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Adler, R., Lindsey, J. D. and Elsner, C. L (1984). Expression of cone-like properties by chick embryo neural retina cells in glia-free monolayer cultures. J. Cell Biol 99, 1173-1178.[Abstract/Free Full Text]

Adler, R (1986). Developmental predetermination of structural and molecular polarization of photoreceptor cells. Dev. Biol 117, 520-527.[Medline]

Adler, R. and Hatlee, M (1989). Plasticity and differentiation of embryonic retinal cells after terminal mitosis. Science 243, 391-393.[Abstract/Free Full Text]

Ahmed, Z. and Fellows, R. E (1987). Determination of birth date and proliferative state of dissociated cells from fetal rat brain. Dev. Brain Res 37, 77-87.

Altshuler, D. and Cepko, C (1992). A temporally regulated, diffusible activity is required for rod photoreceptor development in vitro. Development 114, 947-957.[Abstract]

Altshuler, D., Lo Turco, J. J., Rush, J. and Cepko, C (1993). Taurine promotes the differentiation of a vertebrate retinal cell type in vitro. Development 119, 1317-1328.[Abstract]

Anderson, D. J (1993). Cell fate determination in the peripheral nervous system: The sympathoadrenal progenitor. J. Neurobiol 24, 185-198.[Medline]

Arakawa, Y., Sendtner, M. and Thoenen, H (1990). Survival effect of ciliary neurotrophic factor (CNTF) on chick embryonic motoneurons in culture: comparison with other neurotrophic factors and cytokines. J. Neurosci 10, 3507-3515.[Abstract]

Barbin, G., Manthorpe, M. and Varon, S (1984). Purification of the chick eye ciliary neuronotrophic factor (CNTF). J. Neurochem 43, 1468-1478.[Medline]

Blanks, J. C. and Johnson, L. V (1984). Specific binding of peanut lectin to a class of retinal photoreceptor cells. Invest. Ophthalm. Visual Sci 25, 546-557.[Abstract/Free Full Text]

Bottenstein, J. E. and Sato, G. H (1979). Growth of a rat neuroblastoma cell line in serum-free supplemented medium. Proc. Natl. Acad. Sci. USA 76, 514-517.[Abstract/Free Full Text]

Bugra, U., Jaquemin, E., Ortiz, J. R., Jeanny, J. C. and Hicks, D (1992). Analysis of opsin mRNA and protein expression in adult and regenerating newt retina by immunology and hybridization. J. Neurocytol 21, 171-183.[Medline]

Burnham, B., Louis, J.-C., Magal, E. and Varon, S (1994). Effects of ciliary neurotrophic factor on the survival and response to nerve growth factor of cultured rat sympathetic neurons. Dev. Biol 161, 96-106.[Medline]

Ellis, J. H., Richards, D. E. and Rogers, J. H (1991). Calretinin and calbindin in the retina of the developing chick. Cell Tissue Res 264, 197-208.[Medline]

Ernsberger, U., Sendtner, M. and Rohrer, H (1989). Proliferation and differentiation of embryonic chick sympathetic neurons: Effects of ciliary neurotrophic factor. Neuron 2, 1275-1284.[Medline]

Faktorovich, E. G., Steinberg, R. H., Yasumura, D., Matthes, M. T. and LaVail, M. M (1992). Basic fibroblast growth factor and local injury protect photoreceptors from light damage in the rat. J. Neurosci 12, 3554-3567.[Abstract]

Fawcett, J. W. and O'Leary, D. D. M (1985). The role of electrical activity in the formation of topographic maps in the nervous system. Trends Neurosci 8, 201-206.

Harris, W. A. and Messersmith, S. L (1992). Two cellular inductions involved in photoreceptor determination in the Xenopus retina. Neuron 9, 357-372.[Medline]

Heller, S., Huber, J., Finn, T. P., Nishi, R. and Rohrer, H (1993). GPA and CNTF produce similar effects in sympathetic neurons but differ in receptor binding. Neuroreport 5, 357-360.[Medline]

Hicks, D. and Courtois, Y (1988). Acidic fibroblast growth factor stimulates opsin levels in retinal photoreceptor cells in vitro. FEBS Lett 234, 475-479.[Medline]

Hicks, D. and Courtois, Y (1992). Fibroblast growth factor stimulates photoreceptor differentiation in vitro. J. Neurosci 12, 2022-2033.[Abstract]

Hofmann, H.-D (1988). Development of cholinergic retinal neurons from embryonic chicken in monolayer cultures: Stimulation by glia cell-derived factors. J. Neurosci 8, 1361-1369.[Abstract]

Hofmann, H.-D (1988). Ciliary neuronotrophic factor stimulates choline acetyltransferase activity in cultured chicken retina neurons. J. Neurochem 51, 109-113.[Medline]

Holt, C. E., Bertsch, T. W., Ellis, H. M. and Harris, W. A (1988). Cellular determination in the Xenopus retina is independent of lineage and birth date. Neuron 1, 15-26.[Medline]

Huba, R. and Hofmann, H.-D (1990). Identification of GABAergic amacrine cell-like neurons developing in chick monolayer cultures. Neurosci. Lett 117, 37-42.[Medline]

