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The Journal of Comparative Neurology|April 17, 2001
Callosal connections correlate preferentially with ipsilateral cortical domains in cat areas 17 and 18, and with contralateral domains in the 17/18 transition zoneJ F OlavarriaNeuroscience Letters|August 11, 1995
The effect of visual deprivation on the number of callosal cells in the cat is less pronounced in extrastriate cortex than in the 17/18 border regionJ F OlavarriaThe Journal of Comparative Neurology|March 18, 1996
Non-mirror-symmetric patterns of callosal linkages in areas 17 and 18 in cat visual cortexJ F OlavarriaVisual Neuroscience|May 1, 1996
The distribution of corticotectal projection neurons correlates with the interblob compartment in macaque striate cortexB Lia, J F OlavarriaNeuroscience Letters|February 9, 1996
The callosal pattern in striate cortex is more patchy in monocularly enucleated albino than pigmented ratsP L Abel, J F OlavarriaBiological Research|January 1, 1995
Anomalous patterns of callosal connections develop in visual cortex of monocularly enucleated hamstersB J O'Brien, J F OlavarriaThe Journal of Comparative Neurology|October 9, 1995
Two rules for callosal connectivity in striate cortex of the ratJ W Lewis, J F OlavarriaNeuroscience Letters|July 26, 2011
Neonatal enucleation during a critical period reduces the precision of cortico-cortical projections in visual cortexA S Bock, J F OlavarriaThe Journal of Comparative Neurology|October 9, 1995
Effects of neonatal enucleation on the organization of callosal linkages in striate cortex of the ratJ F Olavarria, C P LiCerebral Cortex (New York, N.Y. : 1991)|July 1, 1996
The distribution of callosal connections correlates with the pattern of cytochrome oxidase stripes in visual area V2 of macaque monkeysJ F Olavarria, P L AbelPageof 3