2017

Contained in: Proc. Natl. Acad. Sci. USA, 2017: 114, 10779-10784

Prolactin action in the medial preoptic area is necessary for postpartum maternal nursing behavior

Authors: Brown, R.S.E., Aoki M., Ladyman S.R., Phillipps H.R., Wyatt A., Boehm U., Grattan D.R.

  Hypothalamic prolactin on post-partum maternal nursing in mice: medial preoptic area glutamate and GABA neurons role
  Brown, R.S.E., Aoki M., Ladyman S.R., Phillipps H.R., Wyatt A., Boehm U., Grattan D.R. - 2017

  ENVIRONMENT AND SOCIAL BEHAVIOR   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HYPOTHALAMUS   NEUROPEPTIDES
Contained in: Psychopharmacology, 2017: 234, 2777-2792

Regulation of sustained attention, false alarm responding and implementation of conditional rules by prefrontal GABAA transmission: comparison with NMDA transmission

Authors: Auger, M.L., Meccia J., Floresco S.B.

  Intra-prefrontal GABA-A or NMDA antagonist on operant discrimination attentional task in rats
  Auger, M.L., Meccia J., Floresco S.B. - 2017

  OPERANT CONDITIONING   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   N-METHYL-D-ASPARTATE (NMDA)   SCHEDULE INDUCED CONDITIONING AND BEHAVIOR
Contained in: Behav. Brain Res., 2017: 332, 259-268

Sex-specific effects of developmental alcohol exposure on cocaine-induced place preference in adulthood

Authors: Macht, V.A., Kelly S.J., Gass J.T.

  Prenatal alcohol exposure on conditioned place preference by cocaine and related accumbal, ventral tegmental area and prefrontal c-fos and GAD67 cell expression in adult male and female rat offspring
  Macht, V.A., Kelly S.J., Gass J.T. - 2017

  CLASSICAL PAVLOVIAN CONDITIONING   CEREBRAL CORTEX   GENDER   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   NUCLEUS ACCUMBENS   PROTEINS AND GENES   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION
Contained in: Pharmacol. Biochem. Behav., 2017: 163, 74-82

Uridine attenuates morphine-induced conditioned place preference and regulates glutamate/GABA levels in mPFC of mice

Authors: Liu, P., Che X., Yu L., Yang X., An N., Song W., Wu C., Yang J.

  Uridine on morphine-induced conditioned place preference acquisition, extinction, reinstatement and related prefrontal glutamate and GABA levels in mice
  Liu, P., Che X., Yu L., Yang X., An N., Song W., Wu C., Yang J. - 2017

  CLASSICAL PAVLOVIAN CONDITIONING   CEREBRAL CORTEX   EXTINCTION   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   OPIOIDS   RECALL AND RECONSOLIDATION
Contained in: Curr. Op. Neurobiol., 2017: 44, 59-64

Selective activation of a few limbic structures during paradoxical (REM) sleep by the claustrum and the supramammillary nucleus: evidence and function

Authors: Luppi, P.-H., Billwiller F., Fort P.

  REM sleep activation brain structures - Review
  Luppi, P.-H., Billwiller F., Fort P. - 2017

  ENTORHINAL CORTEX   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HYPOTHALAMUS   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES   SEPTUM   SLEEP
Contained in: Curr. Op. Neurobiol., 2017: 44, 139-143

Brainstem regulation of slow-wave-sleep

Authors: Anaclet, C., Fuller P.M.
Contained in: Curr. Op. Neurobiol., 2017: 44, 167-177

REM sleep and memory

Authors: Boyce, R., Williams S., Adamantidis A.

  REM sleep and memory consolidation - Review
  Boyce, R., Williams S., Adamantidis A. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   CONSOLIDATION   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES   SEPTUM   SLEEP
Contained in: Curr. Op. Neurobiol., 2017: 44, 186-192

Wake-sleep circuitry: an overview

Authors: Saper, C.B., Fuller P.M.

  GABA and glutamate on wake-sleep circuitry regulation - Review
  Saper, C.B., Fuller P.M. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HYPOTHALAMUS   PARABRACHIAL NUCLEI   REVIEWS AND COMMENTARIES   SLEEP   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION
Contained in: Curr. Op. Neurobiol., 2017: 44, 228-235

Neuronal substrates of sleep homeostasis; lessons from flies, rats and mice

Authors: Donlea, J.M., Alam M.N., Szymusiak R.

