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Neuroscience|September 24, 2008
Protein kinase C-dependent and independent signaling pathways regulate synaptic GluR1 and GluR4 AMPAR subunits during in vitro classical conditioningZ Zheng, J KeiferThe European Journal of Neuroscience|July 22, 2010
AMPA receptor trafficking and learningJ Keifer, Z ZhengThe Journal of Comparative Neurology|October 31, 2000
Immunocytochemical localization of glutamate receptor subunits in the brain stem and cerebellum of the turtle Chrysemys pictaJ Keifer, M T CarrJournal of Neurophysiology|March 23, 1999
Properties of conditioned abducens nerve responses in a highly reduced in vitro brain stem preparation from the turtleC W Anderson, J KeiferBrain Research|April 16, 1993
Intrinsic and synaptic properties of turtle red nucleus neurons in vitroJ Keifer, J C HoukThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 10, 1998
The cerebellum and red nucleus are not required for In vitro classical conditioning of the turtle abducens nerve responseC W Anderson, J KeiferExperimental Brain Research|May 20, 1998
Evidence for a photosensitive region in the caudal mesencephalon of the turtle brainC W Anderson, J KeiferBrain, Behavior and Evolution|April 29, 1998
Central trigeminal and posterior eighth nerve projections in the turtle Chrysemys picta studied in vitroJ L Herrick, J KeiferThe Journal of Comparative Neurology|December 1, 1999
Comparison of cortically and subcortically controlled motor systems. II. Distribution of anterogradely labeled terminal boutons on intracellularly filled rubrospinal neurons in rat and turtleJ Keifer, D G LustigNeuroscience Letters|February 13, 1989
An in vitro preparation for studying motor pattern generation in the cerebellorubrospinal circuit of the turtleJ Keifer, J C HoukPageof 15