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1.
Retina ; 9(1): 69-74, 1989.
Article in English | MEDLINE | ID: mdl-2717805

ABSTRACT

Large ganglion cells, called parasol cells, are known to occur in the Golgi-stained, human retina. This report describes a population of much larger cells that is not stained by Golgi technique. These cells may be located in the human ganglion cell layer using Nomarski differential interference contrast optics and unstained, flatmounted tissue. These cells are regularly distributed in young and old adults in a Gaussian fashion along the radii that extend from the perimacula toward the far periphery. The author did not find the cells in the central retina. The most frequent (J-type) cells have soma diameters between 26 and 40 microns. Rare (S-type) cells measure up to 55 microns in diameter. Many cells have processes that appear to be axons or dendrites. These cell types may be especially sensitive to damage early in diseases of the inner retina.


Subject(s)
Retina/innervation , Adult , Aged , Humans , Neurons/cytology , Retina/cytology , Retinal Ganglion Cells/cytology
2.
J Comp Neurol ; 205(1): 1-7, 1982 Feb 10.
Article in English | MEDLINE | ID: mdl-7068947

ABSTRACT

Giant neural cell systems (dendrites, cell bodies, and axons) are present among more usual structures in the retina and optic nerve of the small whale (dolphin) Tursiops truncatus retina. Giant cell body dimensions range up to 75 microns in diameter. Nuclei of the cells are frequently larger (greater than 20 microns) than nearby ganglion, bipolar, and receptor cell bodies. The presence of the giant cell system and giant elements in the nerve fiber layer agree with the unusually broad fiber spectrum of the dolphin optic nerve where more than 6% of the axons are greater than 15 microns in diameter. Smaller axons in the size distribution are typical of dimensions found in terrestrial mammals. The axon estimate totaled 157,000 per optic nerve. The giant cell-axon systems of the whale retina may be a unique expression of the large ganglion cell-axon (transient or "Y" functional unit) systems recently identified in terrestrial mammals.


Subject(s)
Dolphins/anatomy & histology , Optic Nerve/ultrastructure , Retina/cytology , Animals , Axons/ultrastructure , Species Specificity
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