2015

Contained in: Neuroscience, 2015: 290, 227-242

GABAergic somatostatin-immunoreactive neurons in the amygdala project to the entorhinal cortex

Authors: McDonald, A.J., Zaric V.

  GABAergic somatotropin neurons in amygdala-entorhinal cortex projection of rats
  McDonald, A.J., Zaric V. - 2015

  AMYGDALA   ENTORHINAL CORTEX   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   NEUROPEPTIDES
Contained in: Neuroscience, 2015: 294, 82-100

Extrinsic origins of the somatostatin and neuropeptide Y innervation of the rat basolateral amygdala

Authors: McDonald, A.J., Zaric V.

  Somatostatin and neuropeptide Y neurons in basolateral amygdala of rats
  McDonald, A.J., Zaric V. - 2015

  AMYGDALA   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   NEUROPEPTIDES
Contained in: Hippocampus, 2015: 25, 1242-1249

The importance of the context in the hippocampus and brain related areas throughout the performance of a fear conditioning task

Authors: Arias, N., Mendez M., Arias J.L.

  Brain cytochorme oxidase labelling and passive avoidance in rats
  Arias, N., Mendez M., Arias J.L. - 2015

  AMYGDALA   AVOIDANCE   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   DARK/LIGHT CONTEXT   FEAR AND RELATED BEHAVIORS   HIPPOCAMPUS, FORNIX AND SUBICULUM   NUCLEUS ACCUMBENS   STRIATUM
Contained in: Neuropharmacology, 2015: 95, 434-447

Amphetamine sensitization in mice is sufficient to produce both manic- and depressive-related behaviors as well as changes in the functional connectivity of corticolimbic structures

Authors: Pathak, G., Ibrahim B.A., McCarthy S.A., Baker K., Kelly M.P.

  D-amphetamine on brain neuronal activity, early gene expression, locomotor activity, sucrose preference and nesting in mice
  Pathak, G., Ibrahim B.A., McCarthy S.A., Baker K., Kelly M.P. - 2015

  AMYGDALA   LOCOMOTOR ACTIVITY   ENVIRONMENT AND SOCIAL BEHAVIOR   ENTORHINAL CORTEX   CEREBRAL CORTEX   DOPAMINE   HIPPOCAMPUS, FORNIX AND SUBICULUM   PROTEINS AND GENES   STRIATUM
Contained in: Brain Res., 2015: 1625, 18-28

Finding the place without the whole: timeline involvement of brain regions

Authors: Arias, N., Mendez M., Vallejo G., Arias J.L.

  Brain c-fos and cytochrome oxidase expression and Morris water maze performance in rats
  Arias, N., Mendez M., Vallejo G., Arias J.L. - 2015

  AMYGDALA   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HYPOTHALAMUS   HIPPOCAMPUS, FORNIX AND SUBICULUM   NUCLEUS ACCUMBENS   PROTEINS AND GENES   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION   STRIATUM
Contained in: Curr. Opin. Neurobiol., 2015: 35, 1-5

Post-extinction selective persistence of large dendritic spines in fear remodeled circuits may serve to reactivate fear

Authors: Pignataro, A., Ammassari-Teule M.

  Fear acquisition, extinction and synaptic plasticity - Review
  Pignataro, A., Ammassari-Teule M. - 2015

  AMYGDALA   ENTORHINAL CORTEX   CEREBRAL CORTEX   EXTINCTION   FEAR AND RELATED BEHAVIORS   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROGENESIS AND PLASTICITY   REVIEWS AND COMMENTARIES
Contained in: Curr. Opin. Neurobiol., 2015: 35, 66-73

Inhibitory microcircuit modules in hippocampal learning

Authors: Caroni, P.

  Hippocampal inhibitory GABAergic interneurons and learning - Review
  Caroni, P. - 2015

  AMYGDALA   ENTORHINAL CORTEX   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROPEPTIDES   REVIEWS AND COMMENTARIES   VIP, PACAP, EPAC
Contained in: Neurobiol. Learn. Mem., 2015: 120, 69-83

A computational study on how theta modulated inhibition can account for the long temporal windows in the entorhinal-hippocampal loop

Authors: Cutsuridis, V., Poirazi P.

  Computational model of theta modulation in the entorhinal-hippocampal loop
  Cutsuridis, V., Poirazi P. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   ENTORHINAL CORTEX   HISTAMINE
Contained in: Nature, 2015: 518, 207-212

Shearing-induced asymmetry in entorhinal grid cells

Authors: Stensola, T., Stensola H., Moser M.-B., Moser E.I.

  Entorhinal grid cells firing and spatial orientation in rats
  Stensola, T., Stensola H., Moser M.-B., Moser E.I. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   LATERALITY AND ASYMMETRICAL INTERVENTIONS   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: Neuron, 2015: 86, 827-839

Environmental boundaries as an error correction mechanism for grid cells

Authors: Hardcastle, K., Ganguli S., Giocomo L.M.

