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Journal of Neurophysiology|May 1, 1975
Visual activation of neurons in inferotemporal cortex depends on striate cortex and forebrain commissuresC E Rocha-Miranda, D B Bender, C G Gross, et al.The Quarterly Journal of Experimental Psychology. B, Comparative and Physiological Psychology|November 1, 1994
A primacy effect in monkeys when list position is relevantB Buffalo, D Gaffan, E A MurrayThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 1, 1997
Excitotoxic lesions of the amygdala fail to produce impairment in visual learning for auditory secondary reinforcement but interfere with reinforcer devaluation effects in rhesus monkeysL Málková, D Gaffan, E A MurrayFrontiers in Neuroscience|June 5, 2015
Anatomical pathways for auditory memory II: information from rostral superior temporal gyrus to dorsolateral temporal pole and medial temporal cortexM Muñoz-López, R Insausti, A Mohedano-Moriano, et al.Brain Research|July 28, 1987
Gradients of protein kinase C substrate phosphorylation in primate visual system peak in visual memory storage areasR B Nelson, D P Friedman, J B O'Neill, et al.The European Journal of Neuroscience|July 1, 1993
Interaction of the amygdala with the frontal lobe in reward memoryD Gaffan, E A Murray, M Fabre-ThorpeBrain Research|April 3, 1995
Protein kinase C in the hippocampus is altered by spatial but not cued discriminations: a component task analysisS Golski, J L Olds, M Mishkin, et al.The European Journal of Neuroscience|September 1, 1994
Preserved recognition memory for small sets, and impaired stimulus identification for large sets, following rhinal cortex ablations in monkeysM J Eacott, D Gaffan, E A MurrayExperimental Brain Research|April 16, 1998
Aspiration lesions of the amygdala disrupt the rhinal corticothalamic projection system in rhesus monkeysS Goulet, F Y Doré, E A MurrayNature Neuroscience|December 2, 2000
Learning motivational significance of visual cues for reward schedules requires rhinal cortexZ Liu, E A Murray, B J RichmondPageof 21