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Experimental Brain Research|January 1, 1992
Binocular interaction and disparity coding at the 17-18 border: contribution of the corpus callosumF Lepore, A Samson, M C Paradis, et al.Brain Research|November 17, 2007
Receptive field properties and sensitivity to edges defined by motion in the postero-lateral lateral suprasylvian (PLLS) area of the catN Robitaille, F Lepore, B A Bacon, et al.Neuroscience|February 6, 2007
Auditory responses in the visual cortex of neonatally enucleated ratsM Piché, N Chabot, G Bronchti, et al.Experimental Biology|January 1, 1987
Anomalous 2-deoxyglucose uptake and acetylcholinesterase activity in cat LGN after optic chiasm sectionC Shaw, S Kirby, M Feran, et al.The European Journal of Neuroscience|May 3, 2000
Cellular response to texture and form defined by motion in area 19 of the catP S Khayat, D Saint-Amour, S Molotchnikoff, et al.Experimental Brain Research|September 4, 2007
Responses of inferior collicular cells to species-specific vocalizations in normal and enucleated ratsT A Pincherli Castellanos, J Aitoubah, S Molotchnikoff, et al.Brain Research. Brain Research Protocols|February 27, 2001
Comparative computations of spike synchronization in visual cortex of catsS Molotchnikoff, J Aïtoubah, F Bretzner, et al.Canadian Journal of Physiology and Pharmacology|September 1, 1995
Binocular interactions and visual acuity loss in esotropic catsM Ptito, P Bouchard, F Lepore, et al.Experimental Brain Research|January 1, 1993
Binocular interaction and disparity coding in area 19 of visual cortex in normal and split-chiasm catsJ P Guillemot, M C Paradis, A Samson, et al.Vision Research|February 27, 2003
Longer VEP latencies and slower reaction times to the onset of second-order motion than to the onset of first-order motionD Ellemberg, K Lavoie, T L Lewis, et al.Pageof 6