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cAMP responsive element-binding protein phosphorylation is necessary for perirhinal long-term potentiation and recognition memoryNeural circuitry for rat recognition memory.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.Disruption of hippocampal-prefrontal cortex activity by dopamine D2R-dependent LTD of NMDAR transmission.Findings from animals concerning when interactions between perirhinal cortex, hippocampus and medial prefrontal cortex are necessary for recognition memory.Unraveling the contributions of the diencephalon to recognition memory: a review.Investigations into the involvement of NMDA mechanisms in recognition memoryMechanisms of synaptic plasticity and recognition memory in the perirhinal cortex.Assessing the magnitude of the allocentric spatial deficit associated with complete loss of the anterior thalamic nuclei in rats.Optogenetic Stimulation of Prefrontal Glutamatergic Neurons Enhances Recognition Memory.MicroRNA-132 regulates recognition memory and synaptic plasticity in the perirhinal cortex.Perirhinal cortex lesions impair tests of object recognition memory but spare novelty detection.Recognition memory-induced gene expression in the perirhinal cortex: A transcriptomic analysis.The medial dorsal thalamic nucleus and the medial prefrontal cortex of the rat function together to support associative recognition and recency but not item recognition.Differing time dependencies of object recognition memory impairments produced by nicotinic and muscarinic cholinergic antagonism in perirhinal cortex.Contrasting roles for DNA methyltransferases and histone deacetylases in single-item and associative recognition memoryInduction of activity-dependent LTD requires muscarinic receptor activation in medial prefrontal cortex.Study of novel selective mGlu2 agonist in the temporo-ammonic input to CA1 neurons reveals reduced mGlu2 receptor expression in a Wistar substrain with an anxiety-like phenotype.Early memory formation disrupted by atypical PKC inhibitor ZIP in the medial prefrontal cortex but not hippocampus.Regionally selective requirement for D1/D5 dopaminergic neurotransmission in the medial prefrontal cortex in object-in-place associative recognition memory.A role for calcium-calmodulin-dependent protein kinase II in the consolidation of visual object recognition memory.Cholinergic neurotransmission is essential for perirhinal cortical plasticity and recognition memory.Anterior thalamic lesions stop synaptic plasticity in retrosplenial cortex slices: expanding the pathology of diencephalic amnesia.Learning-specific changes in long-term depression in adult perirhinal cortex.Expression of long-term depression underlies visual recognition memory.NMDA receptor plasticity in the perirhinal and prefrontal cortices is crucial for the acquisition of long-term object-in-place associative memory.When is the hippocampus involved in recognition memory?A role for the CAMKK pathway in visual object recognition memory.Recognition memory for objects, place, and temporal order: a disconnection analysis of the role of the medial prefrontal cortex and perirhinal cortex.Separate elements of episodic memory subserved by distinct hippocampal-prefrontal connections.The different effects on recognition memory of perirhinal kainate and NMDA glutamate receptor antagonism: implications for underlying plasticity mechanisms.Fos imaging reveals differential neuronal activation of areas of rat temporal cortex by novel and familiar sounds.A critical role for the nucleus reuniens in long-term, but not short-term associative recognition memory formation.Muscarinic Receptor-Dependent Long Term Depression in the Perirhinal Cortex and Recognition Memory are Impaired in the rTg4510 Mouse Model of Tauopathy.Extensive cytotoxic lesions involving both the rhinal cortices and area TE impair recognition but spare spatial alternation in the rat.Nicotinic Acetylcholine Receptors Control Encoding and Retrieval of Associative Recognition Memory through Plasticity in the Medial Prefrontal Cortex.CREB transcription in the medial prefrontal cortex regulates the formation of long-term associative recognition memory
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description
researcher ORCID ID = 0000-0002-2129-2060
@en
wetenschapper
@nl
name
Elizabeth Clea Warburton
@ast
Elizabeth Clea Warburton
@en
Elizabeth Clea Warburton
@es
Elizabeth Clea Warburton
@nl
type
label
Elizabeth Clea Warburton
@ast
Elizabeth Clea Warburton
@en
Elizabeth Clea Warburton
@es
Elizabeth Clea Warburton
@nl
prefLabel
Elizabeth Clea Warburton
@ast
Elizabeth Clea Warburton
@en
Elizabeth Clea Warburton
@es
Elizabeth Clea Warburton
@nl
P108
P1153
7003598709
P21
P31
P496
0000-0002-2129-2060