  Adenosine, sleep homeostasis and vigilance state modulation across species - Review
  Donlea, J.M., Alam M.N., Szymusiak R. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   HYPOTHALAMUS   NITRIC AND NITROUS OXIDE   NUCLEUS ACCUMBENS   REVIEWS AND COMMENTARIES   SLEEP
Contained in: Psychopharmacology, 2017: 234, 2245-2257

A randomized controlled trial of ganaxolone in posttraumatic stress disorder

Authors: Rasmusson, A.M., Marx C.E., Jain S., Farfel G.M., Tsai J., Sun X., Geracioti T.D., Hamner M.B., Lohr J., Rosse R., Summerall L., Naylor J.C., Cusin C., Lang A.J., Raman R., Stein M.B.

  Ganaxolone in human posttraumatic stress disorder
  Rasmusson, A.M., Marx C.E., Jain S., Farfel G.M., Tsai J., Sun X., Geracioti T.D., Hamner M.B., Lohr J., Rosse R., Summerall L., Naylor J.C., Cusin C., Lang A.J., Raman R., Stein M.B. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   STRESS
Contained in: Curr. Op. Neurobiol., 2017: 45, 92-98

Neurobiological mechanisms of state-dependent learning

Authors: Radulovic, J., Jovasebic V., Meyer M.A.A.

  State-dependent learning neurobiological mechanisms - Review
  Radulovic, J., Jovasebic V., Meyer M.A.A. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES   STATE-DEPENDENT LEARNING
Contained in: Nature, 2017: 548, 582-587

Lhx6-positive GABA-releasing neurons of the zona incerta promote sleep

Authors: Liu, K., Kim J., Kim D.W., Zhang Y.S., Bao H., Denaxa M., Lim S.-A., Kim E., Liu C., Wickersham I.R., Pachinis V., Hattar S., Song J., Brown S.P., Blackshaw S.

  Hypothalamic zona incerta GABAergic neuron role in sleep induction in mice
  Liu, K., Kim J., Kim D.W., Zhang Y.S., Bao H., Denaxa M., Lim S.-A., Kim E., Liu C., Wickersham I.R., Pachinis V., Hattar S., Song J., Brown S.P., Blackshaw S. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   HYPOTHALAMUS   SLEEP   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Pharmacol. Biochem. Behav., 2017: 162, 87-93

Neural circuit adaptations during drug withdrawal - Spotlight on the lateral habenula

Authors: Meye, F.J., Trusel M., Soiza-Reilly M., Mameli M.

  Lateral habenula and cocaine/opiate withdrawal - Review
  Meye, F.J., Trusel M., Soiza-Reilly M., Mameli M. - 2017

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   OPIOIDS   REVIEWS AND COMMENTARIES
Contained in: Hippocampus, 2017: 27, 1217-1223

GABAergic inhibition gates excitatory LTP in perirhinal cortex

Authors: Kotak, V.C., Mirallave A., Mowery T.M., Sanes D.H.

  GABAergic modulation on long-term potentiation induction in perirhinal cortex of gerbils
  Kotak, V.C., Mirallave A., Mowery T.M., Sanes D.H. - 2017

  SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION   PERIRHINAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Neuron, 2017: 96, 267-284

Striatal local circuitry: a new framework for latent inhibition

Authors: Burke, D.A., Rotstein H.G., Alvarez V.A.

  Striatal spiny projection neurons and lateral inhibition - Review
  Burke, D.A., Rotstein H.G., Alvarez V.A. - 2017

  ACETYLCHOLINE   STRIATUM   REVIEWS AND COMMENTARIES   PROTEINS AND GENES   NEUROPEPTIDES   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   NUCLEUS ACCUMBENS   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION
Contained in: J. Neurosci. Methods, 2017: 292, 20-29

Prolonged striatal disinihibition as a chronic animal model of tic disorders

Authors: Vinner, E., Israelashvili M., Bar-Gad I.

  Intra-dorsolateral striatum bicuculline: novel chronic model of tic expression in rats - Methods
  Vinner, E., Israelashvili M., Bar-Gad I. - 2017

  METHODS IN NEUROSCIENCE AND BEHAVIOR   STRIATUM   γ-AMINO-BUTYRIC ACID (GABA)
Contained in: Neuron, 2017: 96, 1342-1357

Behavior-dependent activity and synaptic organization of septo-hippocampal GABAergic neurons selectively targeting the hippocampal CA3 area

Authors: Joshi, A., Salib M., Viney T.J., Dupret D., Somogyi P.

