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Displaced horizontal cells and biplexiform horizontal cells in the mammalian retina

Published online by Cambridge University Press:  02 June 2009

L. C. L. Silveira
Affiliation:
Departamento de Fisiologia, Universidade Federal do Pará, Belém, Brasil
E. S. Yamada
Affiliation:
Departamento de Fisiologia, Universidade Federal do Pará, Belém, Brasil
C. W. Picanço-Diniz
Affiliation:
Departamento de Fisiologia, Universidade Federal do Pará, Belém, Brasil

Abstract

We have used the neurofibrillar method of Gros-Schultze to stain the axonless horizontal cells of capybara, agouti, cat, and rabbit retinae. In all of these species, we have found two unusual horizontal cell morphologies: displaced horizontal cells and biplexiform horizontal cells. The displaced horizontal cells have perikarya located in the ganglion cell layer and dendrites branching in the inner plexiform layer. Many dendrites take an ascending trajectory to branch in the outer plexiform layer. The biplexiform horizontal cells are normally placed horizontal cells with descending processes that branch in the inner plexiform layer. Both cell types occur mainly in the retinal periphery, near the ora serrata. They are more numerous in the capybara retina, where they represent as much as 50% of the axonless horizontal cells of the retinal periphery.

Type
Short Communication
Copyright
Copyright © Cambridge University Press 1989

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References

Bloomfield, S.A. & Miller, R.F. (1982). A physiological and morphological study of the horizontal cell types of the rabbit retina. Journal of Comparative Neurology 208, 288303CrossRefGoogle ScholarPubMed
Boycott, B.B. & Kolb, H. (1973). The horizontal cells of the rhesus monkey retina. Journal of Comparative Neurology 148, 115139.CrossRefGoogle ScholarPubMed
Boycott, B.B., Dowling, J.E., Fisher, S.K., Kolb, H. & Laties, A.M. (1975). Interplexiform cells of the mammalian retina and their comparison with catecholamine-containing retinal cells. Proceedings of the Royal Society B (London) 191, 353368.Google ScholarPubMed
Boycott, B.B., Peichl, L. & Wässle, H. (1978). Morphological types of horizontal cell in the retina of the domestic cat. Proceedings of the Royal Society B (London) 203, 229245.Google ScholarPubMed
Boycott, B.B. & Peichl, L. (1981). Neurofibrillar staining of cat retinae. Proceedings of the Royal Society B (London) 212, 139156.Google Scholar
Boycott, B.B., Hopkins, J.M. & Sperling, H.G. (1987). Cone connections of the horizontal cells of the rhesus monkey's retina. Proceedings of the Royal Society B (London) 229, 345379.Google ScholarPubMed
Dacheux, R.F. & Raviola, E. (1982). Horizontal cells in the retina of the rabbit. Journal of Neuroscience 2, 14861493.CrossRefGoogle ScholarPubMed
Dawson, W.W. & Perez, J.M. (1973). Unusual retinal cells in the dolphin eye. Science 181, 747748.CrossRefGoogle ScholarPubMed
Dawson, J.E., Brown, J.E. & Major, D. (1966). Synapses of horizontal cells in rabbit and cat retinas. Science 153, 16391641.Google Scholar
Dowling, J.E. & Ehinger, B. (1975). Synaptic organization of the amine–containing interplexiform cells of the goldfish and Cebus monkey retinas. Science 188, 270273.CrossRefGoogle ScholarPubMed
Fisher, S.K. & Boycott, B.B. (1974). Synaptic connexions made by horizontal cells within the outer plexiform layer of the retina of the cat and the rabbit. Proceedings of the Royal Society B (London) 186, 317331.Google Scholar
