Effects of corpus callosum section on functional compensation in the posteromedial lateral suprasylvian visual area after early visual cortex damage in cats
- 1 February 1987
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 256 (1) , 128-136
- https://doi.org/10.1002/cne.902560111
Abstract
A visual cortex lesion made in adult cats leads to a loss of direction selectivity and a loss of response to the ipsilateral eye among cells in posteromedial lateral suprasylvian (PMLS) cortex of cats. However, a visual cortex lesion made in young cats results in normal direction selectivity and normal ocular dominance in PMLS cortex. Thus cats with an early lesion demonstrate functional compensation in PMLS cortex. The present experiment determined whether the functional compensation depends upon an intact corpus callosum. Cats received a unilateral visual cortex lesion on the day of birth (day 1) or at 8 weeks of age. When the cats were adult, the corpus callosum was sectioned and 24 hours later recordings were made in PMLS cortex ipsilateral to the visual cortex lesion. Results were compared to cats with a similar lesion and an intact corpus callosum. In cats with a lesion made on day 1, a corpus callosum section did not affect receptive‐field properties or ocular dominance in PMLS cortex. Therefore, functional compensation is not dependent on input via the corpus callosum in these animals. However, in cats with a lesion made at 8 weeks, a corpus callosum section resulted in a decrease in the percentage of direction‐selective cells and in the percentage of cells driven by the ipsilateral eye. Despite the decrease, the percentage of direction‐selective cells still was greater than in cats with an adult unilateral visual cortex lesion. Thus, while partly dependent on callosal inputs, some functional compensation for direction selectivity remains on the basis of ipsilateral inputs. In contrast, the percentage of cells driven by the ipsilateral eye was no longer significantly different from that in cats with an adult visual cortex lesion. This suggests that functional compensation for response to the ipsilateral eye is dependent on an intact corpus callosum in cats that received a visual cortex lesion at 8 weeks of age.Keywords
This publication has 26 references indexed in Scilit:
- Postnatal development of afferent projections to the lateral suprasylvian visual area in the cat: An HRP studyJournal of Comparative Neurology, 1986
- Alterations in connections of the corpus callosum following convergent and divergent strabismusBrain Research, 1983
- Spatial dissociation of visual inputs alters the origin of the corpus callosumNeuroscience Letters, 1983
- Callosal connections of suprasylvian visual areas in the catNeuroscience, 1981
- Postnatal shaping of callosal connections from sensory areasExperimental Brain Research, 1980
- Effects of visual experience on the maturation of the efferent system to the corpus callosumNature, 1979
- Asymmetry in the visual callosal connections of strabismic catsBrain Research, 1979
- Exuberant projection into the corpus callosum from the visual cortex of newborn catsNeuroscience Letters, 1977
- The Organization of the Thalamo-Cortical Visual Pathways in the Cat; pp. 220–237Brain, Behavior and Evolution, 1971
- The projection of the lateral geniculate nucleus upon the cortex in the catProceedings of the Royal Society of London. B. Biological Sciences, 1967