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Journal Article
Hippocampus, ISSN 1050-9631, 05/2017, Volume 27, Issue 5, pp. 596 - 607
ABSTRACT Systems consolidation is a time‐dependent reorganization process involving neocortical and hippocampal networks underlying memory storage and... 
remote memory | systems consolidation | nucleus reuniens | reconsolidation | anterior cingulate cortex | EFFERENT PROJECTIONS | VENTRAL MIDLINE THALAMUS | RAT | NEUROSCIENCES | PREFRONTAL CORTEX | RHOMBOID NUCLEI | ENTORHINAL CORTEX | DORSAL HIPPOCAMPUS | REACTIVATION | TOPOGRAPHICAL ORGANIZATION | Lidocaine - pharmacology | Muscimol - pharmacology | Neural Pathways - drug effects | Rats, Wistar | Memory Consolidation - drug effects | Fear - drug effects | Male | Memory, Short-Term - physiology | Nimodipine - pharmacology | Fear - physiology | Excitatory Postsynaptic Potentials - drug effects | Neural Pathways - physiology | CA1 Region, Hippocampal - drug effects | Excitatory Postsynaptic Potentials - physiology | Long-Term Potentiation - drug effects | Midline Thalamic Nuclei - physiology | GABA-A Receptor Agonists - pharmacology | Long-Term Potentiation - physiology | Gyrus Cinguli - physiology | Gyrus Cinguli - drug effects | CA1 Region, Hippocampal - physiology | Conditioning (Psychology) - drug effects | Conditioning (Psychology) - physiology | Memory, Short-Term - drug effects | Calcium Channel Blockers - pharmacology | Memory Consolidation - physiology | Animals | Voltage-Gated Sodium Channel Blockers - pharmacology | Fear | Cortex (cingulate) | Long-term potentiation | Memory | Thalamus | Lidocaine | Hippocampus | Emotions | Fear conditioning
Journal Article
Frontiers in systems neuroscience, ISSN 1662-5137, 2015, Volume 9, p. 29
Despite decades of research, the neural mechanisms of spatial working memory remain poorly understood. Although the dorsal hippocampus is known to be critical... 
Medial prefrontal cortex | reuniens | working memory | Hippocampus | Oscillatory synchrony
Journal Article
Neuroscience, ISSN 0306-4522, 2006, Volume 140, Issue 2, pp. 577 - 595
In the last 15 years a role has been ascribed for the medullary dorsal reticular nucleus as a supraspinal pain modulating area. The medullary dorsal reticular... 
ac/aca | cerebral peduncle basal part | APT | superior colliculus | Phaseolus vulgaris-leucoagglutinin | paracentral thalamic nucleus | central amygdaloid nuclei | external cuneate nucleus | locus coeruleus | longitudinal fasciculus of the pons | CTb | paraventricular thalamic nuclei | hypoglossal nucleus | lateral ventricle | scp | VLH/VMH | BST | RPa/ROb | Kölliker-Fuse nucleus | MCPO | Arc | LGP | dorsal raphe | lfp | VPL/VPM | pain pathways | BDA | PHA-L | ABC | supraspinal circuitry | zona incerta dorsal/ventral part | nucleus of the fields of Forel | pedunculopontine tegmental nucleus | centrolateral thalamic nucleus | medial lemniscus | vestibular nuclei | pontine reticular nucleus caudal/oral/ventral part | nuclei of the lateral lemniscus | A5/A7 | VTA/R | caudate putamen | anterior hypothalamic area | reuniens thalamic nucleus | lateral (dentate) cerebellar nucleus | brain efferents | IRt | ventrolateral/ventromedial hypothalamic nuclei | Sp5 caudal part | mesencephalic trigeminal nucleus | PAG | periaqueductal gray | IO/IOM | dorsal motor nucleus of vagus | RVM | subparafascicular thalamic nucleus | basolateral amygdaloid nucleus, anterior part | ICj | Po/PoT | cuneate nucleus | 4th ventricle | icp | lateral preoptic nuclei | PBS | mlf | DPGi | reticular thalamic nucleus | ventral reticular nucleus | Mo5 | opt | bed nucleus of the stria terminalis | PPTg | prepositus nucleus | medial longitudinal fasciculus | preoptic nuclei | lateral globus pallidus | medial septal nucleus | oculomotor nucleus | HDB | ventrolateral thalamic nucleus | Pr5VL | interstitial nucleus of the medial longitudinal fasciculus | gigantocellular reticular nucleus alpha part | periventricular hypothalamic nucleus | inferior colliculus | parvicellular reticular nucleus | paraventricular hypothalamic nuclei | paragigantocellular nucleus | VLPAG | rhomboid thalamic nucleus | nucleus of the posterior commisure | medial amygdaloid nuclei | substantia nigra compact part | central canal | superior cerebellar peduncle | dorsal reticular nucleus | avidin–biotin complex | islands of Calleja | optic chiasm | fornix | mammillothalamic tract | ventromedial thalamic nucleus | dorsal tegmental nucleus | inferior cerebellar peduncle | nucleus of the horizontal limb of the diagonal band | VLMlat | MPB | gigantocellular reticular nucleus ventral part | PVN | spinal trigeminal nucleus | MPO | dorsal periaqueductal gray | lateral mammillary nucleus | nucleus of Darkschewitsch | CnF | raphe pallidus/raphe obscurus | ethmoid thalamic nucleus | anterior pretectal nucleus | deep mesencephalic nucleus | medial globus pallidus | red