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Distribution of visual callosal neurons in normal and strabismic cats.

作者信息

Bourdet C, Olavarria J F, Van Sluyters R C

机构信息

School of Optometry, University of California, Berkeley 94720-2020, USA.

出版信息

J Comp Neurol. 1996 Mar 4;366(2):259-69. doi: 10.1002/(SICI)1096-9861(19960304)366:2<259::AID-CNE6>3.0.CO;2-4.

DOI:10.1002/(SICI)1096-9861(19960304)366:2<259::AID-CNE6>3.0.CO;2-4
PMID:8698886
Abstract

It has been suggested that synchronous activation of cortical loci in the two cerebral hemispheres during development leads to the stabilization of juvenile callosal connections in some areas of the visual cortex. One way in which loci in opposite hemispheres can be synchronously activated is if they receive signals generated by the same stimulus viewed through different eyes. These ideas lead to the prediction that shifts in the cortical representation of the visual field caused by misalignment of the visual axes (strabismus) should change the width of the callosal zone in the striate cortex. We tested this prediction by using quantitative techniques to compare the tangential distribution of callosal neurons in the striate cortex of strabismic cats to that in normally reared cats. Animals were rendered strabismic surgically at 8-10 days of age and were allowed to survive a minimum of 18 weeks, at which time multiple intracortical injections of the tracer horseradish peroxidase (HRP) were used to reveal the distribution of callosally projecting cells in the contralateral striate cortex. HRP-labeled cells were counted in coronal sections, and data from four animals with divergent strabismus (exotropia) and four with convergent strabismus (esotropia) were compared to those from four normally reared animals. Although our data from strabismic cats do not differ markedly from those reported previously, we find that the distribution of callosal cells in the striate cortex of these cats does not differ significantly from that in our normally reared control cats. These results do not bear out the prediction that surgically shifting the visual axes leads to stabilization of juvenile callosal axons in anomalous places within the striate cortex.

摘要

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Asymmetrical interhemispheric connections develop in cat visual cortex after early unilateral convergent strabismus: anatomy, physiology, and mechanisms.早期单侧会聚性斜视后猫视觉皮层中出现不对称的大脑两半球间连接:解剖、生理和机制。
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在雪貂的出生后发育过程中,视网膜输入会影响视觉皮层的大小和皮质间连接。
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Changes in the structure of neuronal connections in the visual cortex of cats with experimentally induced bilateral strabismus.实验性诱导双侧斜视的猫视觉皮层中神经元连接结构的变化。
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