NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
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Radiation induces acute alterations in neuronal functionInterictal spikes precede ictal discharges in an organotypic hippocampal slice culture model of epileptogenesis.Complex metabolically demanding sensory processing in the olfactory system: implications for epilepsy.Orthogonal wave propagation of epileptiform activity in the planar mouse hippocampus in vitroNMDA receptor-mediated long-term alterations in epileptiform activity in experimental chronic epilepsyGroup I metabotropic glutamate receptors control metaplasticity of spinal cord learning through a protein kinase C-dependent mechanismDiphenytoin, riluzole and lidocaine: three sodium channel blockers, with different mechanisms of action, decrease hippocampal epileptiform activity.Learning-Induced Metaplasticity? Associative Training for Early Odor Preference Learning Down-Regulates Synapse-Specific NMDA Receptors via mGluR and Calcineurin Activation.
P2860
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P2860
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
description
2007 nî lūn-bûn
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2007年の論文
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2007年学术文章
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2007年学术文章
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name
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@en
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@nl
type
label
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@en
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@nl
prefLabel
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@en
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@nl
P2093
P2860
P356
P1476
NMDA receptor trafficking at recurrent synapses stabilizes the state of the CA3 network.
@en
P2093
David R Grosshans
Jennifer L Hellier
Jethro P Jones
Kevin J Staley
Michael D Browning
Peter Dobelis
Steven J Coultrap
P2860
P304
P356
10.1152/JN.00346.2007
P407
P577
2007-08-29T00:00:00Z