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Neuroreport|May 19, 2000
Synaptic efficacy is commonly regulated within a nervous system and predicts individual differences in learningL D Matzel, C C Gandhi, I A MuzzioLearning & Memory (Cold Spring Harbor, N.Y.)|March 4, 2000
Protein synthesis-dependent memory and neuronal enhancement in Hermissenda are contingent on parameters of training and retentionR R Ramirez, C C Gandhi, I A Muzzio, et al.Journal of Neurophysiology|April 5, 2001
Receptor-stimulated phospholipase A(2) liberates arachidonic acid and regulates neuronal excitability through protein kinase CI A Muzzio, C C Gandhi, U Manyam, et al.Journal of Neurophysiology|August 1, 1995
Diverse current and voltage responses to baclofen in an identified molluscan photoreceptorL D Matzel, I A Muzzio, R F RogersBehavioral Neuroscience|August 1, 1997
Incremental redistribution of protein kinase C underlies the acquisition curve during in vitro associative conditioning in HermissendaI A Muzzio, A C Talk, L D MatzelBehavioral Neuroscience|October 1, 1996
Variations in learning reflect individual differences in sensory function and synaptic integrationL D Matzel, I A Muzzio, A C TalkNeuroreport|June 19, 1998
Intracellular Ca2+ and adaptation of voltage responses to light in Hermissenda photoreceptorsI A Muzzio, A C Talk, L D MatzelNeurobiology of Learning and Memory|August 10, 1999
Neurophysiological substrates of context conditioning in Hermissenda suggest a temporally invariant form of activity-dependent neuronal facilitationA C Talk, I A Muzzio, L D MatzelBrain Research|March 21, 1997
Phospholipases and arachidonic acid contribute independently to sensory transduction and associative neuronal facilitation in Hermissenda type B photoreceptorsA C Talk, I A Muzzio, L D MatzelThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 24, 2000
Modulation of presynaptic action potential kinetics underlies synaptic facilitation of type B photoreceptors after associative conditioning in HermissendaC C Gandhi, L D MatzelPageof 5