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Volumn 23, Issue 2, 2013, Pages 293-304

Interpyramid spike transmission stabilizes the sparseness of recurrent network activity

Author keywords

action potential; hippocampus; lognormal distribution; neocortex; pyramidal cell; spike information; synaptic efficacy; synaptic potency; synaptic transmission

Indexed keywords

ACTION POTENTIAL; AMPLITUDE MODULATION; ANIMAL CELL; ANIMAL EXPERIMENT; ARTICLE; BRAIN CORTEX; CONTROLLED STUDY; EMBEDDING; EX VIVO STUDY; EXCITATORY POSTSYNAPTIC POTENTIAL; HIPPOCAMPAL CA3 REGION; IN VITRO STUDY; IN VIVO STUDY; INTERPYRAMID SPIKE TRANSMISSION; MALE; NERVE CELL NETWORK; NEUROTRANSMISSION; NONHUMAN; POSTSYNAPTIC MEMBRANE; PRESYNAPTIC POTENTIAL; PRIORITY JOURNAL; PYRAMIDAL NERVE CELL; RAT; SIGNAL NOISE RATIO; SIMULATION; SPIKE WAVE; SYNAPSE; WHOLE CELL;

EID: 84872317153     PISSN: 10473211     EISSN: 14602199     Source Type: Journal    
DOI: 10.1093/cercor/bhs006     Document Type: Article
Times cited : (107)

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