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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]

Allendoerfer, K. L. and Shatz, C. J (1994). The subplate, a transient neocortical structure \320 its role in the development of connections between thalamus and cortex. Annu. Rev. Neurosci 17, 185-218.[Medline]

Angevine, J. B. and Sidman, R. L (1961). Autoradiographic study of cell migration during histogenesis of cerebral cortex in the mouse. Nature 192, 766-768.[Medline]

Bovolenta, P. and Mason, C (1987). Growth cone morphology varies withposition in the developing mouse visual pathway from retina to first targets. J. Neurosci 7, 1447-1460.[Abstract]

Bulfone, A., Puelles, L., Porteus, M. H., Frohman, M. A., Martin, G. R. and Rubenstein, J. L. R (1993). Spatially restricted expression of Dlx-1, Dlx-2 (Tes-1), Gbx-2, and Wnt-3 in the embryonic day 12.5 mouse forebrain defines potential transverse and longitudinal segmental boundaries. J. Neurosci 13, 3155-3172.[Abstract]

Campbell, R. M. and Peterson, A. C (1993). Expression of a lacZ transgene reveals floor plate cell morphology and macromolecular transfer to commissural axons. Development 119, 1217-1228.[Abstract]

Caudy, M. and Bentley, D (1986). Pioneer growth cone steering along a series of neuronal and non-neuronal cues of different affinities. J. Neurosci 6, 1781-1795.[Abstract]

Colamarino, S. A. and Tessier-Lavigne, M (1995). The axonal chemoattractant netrin-1 is also a chemorepellent for trochlear motor axons. Cell 81, 621-629.[Medline]

Colamarino, S. A. and Tessier-Lavigne, M (1995). The role of the floor plate in axon guidance. Annu. Rev. Neurosci 18, 497-529.[Medline]

De Carlos, J. A. and O'Leary, D. D. M (1992). Growth and targeting of subplate axons and establishment of major cortical pathways. J. Neurosci 12, 1194-1211.[Abstract]

Deiner, M. S., Kennedy, T. E., Fazeli, A., Serafini, T., Tessier-Lavigne, M. and Sretavan, D. W (1997). Netrin-1 and DCC mediate axon guidance locally at the optic disc: loss of function leads to optic nerve hypoplasia. Neuron 19, 575-589.[Medline]

Dodd, J., Morton, S. B., Karagogeos, D., Yamamoto, M. and Jessell, T. M (1988). Spatial regulation of axonal glycoprotein expression on subsets of embryonic spinal neurons. Neuron 1, 105-116.[Medline]

Erzurumlu, R. S. and Jhaveri, S (1992). Emergence of connectivity in the embryonic rat parietal cortex. Cereb. Cortex 2, 336-352.[Abstract/Free Full Text]

Fan, J. and Raper, J. A (1995). Localized collapsing cues can steer growth cones without inducing their full collapse. Neuron 14, 263-274.[Medline]

Gadisseux, J.-F., Kadhim, H., van den Bosch de Aguilar, P., Caviness, V. S. and Evrard, P (1990). Neuron migration within the radial glial fiber system of the developing murine cerebrum: an electron microscopic autoradiographic analysis. Dev. Brain Res 52, 39-56.[Medline]

Godement, P., Salaun, J. and Mason, C. A (1990). Retinal axon pathfinding in the optic chiasm: Divergence of crossed and uncrossed fibers. Neuron 5, 173-186.[Medline]

Halliday, A. L. and Cepko, C. L (1992). Generation and migration of cells in the developing striatum. Neuron 9, 15-26.[Medline]

Harris, R., Sabatelli, L. M. and Seeger, M. A (1996). Guidance cues at the drosophila CNS midline: Identification and characterization of two drosophila Netrin/UNC-6 homologs. Neuron 17, 217-228.[Medline]

Hedgecock, E. M., Culotti, J. G. and Hall, D. H (1990). The unc-5 , unc-6 and unc-40 genes guide circumferential migrations of pioneer axons and mesodermal cells on the epidermis in C. elegans. Neuron 2, 61-85.

Ishii, N., Wadsworth, W. G., Stern, B. D., Culotti, J. G. and Hedgecock, E. M (1992). UNC-6, a laminin-related protein, guides cell and pioneer axon migrations in C. elegans. Neuron 9, 873-881.[Medline]

Keino-Masu, K., Masu, M., Hinck, L., Leonardo, E. D., Chan, S. S.-Y., Culotti, J. G. and Tessier-Lavigne, M (1996). Deleted in Colorectal Cancer (DCC) encodes a netrin receptor. Cell 87, 175-185.[Medline]

Kennedy, T. E., Serafini, T., Delatorre, 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]

Leonardo, E. D., Hinck, L., Masu, M., Keino-Masu, K., Ackerman, S. L. and Tessier-Lavigne, M (1997). Vertebrate homologues of C. elegans UNC-5 are candidate netrin receptors. Nature 24, 833-8.

