Bonfanti, L., Strettoi, E., Chierzi, S., Cenni, M., Liu, X., Martinou, J.-C., Maffei, L. and Rabacchi, S (1996). Protection of retinal ganglion cells from natural and axotomy-induced cell death in neonatal transgenic mice overexpressing bcl-2. J. Neurosci 16, 4186-4194.[Abstract/Free Full Text]
Bumsted, K., Jasoni, C., Szel, A. and Hendrickson, A (1997). Spatial and temporal expression of cone opsins during monkey retinal development. J. Comp. Neurol 378, 117-134.[Medline]
Cenni, M., Bonfanti, L., Martinou, J.-C., Ratto, G., Strettoi, E. and Maffei, L (1996). Long-term survival of retinal ganglion cells following optic nerve section in adult BCL2 transgenic mice. Eur. J. Neurosci 8, 1735-1745.[Medline]
Cepko, C. L (1996). The patterning and onset of opsin expression in vertebrate retinae. Curr. Opin. Neurobiol 6, 542-546.[Medline]
Cook, J. E. and Chalupa, L. M (2000). Retinal mosaics: new insights into an old concept. Trends Neurosci 23, 26-34.[Medline]
Dubois-Dauphin, M., Frankowski, H., Tsujimoto, Y., Huarte, J. and Martinou, J.-C (1994). Neonatal motoneurons over-expressing the bcl-2 protooncogene in transgenic mice are protected from axotomy induced cell death. Proc. Natl. Acad. Sci. USA 94, 3309-3313.
Efron, B. and Tibshirani, R. J (1991). Statistical data analysis in the computer age. Science 253, 390-395.[Abstract/Free Full Text]
Famiglietti, E. J (1983). On and off pathways through amacrine cells in mammalian retina: the synaptic connections of \322starburst\323 amacrine cells. Vision Res 23, 1265-1279.[Medline]
Feller, M. B., Wellis, D. P., Stellwagen, D., Werblin, F. S. and Shatz, C. J (1996). Requirement for cholinergic synaptic transmission in the propagation of spontaneous retinal waves. Science 272, 1182-1187.[Abstract]
Freeman, M (1997). Cell determination strategies in the Drosophila eye. Development 124, 261-270.[Abstract]
Galli-Resta, L. and Ensini, M (1996). An intrinsic limit between genesis and death of individual neurons in the developing retinal ganglion cell layer. J. Neurosci 16, 2318-2324.[Abstract/Free Full Text]
Galli-Resta, L., Novelli, E., Kryger, Z., Jacobs, G. and Reese, B (1999). Modelling the mosaic organization of rod and cone photoreceptors with a minimal spacing rule. Eur. J. Neurosci 11, 1438-1446.
Galli-Resta, L., Resta, G., Tan, S.-S. and Reese, B (1997). Mosaics of Islet-1 expressing amacrine cells assembled by short range cellular interactions. J. Neurosci 17, 7831-7838.[Abstract/Free Full Text]
Hendrikson, A. E (1994). Primate foveal development: a microcosm of current questions in neurobiology. Invest. Oph. Vis. Sci 35, 3129-3133.[Free Full Text]
Larison, K. D. and Bremiller, R (1990). Early onset of phenotype and cell patterning in the embryonic zebrafish retina. Development 109, 567-576.[Abstract]
MacNeil, M. and Masland, R (1998). Extreme diversity among amacrine cells: implications for function. Neuron 20, 971-982.[Medline]
Masland, R. H (1996). Processing and encoding of visual information in the retina. Curr. Opin. Neurobiol 6, 467-474.[Medline]
Masland, R. H. and Tauchi, M (1986). The cholinergic amacrine cell. Trends Neurosci 9, 218-223.
Meinhardt, H (1992). Pattern-formation in biology \320 a comparison of models and experiments. Reports on Progress in Physics_Fb_55._Fb_Penn, A. A., Riquelme, P. A., Feller, M. B. and Shatz, C. J. (1998). Competition in retinogeniculate patterning driven by spontaneous activity. Science 279, 2108-2112.[Abstract/Free Full Text]
Perry, V. H., Henderson, Z. and Linden, R (1983). Postnatal changes in retinal ganglion and optic axon populations in the pigmented rat. J. Comp. Neurol 219, 356-368.[Medline]
Rabacchi, S. A., Ensini, M., Bonfanti, L., Gravina, A. and Maffei, L (1994). Nerve growth factor reduces apoptosis of axotomized retinal ganglion cells in the neonatal rat. Neurosci 63, 969-973.[Medline]
Raymond, P. A., Barthel, L. K. and Curran, G. A (1995). Developmental patterning of rod and cone photoreceptors in embryonic zebrafish. J. Comp. Neurol 359, 537-550.[Medline]
Reese, B., Necessary, B., Tam, P., Faulkner-Jones, B. and Tan, S (1999). Clonal expansion and cell dispersion in the developing mouse retina. Eur. J. Neurosci 11, 2965-2978.[Medline]
Reese, B. E., Harvey, A. R. and Tan, S.-S (1995). Radial and tangential dispersion patterns in the mouse retina are cell-class specific. Proc. Natl. Acad. Sci. USA 92, 2494-2498.[Abstract/Free Full Text]
Rodieck, R. W (1991). The density recovery profile: a method for the analysis of points in the plane applicable to retinal studies. Vis. Neurosci 6, 95-111.[Medline]
Scheibe, R., Schnitzer, J., R\232hrenbeck, J., Wohlrab, F. and Reichenbach, A (1995). Development of A-type (axonless) horizontal cells in the rabbit retina. J. Comp. Neurol 354, 438-458.[Medline]
Usdin, T., Eiden, L., Bonner, T. and Erickson, J (1995). Molecular biology of the vesicular ACh transporter. Trends Neurosci 18, 218-224.[Medline]
W\212ssle, H. and Boycott, B. B (1991). Functional architecture of the mammalian retina. Physiol. Rev 71, 447-480.[Free Full Text]
W\212ssle, H. and Riemann, H. J (1978). The mosaic of nerve cells in the mammalian retina. Proc. Royal Soc. London B 200, 441-461.[Medline]
Wikler, K. C. and Rakic, P (1991). Relation of an array of early-differentiated cones to the photoreceptor mosaic in the primate retina. Nature 351, 397-400.[Medline]
Wikler, K. C., Rakic, P., Bhattacharyya, N. and Macleish, P. R (1997). Early emergence of photoreceptor mosaicism in the primate retina revealed by a novel cone-specific monoclonal antibody. J. Comp. Neurol 377, 500-508.[Medline]