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Ackerman, S. L., Kozak, L. P., Przyborski, S. A., Rund, L. A., Boyer, B. B. and Knowles, B. B (1997). The mouse rostral cerebellar malformation gene encodes an UNC-5-like protein. Nature 386, 838-842.[Medline]

Alder, J., Cho, N. K. and Hatten, M. E (1996). Embryonic precursor cells from the rhombic lip are specified to a cerebellar granule neuron identity. Neuron 17, 389-399.[Medline]

Altman, J. and Bayer, S. A (1987). Development of the precerebellar nuclei in the rat: I.-IV. J. Comp. Neurol 257, 477-552.[Medline]

Aruga, J., Minowa, O., Yaginuma, H., Kuno, J., Nagai, T., Noda, T. and Mikoshiba, K (1998). Mouse Zic1 is involved in cerebellar development. J. Neurosci 18, 284-93.[Abstract/Free Full Text]

Ben-Arie, N., Bellen, H. J., Armstrong, D. L., McCall, A. E., Gordadze, P. R., Guo, Q., Matzuk, M. M. and Zoghbi, H. Y (1997). Math1 is essential for genesis of cerebellar granule neurons. Nature 390, 169-172.[Medline]

Book, K. J., Howard, R. and Morest, D. K (1991). Direct observation in vitro of how neuroblasts migrate: medulla and cochleovestibular ganglion of the chick embryo. Exp. Neurol 111, 228-243.[Medline]

Brown, S. A., Warburton, D., Brown, L. Y., Yu, C. Y., Roeder, E. R., Stengel-Rutkowski, S., Hennekam, R. C. and Muenke, M (1998). Holoprosencephaly due to mutations in ZIC2, a homologue of Drosophila odd-paired. Nat. Genet 20, 180-183.[Medline]

Callaerts, P., Halder, G. and Gehring, W. J (1997). PAX-6 in development and evolution. Annu. Rev. Neurosci 20, 483-532.[Medline]

Caric, D., Gooday, D., Hill, R. E., McConnell, S. K. and Price, D. J (1997). Determination of the migratory capacity of embryonic cortical cells lacking the transcription factor Pax-6. Development 124, 5087-5096.[Abstract]

Chisholm, A. D. and Horvitz, H. R (1995). Patterning of the Caenorhabditis elegans head region by the Pax-6 family member vab-3. Nature 377, 52-55.[Medline]

Choi, B. H (1991). Effects of methylmercury on neuroepithelial germinal cellsin the developing telencephalic vesicles of mice. Acta Neuropathologica 81, 359-.[Medline]

Dressler, G. R. and Douglass, E. C (1992). Pax-2 is a DNA-binding protein expressed in embryonic kidney and Wilms tumor. Proc. Natl. Acad. Sci. USA 89, 1179-83.[Abstract/Free Full Text]

Ericson, J., Rashbass, P., Schedl, A., Brenner-Morton, S., Kawakami, A., van Heyningen, V., Jessell, T. M. and Briscoe, J (1997). Pax6 controls progenitor cell identity and neuronal fate in response to graded Shh signaling. Cell 90, 169-180.[Medline]

Essik, C. R (1912). The development of the nuclei pontis and the nucleus arcuatus in man. Am. J. Anat 13, 25-54.

Fazeli, A., Dickinson, S. L., Hermiston, M. L., Tighe, R. V., Steen, R. G., Small, C. G., Stoeckli, E. T., Keino-Masu, K., Masu, M., Rayburn, H. et al (1997). Phenotype of mice lacking functional Deleted in colorectal cancer (Dcc) gene. Nature 386, 796-804.[Medline]

G\232tz, M., Stoykova, A. and Gruss, P (1998). Pax6 controls radial glia differentiation in the cerebral cortex. Neuron 21, 1031-.[Medline]

Grindley, J. C., Davidson, D. R. and Hill, R. E (1995). The role of Pax-6 in eye and nasal development. Development 121, 1433-1442.[Abstract]

Grindley, J. C., Hargett, L. K., Hill, R. E., Ross, A. and Hogan, B. L (1997). Disruption of PAX6 function in mice homozygous for the Pax6Sey-1Neu mutation produces abnormalities in the early development and regionalization of the diencephalon. Mech. Dev 64, 111-126.[Medline]