Ip, N. Y., McClain, J., Barrezueta, N. X., Aldrich, T. H., Pan, L., Li, Y., Wiegand, S. J., Friedman, B., Davis, S. and Yancopoulos, G. D (1993). The component of the CNTF receptor is required for signaling and definespotential CNTF targets in the adult and during development. Neuron 10, 89-102.[Medline]

Ip, N. Y., Boulton, T. G., Li, Y., Verdi, J. M., Birren, S. J., Anderson, D. J. and Yancopoulos, G. D (1994). CNTF, FGF, and NGF collaborate to drive the terminal differentiation of MAH cells into postmitotic neurons. Neuron 13, 443-455.[Medline]

Kelley, M. W., Turner, J. K. and Reh, T. A (1994). Retinoic acid promotes differentiation of photoreceptors in vitro. Development 120, 2091-2102.[Abstract]

Kirsch, M. and Hofmann, H.-D (1994). Expression of ciliary neurotrophic factor receptor mRNA and protein in the early postnatal and adult rat nervous system. Neurosci. Lett 180, 163-167.[Medline]

Korsching, S (1993). The neurotrophic factor concept: A reexamination. J. Neurosci 13, 2739-2748.[Abstract]

Lehwalder, D., Jeffrey, P. L. and Unsicker, K (1989). Survival of purified embryonic chick retinal ganglion cells in the presence of neurotrophic factors. J. Neurosci. Res 24, 329-337.[Medline]

Leung, D. W., Parent, A. S., Cachianes, G., Esch, F., Coulombe, J. N., Nikolics, K., Eckenstein, F. P. and Nishi, R (1992). Cloning, expression during development, and evidence for release of a trophic factor for ciliary ganglion neurons. Neuron 8, 1045-1053.[Medline]

M\232ckel, V., L\232hrke, S. and Hofmann, H.-D (1994). : Diversity of neuronal phenotypes expressed in monolayer cultures from immature rabbit retina. Visual Neurosci 11, 629-642.[Medline]

Okano, T., Kojima, D., Fukada, Y., Shichida, Y. and Yoshizawa, T (1992). Primary structure of chick cone visual pigments: Vertebrate rhodopsins have evolved out of cone visual pigments. Proc. Natl. Acad. Sci. USA 89, 5932-5936.[Abstract/Free Full Text]

Prada, C., Puga, J., Perez-Mendez, L., Lopez, R. and Ram\222rez, G (1991). Spatial and temporal patterns of neurogenesis in the chick retina. Eur. J. Neurosci 3, 559-569.[Medline]

Reh, T. A. and Kljavin, I. J (1989). Age of differentiation determines rat retinal germinal cell phenotype: Induction of differentiation by dissociation. J. Neurosci 9, 4179-4189.[Abstract]

Reh, T. A (1992). Cellular interactions determine neuronal phenotypes in rodent retinal cultures. J. Neurobiol 23, 1067-1083.[Medline]

Saadat, S., Sendtner, M. and Rohrer, H (1989). Ciliary neurotrophic factor induces cholinergic differentiation of rat sympathetic neurons in culture. J. Cell Biol 108, 1807-1816.[Abstract/Free Full Text]

Sparrow, J. R., Hicks, D. and Barnstable, C. J (1990). Cell commitment and differentiation in explants of embryonic rat neural retina. Comparison with the developmental potential of dissociated retina. Dev. Brain Res 51, 69-84.[Medline]

St\232ckli, K. A., Lillien, L. E., N\212her-Noe, M., Breitfeld, G., Hughes, R. A., Raff, M. C., Thoenen, H. and Sendtner, M (1991). Regional distribution, developmental changes, and cellular localization of CNTF-mRNA and protein in the rat brain. J. Cell Biol 115, 447-459.[Abstract/Free Full Text]

Suda, K., Barde, Y.-A. and Thoenen, H (1978). Nerve growth factor in mouse and rat serum: correlation between bioassay and radioimmunoassay determinations. Proc. Natl. Acad. Sci. USA 75, 4042-4046.[Abstract/Free Full Text]

Turner, D. L. and Cepko, C. L (1987). A common progenitor for neurons and glia persists in rat retina late in development. Nature 328, 131-136.[Medline]

Watanabe, T. and Raff, M. C (1990). Rod photoreceptor development in vitro: intrinsic properties of proliferating neuroepithelial cells change as development proceeds in the rat retina. Neuron 4, 461-467.[Medline]

Watanabe, T. and Raff, M. C (1992). Diffusible rod-promoting signals in the developing rat retina. Development 114, 899-906.[Abstract]

W\212ssle, H. and Boycott, B. B (1991). Functional architecture of the mammalian retina. Physiol. Rev 71, 447-480.[Free Full Text]

Wetts, R. and Fraser, S. E (1988). Multipotent precursors can give rise to all major cell types in the frog retina. Science 239, 1142-1145.[Abstract/Free Full Text]

Yamamori, T (1992). Molecular mechanisms for generation of neural diversity and specificity: Roles of polypeptide factors in development of postmitotic neurons. Neurosci. Res 12, 545-582.[Medline]


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