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Nature Neuroscience|March 5, 2005
Inhibitory synapses in the developing auditory system are glutamatergicDeda C Gillespie, Gunsoo Kim, Karl KandlerTrends in Neurosciences|June 2, 2005
Developmental refinement of inhibitory sound-localization circuitsKarl Kandler, Deda C GillespieNature Neuroscience|February 11, 2003
Elimination and strengthening of glycinergic/GABAergic connections during tonotopic map formationGunsoo Kim, Karl KandlerJournal of Neuroscience Methods|June 28, 2011
Paired recordings from distant inhibitory neuron pairs by a sequential scanning approachGunsoo Kim, Karl KandlerJournal of Neurophysiology|July 11, 2003
Glutamatergic calcium responses in the developing lateral superior olive: receptor types and their specific activation by synaptic activity patternsF Aura Ene, Paul H M Kullmann, Deda C Gillespie, et al.Physiology & Behavior|January 16, 2003
Excitatory action of an immature glycinergic/GABAergic sound localization pathwayKarl Kandler, Paul H M Kullmann, F Aura Ene, et al.Neuron|May 24, 2014
The precise temporal pattern of prehearing spontaneous activity is necessary for tonotopic map refinementAmanda Clause, Gunsoo Kim, Mandy Sonntag, et al.Plos One|September 27, 2013
Maturation of calcium-dependent GABA, glycine, and glutamate release in the glycinergic MNTB-LSO pathwayJavier Alamilla, Deda C GillespieThe Journal of Comparative Neurology|April 2, 2011
Synaptotagmins I and II in the developing rat auditory brainstem: Synaptotagmin I is transiently expressed in glutamate-releasing immature inhibitory terminalsAlan P Cooper, Deda C GillespieJournal of Neurophysiology|August 12, 2011
Pre- and postsynaptic properties of glutamatergic transmission in the immature inhibitory MNTB-LSO pathwayDaniel T Case, Deda C GillespiePageof 6