Halder, G., Callaerts, P. and Gehring, W. J (1995). Induction of ectopic eyes by targeted expression of the eyeless gene in Drosophila. Science 267, 1788-1792.[Abstract/Free Full Text]

Hallonet, M. E., Teillet, M. A. and Le Douarin, N. M (1990). A new approach to the development of the cerebellum provided by the quail-chick marker system. Development 108, 19-31.[Abstract]

Hanson, I. and van Heyningen, V (1995). Pax6: more than meets the eye. Trends Genet 11, 268-272.[Medline]

Hatten, M. E. and Heintz, N (1995). Mechanisms of neural patterning and specification in the developing cerebellum. Annu. Rev. Neurosci 18, 385-408.[Medline]

355 (6362). :750]. Nature 354, 522-525.[Medline]

Keino-Masu, K., Masu, M., Hinck, L., Leonardo, E. D., Chan, S. S., Culotti, J. G. and Tessier-Lavigne, M (1996). Deleted in Colorectal Cancer (Dcc) encodes a netrin receptor. Cell 87, 175-85.[Medline]

Kennedy, T. E., Serafini, T., de la Torre, J. R. and Tessier-Lavigne, M (1994). Netrins are diffusible chemotropic factors for commissural axons in the embryonic spinal cord. Cell 78, 425-435.[Medline]

K\232hler, G. and Milstein, C (1975). Continuous cultures of fused cells secreting antibody of predefined specificity. Nature 256, 495-497.[Medline]

Larsson, S. H., Charlieu, J. P., Miyagawa, K., Engelkamp, D., Rassoulzadegan, M., Ross, A., Cuzin, F., van Heyningen, V. and Hastie, N. D (1995). Subnuclear localization of WT1 in splicing or transcription factor domains is regulated by alternative splicing. Cell 81, 391-401.[Medline]

Lee, M. K., Tuttle, J. B., Rebhun, L. I., Cleveland, D. W. and Frankfurter, A (1990). The expression and posttranslational modification of a neuron-specific beta-tubulin isotype during chick embryogenesis. Cell Motil. Cytoskel 17, 118-132.[Medline]

Liesi, P (1992). Neuronal migration on laminin involves neuronal contact formation followed by nuclear movement inside a preformed process. Exp. Neurol 117, 103-113.[Medline]

Mansouri, A. and Gruss, P (1998). Pax3 and Pax7 are expressed in commissural neurons and restrict ventral neuronal identity in the spinal cord. Mech. Dev 78, 171-.[Medline]

Mar\222n, F. and Puelles, L (1995). Morphological fate of rhombomeres in quail/chick chimeras: a segmental analysis of hindbrain nuclei. Eur. J. Neurosci 7, 1714-38.[Medline]

Mastick, G. S., Davis, N. M., Andrew, G. L. and Easter, S. S., Jr (1997). Pax-6 functions in boundary formation and axon guidance in the embryonic mouse forebrain. Development 124, 1985-1997.[Abstract]

Miale, I. and Sidman, R. L (1961). An autoradiographic analysis of histogenesis in the mouse cerebellum. Exp. Neurol 4, 277-296.[Medline]

Misson, J. P., Edwards, M. A., Yamamoto, M. and Caviness, V. S., Jr (1988). Identification of radial glial cells within the developing murine central nervous system: studies based upon a new immunohistochemical marker. Dev. Brain Res 44, 95-108.[Medline]

Nakatsuji, N. and Nagata, I (1989). Paradoxical perpendicular contact guidance displayed by mouse cerebellar granule cell neurons in vitro. Development 106, 441-447.[Abstract]

Osumi, N., Hirota, A., Ohuchi, H., Nakafuku, M., Iimura, T., Kuratani, S., Fujiwara, M., Noji, S. and Eto, K (1997). Pax-6 is involved in the specification of hindbrain motor neuron subtype. Development 124, 2961-2972.[Abstract]

Pierce, E. T (1966). Histogenesis of the nuclei griseum pontis, corporis pontobulbaris and reticularis tegmenti pontis (Bechterew) in the mouse. An autoradiographic study. J. Comp. Neurol 126, 219-254.[Medline]