Gallego, A. (1953). Procedimiento de impregnación argéntica de Ia retina entera. Anales del Instituto de Farmacologia Espaáola 11, 171176.Google Scholar
Gallego, A. (1964). Description d'une nouvelle couche cellulaire dans la rétine des mammifere et son rôle fonctionnel possible. Bulletin de L 'Association des Anatomistes 49, 624631.Google Scholar
Gallego, A. (1971 a). Células interplexiformes en la retina del gato. Archivos de la Sociedad Espaáola de Oftalmologia 31, 299304.Google Scholar
Gallego, A. (1971 b). Horizontal and amacrine cells in the mammal's retina. Vision Research (Suppl.) 3, 3350.CrossRefGoogle Scholar
Gallego, A. (1976). Comparative study of the horizontal cells in the vertebrate retina. In Neural Principles in Vision, ed. Zettler, F. & Weiler, R., pp. 2662. Berlin: Springer-Verlag.CrossRefGoogle Scholar
Honrubia, López F.M. (1966). Estudio de los campos anatómicos de las células ganglionares de la retina. Archivos de la Sociedad Oftalmológica Hispano–Americana 26, 693720.Google Scholar
Honrubia, López F.M. & Eilliott, J.H. (1969). Horizontal cell of the mammal retina. Archives of Ophthalmology 82, 98104.CrossRefGoogle ScholarPubMed
Kolb, H. (1970). Organization of the outer plexiform layer of the primate retina: electron microscopy of Golgi-impregnated cells. Philosophical Transactions of the Royal Society B (London) 265, 261283.Google Scholar
Kolb, H. (1974). The connections between horizontal cells and photoreceptors in the retina of the cat: electron microscopy of Golgi preparations. Journal of Comparative Neurology 155, 114.CrossRefGoogle ScholarPubMed
Kolb, H., Nelson, R. & Mariani, A. (1981). Amacrine cells, bipolar cells, and ganglion cells of the cat retina: a Golgi study. Vision Research 21, 10811114.CrossRefGoogle ScholarPubMed
Leicester, J. & Stone, J. (1967). Ganglion, amacrine, and horizontal cells of the cat's retina. Vision Research 7, 695705.CrossRefGoogle ScholarPubMed
Mariani, A.P. (1982). Biplexiform cells: ganglion cells of the primate retina that contact photoreceptors. Science 216, 11341136.CrossRefGoogle ScholarPubMed
Mariani, A.P. (1985). Multiaxonal horizontal cells in the retina of the tree shrew (Tupaia glis). Journal of Comparative Neurology 233, 553563.CrossRefGoogle ScholarPubMed
Nelson, R., VonLurzow, A. Lurzow, A., Kolb, H. & Gouras, P. (1975). Horizontal cells in cat retina with independent dendritic systems. Science 189,137139.CrossRefGoogle ScholarPubMed
Orellana, J.M. & Gallego, A. (1959). Distribución topográfica de las células horizontales de la retina. Actas de la Sociedad Espaápola de Ciencias Fisiológicas 5, 251252.Google Scholar
Peichl, L. & Bolz, J. (1984). Kainic acid induces sprouting of retinal neurons. Science 223, 503504.CrossRefGoogle ScholarPubMed
Picanço-Diniz, C.W. Diniz, C.W. (1987). Organizaçáo do Sistema Visual de Roedores da Amazônia: Topografia das á;reas Corticais Visuais da Cutia, Dasyprocta aguti. Ph.D. Thesis, Rio de Janeiro: Instituto de Biofisica, Universidade Federal do Rio de Janeiro.Google Scholar
Picanço-Diniz, C.W., Oliveira, H.L.S., Silveira, L.C.L. & Oswaldo-Cruz, E. (1989). The visual cortex of the agouti (Dasyprocta aguti): architectronic subdivisions. Brazilian Journal of Medical and Biological Research 22, 121138.Google Scholar
Prada, F.A., Armengol, J.A. & Génis-Gálvez, J.M. (1984). Displaced horizontal cells in the chick retina. Journal of Morphology 182, 221225.CrossRefGoogle ScholarPubMed
RamonY Cajal, S. Y Cajal, S. (1893). La rétine des vertébrés. La Cellule 9, 17257.Google Scholar
Ramon, Y Cajal S. (1911). Histologie du Systeme Nerveux de l'Homme et des Vertebrés. Paris: A. Maloine.Google Scholar