nucleus | nucleus tractus solitarius | rostral ventromedial medulla | spinal trigeminal nucleus interpolar part | indusium griseum | magnocellular preoptic nucleus | medial preoptic nuclei | biotinylated dextran | prerubral field | PCom | BLA | VRt | lateral parabrachial nuclei | LPB | LS/LSI | DpMe | 3rd ventricle | saline phosphate buffer | SNC | LPO | NTS | area postrema | PGi | substantia nigra reticular part | The nomenclature and abbreviations used to designate brain nuclei and fiber tracts are in accordance with those used by Paxinos and Watson or result from a simplification of it, except for a few exceptions assigned with (). | VDB | SNR | gigantocellular reticular nucleus | lateral reticular nucleus | Sp5 | pontine nuclei | motor trigeminal nucleus | medial geniculate nuclei | substantia nigra | parafascicular thalamic nucleus | optic tract | anterior commissure/anterior part | lateral paragigantocellular nucleus | substantia innominata | nucleus of the vertical limb of the diagonal band | principal sensory trigeminal nucleus, ventrolateral part | Sylvius aqueduct | Eth | Me5 | interposed cerebellar nucleus | GiA | Lat | lateral lemniscus | SPF | ventral pallidum | inferior olive/medial nucleus | RMg | DPAG | GiV | ECu | endopiriform nuclei | globus pallidus | medial parabrachial nucleus | cholera toxin subunit B | amygdaloid nuclei | LPGi | DRt | CPu | Amy | interpeduncular nuclei | posterior thalamic nucleus/triangular part | intermediate reticular nucleus | LRt | PCRt | lateral septal nuclei/intermediate part | lateral portion of the caudal ventrolateral medulla | 0.1 M saline phosphate buffer containing 0.3% Triton X-100 | ZID/ZIV | central medial thalamic nucleus | IMLF | internal capsule | lateral hypothalamus | pyramidal tract/decussation | Sp5C | fasciculus retroflexus | Int | parabrachial nuclei | ventral tegmental area/rostral part | DTg | Sp5I | ventrolateral periaqueductal gray | cuneiform nucleus | gracile nucleus | ventral posterolateral/posteromedial thalamic nucleus | facial nucleus | PnC/PnO/PnV | arcuate hypothalamic nuclei | ventral anterior thalamic nucleus | posterior hypothalamic area | PBST | A5/A7 noradrenaline cells | MGP | medullary reticular formation | dorsal paragigantocellular nucleus | raphe magnus nucleus | EFFERENT PROJECTIONS | PHASEOLUS-VULGARIS-LEUKOAGGLUTININ | TRACTUS-SOLITARIUS | HETEROTOPIC NOCICEPTIVE INFORMATION | SPINAL-CORD | ORAL MOTOR NUCLEI | NEUROSCIENCES | AFFERENT-PROJECTIONS | ADJACENT CUNEATE NUCLEUS | STEM MULTISYNAPTIC CONNECTIONS | CAUDAL VENTROLATERAL MEDULLA | Periaqueductal Gray - cytology | Rats, Wistar | Reticular Formation - physiology | Nociceptors - physiology | Male | Axons - physiology | Presynaptic Terminals - ultrastructure | Neural Pathways - physiology | Neural Inhibition - physiology | Medulla Oblongata - cytology | Dextrans | Thalamus - physiology | Axons - ultrastructure | Functional Laterality - physiology | Medulla Oblongata - physiology | Rats | Axonal Transport - physiology | Presynaptic Terminals - physiology | Animals | Reticular Formation - cytology | Pain - physiopathology | Neural Pathways - cytology | Cholera Toxin | Periaqueductal Gray - physiology | Thalamus - cytology | Biotin - analogs & derivatives
Journal Article
Neuron, ISSN 0896-6273, 04/2017, Volume 94, Issue 2, pp. 363 - 374.e4
Behavior depends on coordinated activity across multiple brain regions. Within such networks, highly connected hub regions are assumed to disproportionately... 
CA1 | functional connectivity | hippocampus | graph theory | reuniens thalamic nucleus | DREADDS | neocortex | contextual fear conditioning | lateral septal nucleus | laterodorsal thalamic nucleus | FALSE DISCOVERY RATE | INACTIVATION | HIPPOCAMPUS | CONNECTOME | MODELS | THALAMUS | BEHAVIOR | NEURAL CIRCUIT | NEUROSCIENCES | GRAPHS | Animals | Conditioning (Psychology) - physiology | Brain Mapping | Male | Mice | Image Processing, Computer-Assisted - methods | Fear - physiology | Brain - physiology | Nerve Net - physiology | Memory - physiology | Molecular genetics | Neurosciences | Children's hospitals | Brain | Data collections | Memory | Cognitive ability | Nervous system | Lethality | Nuclei | Proteins | Coding | Recall | Computer networks | Conditioning | c-Fos protein | Functions (mathematics) | Cortex (prefrontal) | Cortex | Brain mapping | Gene expression | Computer memory | Neurology | Predictions | Social organization | Hippocampus | Neuroimaging | Animal models | Correlation | Propagation | Mental disorders | Circuits | Schizophrenia | Probability distribution | Genomes | Wiring | Mouse devices | Clonal deletion | Mathematical models | Communication networks | EGR-1 protein | Neurons | Finance | Synchronism | Computer programs | Fear | Hypotheses | Neural networks | Environment models | In vivo methods and tests | Cocaine | Gene mapping | Questioning
Journal Article