Livesey, F. J. and Hunt, S.P (1997). Netrin and netrin receptor expression in the embryonic mammalian nervous sytem suggests roles in retinal, striatal, nigral, and cerebellar development. Mol Cell Neurosci 8, 417-429.[Medline]

Liu, F.-C. and Graybiel, A. M (1992). Transient Calbindin-D28K-positive systems in the telencephalon: ganglionic eminence, developing striatum and cerebral cortex. J. Neurosci 12, 674-690.[Abstract]

Lumsden, A. G. S. and Davies, A. M (1983). Earliest sensory nerve fibres are guided to peripheral targets by attractants other than nerve growth factor. Nature 306, 22-29.

Luskin, M. B., Pearlman, A. L. and Sanes, J. R (1988). Cell lineage in the cerebral cortex of the mouse studied in vivo and in vitro with a recombinant retrovirus. Neuron 1, 635-647.[Medline]

Metin, C. and Godement, P (1996). The ganglionic eminence may be an intermediate target for corticofugal and thalamocortical axons. J. Neurosci 16, 3219-3235.[Abstract/Free Full Text]

Miller, B., Chou, L. and Finlay, B. L (1993). The early development of thalamocortical and corticothalamic projections. J. Comp. Neurol 335, 16-41.[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]

Mitchell, K. J., Doyle, J. L., Serafini, T., Kennedy, T. E., Tessier-Lavigne, M., Goodman, C. S. and Dickson, B. J (1996). Genetic analysis of Netrin genes in drosophila: Netrins guide CNS commissural axons and peripheral motor axons. Neuron 17, 203-215.[Medline]

Molnar, Z. and Blakemore, C (1995). How do thalamic axons find their way to the cortex?. Trends Neurosci 18, 389-397.[Medline]

Placzek, M., Tessier-Lavigne, M., Jessell, T. M. and Dodd, J (1990). Orientation of commissural axons in vitro in response to floor plate-derived chemoattractant. Development 110, 19-30.[Abstract]

Porteus, M. H., Bulfone, A., Liu, J. K., Puelles, L., Lo, L. C. and Rubenstein, J. L (1994). DLX-2, MASH-1, and MAP-2 expression and bromodeoxyuridine incorporation define molecularly distinct cell populations in the embryonic mouse forebrain. J. Neurosci 14, 6370-83.[Abstract]

Puelles, L., and Rubenstein, J. L (1993). Expression pattern of homeobox and other putative regulatory genes in the embryonic mouse forebrain suggest a neuromeric organization. Trends Neurosci 16, 472-479.[Medline]

Rakic, P (1972). Mode of cell migration to the superficial layers of fetal monkey neocortex. J. Comp. Neurol 145, 61-84.[Medline]

Richards, L. J., Koester, S. E., Tuttle, R. and O'Leary D. D. M (1997). Directed growth of early cortical axons is influenced by a chemoattractant released from an intermediate target. J. Neurosci 17, 2445-56.[Abstract/Free Full Text]

Schaeren-Wiemers, N. and Gerfin-Moser, A (1993). A single protocol to detect transcripts of various types and expression levels in neural tissue and cultured cells: in situ hybridization using digoxigenin-labelled cRNA probes. Histochemistry 100, 431-440.[Medline]

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, 1-20.[Medline]

Serafini, T., Kennedy, T. E., Galko, M. J., Mirzayan, C., Jessell, T. M. and Tessier-Lavigne, M (1994). The netrins define a family of axon outgrowth-promoting proteins homologous to C.elegans UNC-6. Cell 78, 409-424.[Medline]

Shirasaki, R., Mirzayan, C., Tessier-Lavigne, M. and Murakami, F (1996). guidance of circumferentially growing axons by netrin-dependent and- independent floor plate chemotropism in the vertebrate brain. Neuron 17, 1079-1088.[Medline]

Shirasaki, R., Tamada, A., Katsumata, R. and Murakami, F (1995). Guidance of cerebellofugal axons in the rat embryo: directed growth toward the floor plate and subsequent elongation along the longitudinal axis. Neuron 14, 961-972.[Medline]

Tessier-Lavigne, M. and Goodman, C. S (1996). The molecular biology of axon guidance. Science 274, 1123-1133.[Abstract/Free Full Text]

Tessier-Lavigne, M. and Placzek, M (1991). Target attraction: are developing axons guided by chemotropism?. Trends Neurosci 14, 303-310.[Medline]

Tessier-Lavigne, M., Placzek, M., Lumsden, A. G. S., Dodd, J. and Jessell, T. M (1988). Chemotropic guidance of developing axons in the mammalian central nervous system. Nature 336, 775-778.[Medline]

Tosney, K. W. and Landmesser, L. T (1985). Growth cone morphology and trajectory in the lumbosacral region of the chick embryo. J. Neurosci 5, 2345-2358.[Abstract]

Varela-Echavarria, A., Tucker, A., Puschel, A. W. and Guthrie, S (1997). Motor axon subpopulations respond differentially to the chemorepellents netrin-1 and semaphorin D. Neuron 18, 193-207.[Medline]

Wadsworth, W. G., Bhatt, H. and Hedgecock, E. M (1996). Neuroglia and pioneer neurons express UNC-6 to provide global and local netrin cues for guiding migrations in C. elegans. Neuron 16, 35-46.[Medline]




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