  Septal Teevra cell GABAergic neurons on hippocampal theta rhythm related to locomotion in mice
  Joshi, A., Salib M., Viney T.J., Dupret D., Somogyi P. - 2017

  SEPTUM   HIPPOCAMPUS, FORNIX AND SUBICULUM   γ-AMINO-BUTYRIC ACID (GABA)   LOCOMOTOR ACTIVITY
Contained in: Neurosci. Behav. Physiol., 2017: 47, 923-929

Interaction of glutamate receptors and GABA neurons in the central nervous system

Authors: Popov, V.A., Semenov V.A., Amakhin D.V., Veselkin N.P.

  GABA and glutamate receptor synaptic co-localization in central nervous system - Review
  Popov, V.A., Semenov V.A., Amakhin D.V., Veselkin N.P. - 2017

  REVIEWS AND COMMENTARIES   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE
Contained in: J. Neurosci., 2017: 37, 3989-3991

GABAergic networks in the prefrontal cortex and working memory

Authors: Banuelos, C., Woloszynowska-Fraser M.U.

  Prefrontal GABAergic network, working memory and aging - Commentary
  Banuelos, C., Woloszynowska-Fraser M.U. - 2017

  CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES   AGE
Contained in: Learn. Mem., 2017: 24, 381-384

δ subunit-containing GABAA receptor prevents overgeneralization of fear in adult mice

Authors: Zhang, W.-H., Zhou J., Pan H.-Q., Wang X.-Y., Liu W.-Z., Zhang J.-Y., Yin X.-P., Pan B.-X.

  δ subunit-containing GABA-A receptor role in fear conditioning generalization in mice
  Zhang, W.-H., Zhou J., Pan H.-Q., Wang X.-Y., Liu W.-Z., Zhang J.-Y., Yin X.-P., Pan B.-X. - 2017

  FEAR AND RELATED BEHAVIORS   GENERALIZATION   γ-AMINO-BUTYRIC ACID (GABA)   EXPLORATORY ACTIVITY
Contained in: Learn. Mem., 2017: 24, 385-391

Neurobiological correlates of state-dependent context fear

Authors: Meyer, M.A.A., Corcoran K.A., Chen H.J., Gallego S., Li G., Tiruveedhula V.V., Cook J.M., Radulovic J.

  Intra-hippocampal GABA-A agonist on hippocampal-cortical network activity and state-dependent contextual fear conditioning in male and female mice
  Meyer, M.A.A., Corcoran K.A., Chen H.J., Gallego S., Li G., Tiruveedhula V.V., Cook J.M., Radulovic J. - 2018

  STATE-DEPENDENT LEARNING   γ-AMINO-BUTYRIC ACID (GABA)   FEAR AND RELATED BEHAVIORS   HIPPOCAMPUS, FORNIX AND SUBICULUM   CEREBRAL CORTEX   GENDER

2016

Contained in: Neuropharmacology, 2016: 100, 40-46

Cotransmission of acetylcholine and GABA

Authors: Granger, A.J., Mulder N., Saunders A., Sabatini B.L.

  Acetylcholine/GABA co-transmission - Review
  Granger, A.J., Mulder N., Saunders A., Sabatini B.L. - 2016

  ACETYLCHOLINE   γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES
Contained in: Neurobiol. Learn. Mem., 2016: 127, 10-16

Behavioral and neurophysiological evidence that lateral paracapsular GABAergic synapses in the basolateral amygdala contribute to the acquisition and extinction of fear learning

Authors: Skelly, M.J., Chappell A.M., Ariwodola O.J., Weiner J.L.

  Intra-basolateral amygdala β3-adrenergic receptor agonist or lateral paracapsular stimulation on basolateral amygdala lont-term potentiation/long-term depression and fear potentiated startle acquisition and extinction in rats: interneuron GABAergic modulation
  Skelly, M.J., Chappell A.M., Ariwodola O.J., Weiner J.L. - 2016

  EPINEPHRINE AND NOREPINEPHRINE   AMYGDALA   EXTINCTION   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)   SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION   STARTLE REFLEX   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Behav. Brain Res., 2016: 298, 1-11

Post-training gamma irradiation-enhanced contextual fear memory associated with reduced neuronal activation of the infralimbic cortex

Authors: Kugelman, T., Zuloaga D.G., Weber S., Raber J.

