DocumentCode
351024
Title
The role of activity in corpus callosum development in the visual cortex
Author
Hely, Tim
Author_Institution
Santa Fe Inst., NM, USA
Volume
1
fYear
1999
fDate
1999
Firstpage
413
Abstract
Many previous models have explained how ocular dominance- and orientation selective columns could develop in the visual cortex. However, few models have investigated the topographic arrangement of interhemispheric connections between primary visual areas. A model of the development of corpus callosum connections in cat visual cortex was presented by Hely (1999). The model showed how the observed hour-glass pattern of callosal receptive field (RF) positions arises as a consequence of the retinotopic mapping onto the cortex. In the cat, callosal connections only form between cells with visual field RFs located close to the vertical meridian. In contrast in rat visual cortex, callosal connections also form between cells with RFs in the peripheral visual field. This cannot be accounted for using a Hebbian rule based on spatial information alone. The current generic model of primary visual cortex was extended by including optic-flow/motion information. This extra input enabled cells with peripheral RFs fields in the medial cortex to make connections to the opposite hemisphere. The results from the model suggest that in some species motion information may affect the development of connections in primary visual cortex
Keywords
neurophysiology; Hebbian rule; RF positions; callosal receptive field positions; cat visual cortex; corpus callosum development; hour-glass pattern; interhemispheric connections; medial cortex; motion information; ocular dominance-selective columns; ocular orientation-selective columns; optic-flow information; rat visual cortex; retinotopic mapping; topographic arrangement; vertical meridian; visual cortex;
fLanguage
English
Publisher
iet
Conference_Titel
Artificial Neural Networks, 1999. ICANN 99. Ninth International Conference on (Conf. Publ. No. 470)
Conference_Location
Edinburgh
ISSN
0537-9989
Print_ISBN
0-85296-721-7
Type
conf
DOI
10.1049/cp:19991144
Filename
819756
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