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Monocular Deprivation: Morphological Effects on Different Classes of Neurons in the Lateral Geniculate Nucleus

L.J. Garey, Colin Blakemore

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Abstract

Retrograde axonal transport of horseadish peroxidase from areas 17 and 18 of the cat's visual cortex labels, principally, the small (X) and large (Y) cells, respectively, of the lateral geniculate nucleus. Quantitative analysis of the sizes of these morphologically identified neurons after monocular deprivation shows that the arrest of cell growth in the deprived laminae involves mainly Y cells.

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What this paper is about

Retrograde axonal transport of horseadish peroxidase from areas 17 and 18 of the cat's visual cortex labels, principally, the small (X) and large (Y) cells, respectively, of the lateral geniculate nucleus. Quantitative analysis of the sizes of these morphologically identified neurons after monocular deprivation shows that the arrest of cell growth in the deprived laminae involves mainly Y cells.

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Available abstract

Retrograde axonal transport of horseadish peroxidase from areas 17 and 18 of the cat's visual cortex labels, principally, the small (X) and large (Y) cells, respectively, of the lateral geniculate nucleus. Quantitative analysis of the sizes of these morphologically identified neurons after monocular deprivation shows that the arrest of cell growth in the deprived laminae involves mainly Y cells.

Key concepts: Lateral geniculate nucleus, Monocular deprivation, Geniculate, Axoplasmic transport, Visual cortex, Nucleus, Neuroscience, Biology

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Monocular Deprivation: Morphological Effects on Different Classes of Neurons in the Lateral Geniculate Nucleus — Research Paper | ScholarLens