transients in hippocampal neurons.. J Neurophysiol, 109 (6): (1514-24). [PMID:23255726] |
113. Weigel S & Luksch H. (2012) Spatiotemporal analysis of electrically evoked activity in the chicken optic tectum: a VSDI study.. J Neurophysiol, 107 (2): (640-8). [PMID:22031774] |
114. Kuo SP & Trussell LO. (2011) Spontaneous spiking and synaptic depression underlie noradrenergic control of feed-forward inhibition.. Neuron, 71 (2): (306-18). [PMID:21791289] |
115. Yekhlef L et al.. (2015) Selective activation of parvalbumin- or somatostatin-expressing interneurons triggers epileptic seizurelike activity in mouse medial entorhinal cortex.. J Neurophysiol, 113 (5): (1616-30). [PMID:25505119] |
116. Bock R et al.. (2013) Strengthening the accumbal indirect pathway promotes resilience to compulsive cocaine use.. Nat Neurosci, 16 (5): (632-8). [PMID:23542690] |
117. Tang ZQ & Trussell LO. (2015) Serotonergic regulation of excitability of principal cells of the dorsal cochlear nucleus.. J Neurosci, 35 (11): (4540-51). [PMID:25788672] |
118. Apostolides PF & Trussell LO. (2014) Superficial stellate cells of the dorsal cochlear nucleus.. Front Neural Circuits, 8 (63). [PMID:24959121] |
119. Beckley JT & Woodward JJ. (2011) The abused inhalant toluene differentially modulates excitatory and inhibitory synaptic transmission in deep-layer neurons of the medial prefrontal cortex.. Neuropsychopharmacology, 36 (7): (1531-42). [PMID:21430649] |
120. Chamberland S et al.. (2010) Synapse-specific inhibitory control of hippocampal feedback inhibitory circuit.. Front Cell Neurosci, 4 (130). [PMID:21060720] |
121. Brown JT et al.. (2011) Synaptic activation of mGluR1 generates persistent depression of a fast after-depolarizing potential in CA3 pyramidal neurons.. Eur J Neurosci, 33 (5): (879-89). [PMID:21269340] |
122. Kaeser-Woo YJ et al.. (2013) Synaptotagmin-12 phosphorylation by cAMP-dependent protein kinase is essential for hippocampal mossy fiber LTP.. J Neurosci, 33 (23): (9769-80). [PMID:23739973] |
123. Lenda F et al.. (2011) Synthesis of C5-tetrazole derivatives of 2-amino-adipic acid displaying NMDA glutamate receptor antagonism.. Amino Acids, 40 (3): (913-22). [PMID:20706748] |
124. Marchionni I et al.. (2012) The chemokine CXCL12 and the HIV-1 envelope protein gp120 regulate spontaneous activity of Cajal-Retzius cells in opposite directions.. J Physiol, 590 (13): (3185-202). [PMID:22473778] |
125. Che A et al.. (2013) The Dyslexia-Associated Gene Dcdc2 Is Required for Spike-Timing Precision in Mouse Neocortex.. Biol Psychiatry, [PMID:24094509] |
126. Bertollini C et al.. (2012) Transient increase in neuronal chloride concentration by neuroactive aminoacids released from glioma cells.. Front Mol Neurosci, 5 (100). [PMID:23189038] |
127. Tovar KR et al.. (2013) Triheteromeric NMDA receptors at hippocampal synapses.. J Neurosci, 33 (21): (9150-60). [PMID:23699525] |
128. Vaden JH et al.. (2019) The readily-releasable pool dynamically regulates multivesicular release.. Elife, 8 [PMID:31364987] |
129. Garden DL et al.. (2008) Tuning of synaptic integration in the medial entorhinal cortex to the organization of grid cell firing fields.. Neuron, 60 (5): (875-89). [PMID:19081381] |
130. Bazelot M et al.. (2010) Unitary inhibitory field potentials in the CA3 region of rat hippocampus.. J Physiol, 588 (Pt 12): (2077-90). [PMID:20403979] |
131. Brady JD et al.. (2010) Vesicular GABA release delays the onset of the Purkinje cell terminal depolarization without affecting tissue swelling in cerebellar slices during simulated ischemia.. Neuroscience, 168 (108-17). [PMID:20226232] |
132. Mohr C et al.. (2010) Young age and low temperature, but not female gender delay ATP loss and glutamate release, and protect Purkinje cells during simulated ischemia in cerebellar slices.. Neuropharmacology, 58 (2): (392-403). [PMID:19825379] |