  Post-training gamma irradiation on fear conditioning, object recognition and brain c-fos expression in mice
  Kugelman, T., Zuloaga D.G., Weber S., Raber J. - 2016

  AMYGDALA   CEREBRAL CORTEX   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)   HYPOTHALAMUS   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Behav. Brain Res., 2016: 301, 119-123

Neuronal overexpression of Glo1 or amygdalar microjniection of methylglyoxal is sufficient to regulate anxiety-like behavior in mice

Authors: McMurray, K.M.J., Du X., Brownlee M., Palmer A.A.

  Basolateral amygdala GABAergic modulation on exploratory activity in mice
  McMurray, K.M.J., Du X., Brownlee M., Palmer A.A. - 2016

  AMYGDALA   EXPLORATORY ACTIVITY   γ-AMINO-BUTYRIC ACID (GABA)
Contained in: Neurosci. Behav. Physiol., 2016: 46, 124-132

Behavior of high- and low-anxiety rats on the background of modulation of GABAergic transmission in the basolateral nucleus of the amygdala

Authors: Rysakova, M.P., Pavlova I.V.

  Unilateral intra-basolateral amygdala GABA-A agonist and antagonist on exploratory activitiy, grooming and rearing in high- and low-anxiety rats
  Rysakova, M.P., Pavlova I.V. - 2016

  AMYGDALA   LATERALITY AND ASYMMETRICAL INTERVENTIONS   EXPLORATORY ACTIVITY   γ-AMINO-BUTYRIC ACID (GABA)   STEROTYPED BEHAVIORS
Contained in: Neurosci. Behav. Physiol., 2016: 46, 205-214

Effects of administration of an agonist and an antagonist og GABAA receptors into the basolateral nucleus of the amygdala on the expression and extinction of fear in rats with dofferent freezing durations

Authors: Pavlova, I.V., Rysakova M.P.

  Intra-basolateral amygdala GABA-A agonist and antagonist on fear conditioning extinction in rats
  Pavlova, I.V., Rysakova M.P. - 2016

  AMYGDALA   EXTINCTION   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)
Contained in: Curr. Opin. Neurobiol., 2016: 36, 59-65

Activity-dependent signaling: influence on plasticity in circuits controlling fear-related behavior

Authors: Hill, J.L., Martinowich K.

  Brain-derived neurotrophic factor and fear behavior - Review
  Hill, J.L., Martinowich K. - 2016

  AMYGDALA   CEREBRAL CORTEX   EXTINCTION   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROTROPHIC FACTORS   RECALL AND RECONSOLIDATION   REVIEWS AND COMMENTARIES   CONSOLIDATION
Contained in: Neuroscience, 2016: 320, 230-238

Involvement of dorsal striatal α1-containing GABAA receptors in methamphetamine-associated rewarding memories

Authors: Jiao, D.-L., Liu Y., Long J.-D., Du J., Ju Y.-Y., Zan G.-Y., Liu J.-G., Zhao M.

  Intra-dorsal striatal GABA agonist on conditioned place preference induced by methamphetamine in rats: brain GABA-Aα1 receptor expression study
  Jiao, D.-L., Liu Y., Long J.-D., Du J., Ju Y.-Y., Zan G.-Y., Liu J.-G., Zhao M. - 2016

  AMYGDALA   CLASSICAL PAVLOVIAN CONDITIONING   CEREBRAL CORTEX   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   NUCLEUS ACCUMBENS   STRIATUM
Contained in: Pharmacol. Biochem. Behav., 2016: 143, 57-64

Additive effect of BLA GABAA receptor mechanims and (+)-MK-801 on memory retention deficit, an isobologram analysis

Authors: Khakpoor, M., Nasehi M., Vahdati A., Hoseyni S.-E., Zarrindast M.-R.

  Intra-basolateral amygdala GABA-A agonist, antagonist and MK-801 on passive avoidance consolidation in rats
  Khakpoor, M., Nasehi M., Vahdati A., Hoseyni S.-E., Zarrindast M.-R. - 2016

  AMYGDALA   AVOIDANCE   γ-AMINO-BUTYRIC ACID (GABA)   N-METHYL-D-ASPARTATE (NMDA)   CONSOLIDATION