Prada, F. A., Dorado, M. E., Quesada, A., Prada, C., Schwarz, U. and de la Rosa, E. J (1995). Early expression of a novel radial glia antigen in the chick embryo. Glia 15, 389-400.[Medline]

Przyborski, S. A., Knowles, B. B. and Ackerman, S. L (1998). Embryonic phenotype of Unc5h3 mutant mice suggests chemorepulsion during the formation of the rostral cerebellar boundary. Development 125, 41-50.[Abstract]

Rakic, P (1990). Principles of neural cell migration. Experientia 46, 882-891.[Medline]

Rougon, G., Dubois, C., Buckley, N., Magnani, J. L. and Zollinger, W (1986). A monoclonal antibody against meningococcus group B polysaccharides distinguishes embryonic from adult N-CAM. J. Cell Biol 103, 2429-2437.[Abstract/Free Full Text]

Ryder, E. F. and Cepko, C. L (1994). Migration patterns of clonally related granule cells and their progenitors in the developing chick cerebellum. Neuron 12, 1011-1028.[Medline]

Sauer, F. C (1935). Mitosis in the neural tube. J. Comp. Neurol 62, 377-405.

Schmahl, W., Knoedlseder, M., Favor, J. and Davidson, D (1993). Defects of neuronal migration and the pathogenesis of cortical malformations are associated with Small eye (Sey) in the mouse, a point mutation at the Pax-6-locus. Acta Neuropath 86, 126-135.[Medline]

Schwarz, M., Alvarezbolado, G., Urbanek, P., Busslinger, M. and Gruss, P (1997). Conserved biological function between Pax-2 and Pax-5 in midbrain and cerebellum development \320 evidence from targeted mutations. Proc. Natl. Acad. Sci. USA 94, 14518-14523.[Abstract/Free Full Text]

Serafini, T., Colamarino, S. A., Leonardo, E. D., Wang, H., Beddington, R., Skarnes, W. C. and Tessier-Lavigne, M (1996). Netrin-1 is required for commissural axon guidance in the developing vertebrate nervous system. Cell 87, 1001-14.[Medline]

Stoykova, A., Fritsch, R., Walther, C. and Gruss, P (1996). Forebrain patterning defects in Small eye mutant mice. Development 122, 3453-3465.[Abstract]

Stoykova, A. and Gruss, P (1994). Roles of Pax-genes in developing and adult brain as suggested by expression patterns. J. Neurosci 14, 1395-1412.[Abstract]

Str\212hle, U., Blader, P., Adam, J. and Ingham, P. W (1994). A simple and efficient procedure for non-isotopic in situ hybridization to sectioned material. Trends Genet 10, 75-76.[Medline]

Sun, T., Pringle, N. P., Hardy, A. P., Richardson, W. D. and Smith, H. K (1998). Pax6 influences the time and site of origin of glial precursors in the ventral neural tube. Mol. Cell. Neurosci 12, 228-.[Medline]

Takahashi, T., Nowakowski, R. S. and Caviness, V. S., Jr (1992). BUdR as an S-phase marker for quantitative studies of cytokinetic behaviour in the murine cerebral ventricular zone. J. Neurocyt 21, 185-197.[Medline]

Urbanek, P., Fetka, I., Meisler, M. H. and Busslinger, M (1997). Cooperation of Pax2 and Pax5 in midbrain and cerebellum development. Proc. Natl. Acad. Sci. USA 94, 5703-5708.[Abstract/Free Full Text]

Walther, C. and Gruss, P (1991). Pax-6 , a murine paired box gene, is expressed in the developing CNS. Development 113, 1435-1449.[Abstract]

Warren, N. and Price, D. J (1997). Roles of Pax-6 in murine diencephalic development. Development 124, 1573-1582.[Abstract]

Wechsler-Reya, R. J., and Scott, M. P (1999). Control of neuronal precursor proliferation in the cerebellum by sonic hedgehog. Neuron 22, 103-114.[Medline]

Zhang, L. and Goldman, J. E (1996). Developmental fates and migratory pathways of dividing progenitors in the postnatal rat cerebellum. J. Comp. Neurol 370, 536-550.[Medline]

Zhang, Y. and Emmons, S. W (1995). Specification of sense-organ identity by a Caenorhabditis elegans Pax-6 homologue. Nature 377, 55-59.[Medline]




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