RamonY Cajal, S. Y Cajal, S. (1919). La desorientación inicial de las neuronas retinianas de axon corto. Trabajos del Laboratdrio de Investigaciones Biológicas 17, 6586.Google Scholar
Raviola, E. & Dacheux, R.F. (1983). Variations in structure and response properties of horizontal cells in the retina of the rabbit. Vision Research 23, 12211227.CrossRefGoogle ScholarPubMed
Sandell, J.H. & Masland, R.H. (1986). A system of indoleamineaccumulating neurons in the rabbit retina. Journal of Neuroscence 6, 33313347.CrossRefGoogle ScholarPubMed
Sandell, J.H. & Masland, R.H. (1989). Shape and distribution of an unusual retinal neuron. Journal of Comparative Neurology 280,489497.CrossRefGoogle ScholarPubMed
Schnitzer, J. & Rusoff, A.C. (1984). Horizontal cells of the mouse retina contain glutamic acid decarboxilase-like immunoreactivity during early developmental stages. Journal of Neuroscience 4, 29482955.CrossRefGoogle ScholarPubMed
Silveira, L.C.L. (1985). Organização do Sistema Visual de Roedores da Amazênia: óptica Ocular e Distribuiçáo das Células Ganglionares Retinianas. Ph.D. Thesis, Rio de Janeiro: Instituto de Biofísica, Universidade Federal do Rio de Janeiro.Google Scholar
Silveira, L.C.L., Yamada, E.S., Picanço-Diniz, C.W. & Oswaldo-Cruz, E. (1988). Células horizontais deslocadas na retina de mamIferos? Resumos da III Reunião Anual da Federação das Sociedades de Biologica Experimental, p. 9.Google Scholar
Silveira, L.C.L., Picanço-Diniz, C.W. & Oswaldo–Cruz, E. (1989). The distribution and size of ganglion cells in the retinae of large Amazon rodents. Visual Neuroscience 2, 221235.CrossRefGoogle ScholarPubMed
Silveira, L.C.L. & Perry, V.H. (1989) A neurofibrillar-staining method for retina and skin: a simple modification for improved staining and reliability. Journal of Neuroscience Methods (submitted).CrossRefGoogle Scholar
Sobrino, J.A. & Gallego, A. (1970). Células amacnnas de la capa plexiforme de la retina. Actas de la Sciedade Espaáola de Ciencias Fisiologicas 12, 373375.Google Scholar
Stell, W.K. (1972). The morphological organization of the vertebrate retina. In Handbook of Sensory Physiology, Vol. VII/2 Physiology of Photoreceptor Organs, ed. Fuortes, M.G.F., pp. 111213. Berlin: Springer-Verlag.CrossRefGoogle Scholar
Versaux-Botteri, C., Pochet, R. & Nguyen-Legros, J. (1989). Immunohistochemical localization of GABA–containing neurons during postnatal development of the rat retina. Investigative Ophthalmology and Visual Science 30, 652658.Google ScholarPubMed
Wässle, H. & Riemann, H.J. (1978). The mosaic of nerve cells in the mammalian retina. Proceedings of the Royal Society B (London) 200, 441461.Google ScholarPubMed
Wässel, H., Boycott, B.B. & Peichl, L. (1978 a). Receptor contacts of horizontal cells in the retina of the domestic cat. Proceedings of the Royal Society B (London) 203, 247267.Google Scholar
Wässle, H., Peichl, L. & Boycott, B.B. (1978 b). Topography of horizontal cells in the retina of the domestic cat. Proceedings of the Royal Society B (London) 203, 269291.Google ScholarPubMed
Wässle, H., Peichl, L. & Boycott, B.B. (1979). Quantification of horizontal cells in the domestic cat retina. In Progress in Brain Research, Vol. 51 Development and Chemical Specificity of Neurons, ed. Cuenod, M., Kreutzberg, G.W. & Bloom, F.E, pp.373388. Amsterdam: Elsevier/North Holland Biomedical Press.CrossRefGoogle Scholar
West, R.W. & Dowling, J.E. (1975). Anatomical evidence for cone and rod-like receptors in the gray squirrel, ground squirrel, and prairie dog retinas. Journal of Comparative Neurology 159, 439460CrossRefGoogle ScholarPubMed