  Entorhinal grid cell firing and spatial orientation in rodents
  Hardcastle, K., Ganguli S., Giocomo L.M. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: Brain Res., 2015: 1621, 316-334

Networks for memory, perception, and decision-making, and beyond to how the syntax for language might be implemented in the brain

Authors: Rolls, E.T., Deco G.

  Network models in memory, perception and decision making - Review
  Rolls, E.T., Deco G. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES
Contained in: Neuron, 2015: 87, 507-520

Using grid cells for navigation

Authors: Bush, D., Barry C., manson D., Burgess N.

  Grid cells model in navigation
  Bush, D., Barry C., manson D., Burgess N. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Nature, 2015: 523, 419-424

Speed cells in the medial entorhinal cortex

Authors: Kropff, E., Carmichael J.E., Moser M.-B., Moser E.I.

  Entorhinal grid cells and running speed in rats
  Kropff, E., Carmichael J.E., Moser M.-B., Moser E.I. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   LOCOMOTOR ACTIVITY   ENTORHINAL CORTEX
Contained in: Hippocampus, 2015: 25, 1489-1500

Grid cells in 3-D: reconciling data and models

Authors: Horiuchi, T.K., Moss C.F.

  3-D grid cells model
  Horiuchi, T.K., Moss C.F. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: Hippocampus, 2015: 25, 1599-1613

Grid cells correlation structure suggests organized feedforward projections into superficial layers of the medial entorhinal cortex

Authors: Tocker, G., Barak O., Derdikman D.

  Entorhinal grid cells firing and spatial navigation in rodents
  Tocker, G., Barak O., Derdikman D. - 2015

  MATHEMATICAL ANALYSIS APPLIED TO BEHAVIOR   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: Hippocampus, 2015: 25, 524-533

Structural and functional correlates of behavioral pattern separation in the hippocampus and medial temporal lobe

Authors: Doxey, C.R., Kirwan C.B.

  Hippocampal and medial temporal lobe functional correlation in humans
  Doxey, C.R., Kirwan C.B. - 2015

  LATERALITY AND ASYMMETRICAL INTERVENTIONS   BRAIN IMAGING   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: J. Neurosci., 2015: 35, 12954-12969

A neural basis for developmental topographic disorientation

Authors: Kim, J.G., Aminoff E.M., Kastner SW., Behrmann M.

  Brain activity and spatial navigation ability in humans
  Kim, J.G., Aminoff E.M., Kastner SW., Behrmann M. - 2015

  LATERALITY AND ASYMMETRICAL INTERVENTIONS   BRAIN IMAGING   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: J. Neurosci., 2015: 35, 15039-15049

Examining the role of the human hippocampus in approach-avoidance decision making using a novel conflict paradigm and multivariate functional magnetic resonance imaging

Authors: O'Neil, E.B., Newsome R.N., Li I.H.N., Thavabalasingam S., Ito R., Lee A.C.H.

  Brain activity during approach-avoidance conflict/no-conflict operant paradigm in humans
  O'Neil, E.B., Newsome R.N., Li I.H.N., Thavabalasingam S., Ito R., Lee A.C.H. - 2015

  AMYGDALA   LATERALITY AND ASYMMETRICAL INTERVENTIONS   BRAIN IMAGING   OPERANT CONDITIONING   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   STRIATUM
Contained in: Proc. Natl. Acad. Sci. USA, 2015; 112, 9466-9471

Distinct speed dependence of entorhinal island and ocean cells, including respective grid cells

Authors: Sun, C., Kitamura T., Yamamoto J., Martin J., Pignatelli M., Kitch L.J., Schnitzer M.J., Tonegawa S.

  Entorhinal grid cell activity and environment exploration in mice
  Sun, C., Kitamura T., Yamamoto J., Martin J., Pignatelli M., Kitch L.J., Schnitzer M.J., Tonegawa S. - 2015

  EXPLORATORY ACTIVITY   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: Brain Res. Bull., 2015: 117, 16-23

c-Fos expression correlates with performance on novel object and novel place recognition tests

Authors: Mendez, M., Arias N., Uceda S. Arias J.L.

  Hippocampal, perirhinal, entorhinal and temporal cortices c-fos expression by novel object/place recognition in rats
  Mendez, M., Arias N., Uceda S. Arias J.L. - 2015

  EXPLORATORY ACTIVITY   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   PROTEINS AND GENES
Contained in: Behav. Brain Res., 2015: 292, 44-49

The recognition of a novel-object in a novel context leads to hippocampal and parahippocampal c-Fos involvement

Authors: Arias, N., Mendez M., Arias J.L.

