Literature DB >> 2710349

Transneuronal retrograde degeneration of retinal ganglion cells after damage to striate cortex in macaque monkeys: selective loss of P beta cells.

A Cowey1, P Stoerig, V H Perry.   

Abstract

We examined the retinae of two monkeys whose left striate cortex had been removed eight years previously and compared the transneuronally degenerated hemiretina of each eye with the normal hemiretina, and with the retinae of normal monkeys. All retinae were prepared as whole mounts. One from each pair was stained with Cresyl Violet; the other was reacted for horseradish peroxidase two days after placing pellets of the enzyme in the optic nerve. Measurements of ganglion cell density in the Nissl-stained retina of the contralateral right eye showed that approximately 80% of retinal ganglion cells were missing in the central 30 degrees of the degenerated hemiretinae. More peripherally the percentage loss was less extensive. Measurements of cell soma size and dendritic field size of peroxidase-labelled classified surviving cells in the degenerated temporal hemiretina of the ipsilateral eye showed them to be morphologically normal. In comparison with the normal hemiretina, however, the mean soma size at three selected eccentricities was larger than normal, suggesting selective loss of smaller ganglion cells. Classification of peroxidase-labelled ganglion cells in the normal and degenerated hemiretinae revealed that the population of P beta cells was reduced by as much as 85% in the degenerated region. There was comparable change in the density of P alpha or P gamma cells. The degeneration of the great majority of P beta cells, which are believed to be the morphological substrate of ganglion cells with small and colour-opponent receptive fields, must set limits on the visual sensitivity and discrimination that survive damage to striate cortex.

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Year:  1989        PMID: 2710349     DOI: 10.1016/0306-4522(89)90333-3

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  22 in total

1.  Chromatic priming in hemianopic visual fields.

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2.  Illusory motion perception in blindsight.

Authors:  Paul Azzopardi; Howard S Hock
Journal:  Proc Natl Acad Sci U S A       Date:  2010-12-27       Impact factor: 11.205

Review 3.  The blindsight saga.

Authors:  Alan Cowey
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4.  Beyond blindsight: properties of visual relearning in cortically blind fields.

Authors:  Anasuya Das; Duje Tadin; Krystel R Huxlin
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5.  Projection patterns of surviving neurons in the dorsal lateral geniculate nucleus following discrete lesions of striate cortex: implications for residual vision.

Authors:  A Cowey; P Stoerig
Journal:  Exp Brain Res       Date:  1989       Impact factor: 1.972

6.  Functional preservation and enhanced capacity for visual restoration in subacute occipital stroke.

Authors:  Elizabeth L Saionz; Duje Tadin; Michael D Melnick; Krystel R Huxlin
Journal:  Brain       Date:  2020-06-01       Impact factor: 13.501

7.  The visual system and levels of perception: properties of neuromental organization.

Authors:  P Stoerig; S Brandt
Journal:  Theor Med       Date:  1993-06

8.  Robust Visual Responses and Normal Retinotopy in Primate Lateral Geniculate Nucleus following Long-term Lesions of Striate Cortex.

Authors:  Hsin-Hao Yu; Nafiseh Atapour; Tristan A Chaplin; Katrina H Worthy; Marcello G P Rosa
Journal:  J Neurosci       Date:  2018-03-19       Impact factor: 6.167

Review 9.  Relearning to See in Cortical Blindness.

Authors:  Michael D Melnick; Duje Tadin; Krystel R Huxlin
Journal:  Neuroscientist       Date:  2015-12-10       Impact factor: 7.519

10.  Blindsight depends on the lateral geniculate nucleus.

Authors:  Michael C Schmid; Sylwia W Mrowka; Janita Turchi; Richard C Saunders; Melanie Wilke; Andrew J Peters; Frank Q Ye; David A Leopold
Journal:  Nature       Date:  2010-06-23       Impact factor: 49.962

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