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Journal of Child Neurology|January 16, 1998
Antiepileptic drug cellular mechanisms of action: where does lamotrigine fit in?D A CoulterEpilepsia|July 27, 1999
Chronic epileptogenic cellular alterations in the limbic system after status epilepticusD A CoulterEpilepsia|September 22, 2000
Mossy fiber zinc and temporal lobe epilepsy: pathological association with altered "epileptic" gamma-aminobutyric acid A receptors in dentate granule cellsD A CoulterInternational Review of Neurobiology|December 29, 2000
Epilepsy-associated plasticity in gamma-aminobutyric acid receptor expression, function, and inhibitory synaptic propertiesD A CoulterAnnals of Neurology|December 1, 1995
Experimental status epilepticus alters gamma-aminobutyric acid type A receptor function in CA1 pyramidal neuronsJ Kapur, D A CoulterAdvances in Neurology|October 9, 1999
Basic mechanisms of status epilepticusD A Coulter, R J DeLorenzoProgress in Brain Research|June 22, 2016
Normal and epilepsy-associated pathologic function of the dentate gyrusC G Dengler, D A CoulterEpilepsy Research|February 1, 1996
Anticonvulsant drug effects on spontaneous thalamocortical rhythms in vitro: phenytoin, carbamazepine, and phenobarbitalY F Zhang, D A CoulterJournal of Neurophysiology|May 1, 1997
Physiology and pharmacology of corticothalamic stimulation-evoked responses in rat somatosensory thalamic neurons in vitroC Q Kao, D A CoulterBrain Research|December 17, 1993
Thalamocortical rhythm generation in vitro: extra- and intracellular recordings in mouse thalamocortical slices perfused with low Mg2+ mediumD A Coulter, C J LeePageof 6