  Novel object/place recognition on hippocampal and parahippocampal cortex c-fos expression in rats
  Arias, N., Mendez M., Arias J.L. - 2015

  EXPLORATORY ACTIVITY   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   STEROTYPED BEHAVIORS   HIPPOCAMPUS, FORNIX AND SUBICULUM   PROTEINS AND GENES
Contained in: Behav. Brain Res., 2015: 292, 353-360

Behavioral effects of deep brain stimulation of different areas of the Papez circuit on memory- and anxiety-related functions

Authors: Hescham, S., Jahanshahi A., Meriaux C., Lim L.W., Blokland A., Temel Y.

  Hippocampal, thalamic and entorhinal stimulation on exploratory activity, object location performance and hippocampal, prefrontal c-fos expression in scopolamine-treated rats
  Hescham, S., Jahanshahi A., Meriaux C., Lim L.W., Blokland A., Temel Y. - 2015

  EXPLORATORY ACTIVITY   ACETYLCHOLINE   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   PROTEINS AND GENES   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Neuron, 2015: 88, 578-589

During running in place, grid cells integrate elapsed time and distance run

Authors: Kraus, B.J., Brandon M.P., Robinson II R.J., Connerney M.A., Hasselmo M.E.

  Entorhinal grid cell firing during spatial learning and open field/treadmill running in rats
  Kraus, B.J., Brandon M.P., Robinson II R.J., Connerney M.A., Hasselmo M.E. - 2015

  EXPLORATORY ACTIVITY   LOCOMOTOR ACTIVITY   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX
Contained in: J. Neurosci., 2015: 35, 16259-16271

Functional connectome analysis of dopamine neuron glutamatergic connections in forebrain regions

Authors: Mingote, S., Chuhma N., Kusnoor S.V., Filed B., Beutch A.Y., Rayport S.

  Ventral tegmental area dopamine neuron glutamatergic projections in mice
  Mingote, S., Chuhma N., Kusnoor S.V., Filed B., Beutch A.Y., Rayport S. - 2015

  AMYGDALA   ENTORHINAL CORTEX   CEREBRAL CORTEX   DOPAMINE   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION   STRIATUM
Contained in: Neuron, 2015: 85, 534-548

IL10 deficiency rebalances innate immunity to mitigate Alzheimer-like pathology

Authors: Guillot-Sestier, M.-V., Doty K.R., Gate D., Rodriguez J. Jr., Leung B.P., Rezai-Zadeh K., Town T.

  Interleukin-10 and Aβ apolipoprotein on cortex and hippocampus damage in humans and rodents
  Guillot-Sestier, M.-V., Doty K.R., Gate D., Rodriguez J. Jr., Leung B.P., Rezai-Zadeh K., Town T. - 2015

  CENTRAL NERVOUS SYSTEM LESIONS   ENTORHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROPEPTIDES   PROTEINS AND GENES
Contained in: Nat. Neurosci., 2015: 18, 1123-1132

The medial entorhinal cortex is necessary for temporal organization of hippocampal neuronal activity

Authors: Schlesiger, M.I., Cannova C.C., Boublil B.L., Hales J.B., Mankin E.A., Brandon M.P., Leutgeb J.K., Leibold C., Leutgeb S.

  Entorhinal neuron role in hippocampal place cell activity in rats
  Schlesiger, M.I., Cannova C.C., Boublil B.L., Hales J.B., Mankin E.A., Brandon M.P., Leutgeb J.K., Leibold C., Leutgeb S. - 2015

  CENTRAL NERVOUS SYSTEM LESIONS   SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Neurosci. Biobehav. Rev., 2015: 48, 92-147

A computational theory of hippocampal function, and tests of the theory: new developments

Authors: Kesner, R.P., Rolls E.T.

  Computational theory of hippocampal function - Review
  Kesner, R.P., Rolls E.T. - 2015

  SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   PERIRHINAL CORTEX   CEREBRAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES
Contained in: Hippocampus, 2015: 25, 719-725

From the GPS to HM: place cells, grid cells, and memory

Authors: Knierim, J.J.

  Entorhinal cortex and spatial orientation - Commentary
  Knierim, J.J. - 2015

  SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES
Contained in: Hippocampus, 2015: 25, 736-743

Navigating the circuitry of the brain's GPS system: future challenges for neurophysiologists

Authors: Craig, M.T., McBain C.J.

  Hippocampus and spatial navigation - Commentary
  Craig, M.T., McBain C.J. - 2015

  SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES
Contained in: Hippocampus, 2015: 25, 744-752

Current questions on space and time encoding

Authors: Hasselmo, M.E., Stern C.E.

  Place and grid cells in spatial navigation - Commentary
  Hasselmo, M.E., Stern C.E. - 2015

  SPATIAL ORIENTATION AND SPATIAL MEMORY   ENTORHINAL CORTEX   HIPPOCAMPUS, FORNIX AND SUBICULUM   REVIEWS AND COMMENTARIES