Early visual development: differential functioning of parvocellular and magnocellular pathways.
TL;DR: Early visual development: Differential functioning of parvocellular and magnocellular pathways.
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Abstract: Early visual development: Differential functioning of parvocellular and magnocellular pathways
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Citations
Developmental Changes in Visual Scanning of Dynamic Faces and Abstract Stimuli in Infants: A Longitudinal Study
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Ophthalmological follow up of preterm infants: a population based, prospective study of visual acuity and strabismus
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Visual processing in infants and children studied using functional MRI.
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TL;DR: The results indicate that the primary visual cortical area does not respond functionally in the same manner as that of the adult until 1.5 y of age, which supports earlier clinical and electrophysiologic findings that different cortical mechanisms seem to contribute to visual perception at different times postnatally.
Changes in volume, surface estimate, three-dimensional shape and total number of neurons of the human primary visual cortex from midgestation until old age
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TL;DR: All macroscopic features have reached the mean adult value by the end of the first postnatal year and with aging, the only features to undergo significant regression are the cortical surface estimate and the caudorostral length.
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References
Distributed Hierarchical Processing in the Primate Cerebral Cortex
TL;DR: A summary of the layout of cortical areas associated with vision and with other modalities, a computerized database for storing and representing large amounts of information on connectivity patterns, and the application of these data to the analysis of hierarchical organization of the cerebral cortex are reported on.
Segregation of form, color, movement, and depth: anatomy, physiology, and perception
TL;DR: Perceptual experiments can be designed to ask which subdivisions of the system are responsible for particular visual abilities, such as figure/ground discrimination or perception of depth from perspective or relative movement--functions that might be difficult to deduce from single-cell response properties.
3.4K
Textons, the elements of texture perception, and their interactions
TL;DR: Research with texture pairs having identical second-order statistics has revealed that the pre-attentive texture discrimination system cannot globally process third- and higher- order statistics, and that discrimination is the result of a few local conspicuous features, called textons.
1.8K
Anatomy and physiology of a color system in the primate visual cortex.
TL;DR: The results suggest that a system involved in the processing of color information, especially color-spatial interactions, runs parallel to and separate from the orientation-specific system.
1.6K
Two visual systems.
TL;DR: Visual systems of hamster brain, discussing relative visual localization and discrimination blindness produced by ablation of cortical or tectal areas is discussed.
1.4K