Alvarado-Mallart, R. M. and Sotelo, C (1984). Homotopic and heterotopic transplantation of quail tectal rpimordia in chick embryos: organization of the retino-tectal projections in the chimeric embryos. Dev. Biol 103, 378-398.[Medline]
Balaban, E., Teillet, M. A. and Le Douarin, N (1988). Application of the quail-chick chimera to the study of brain development and behavior. Science 241, 1339-1342.[Abstract/Free Full Text]
Bayer, S. A., Altman, J., Russo, R. J., Dai, X. and Simmons, J. A (1991). Cell migration in the rat embryonic neocortex. J. Comp. Neurol 307, 499-516.[Medline]
Birgbauer, E. and Fraser, S. E (1994). Violation of cell lineage restriction compartments in the chick hindbrain. Development 120, 1347-1356.[Abstract]
Bulfone, A., Kim, H. J., Puelles, L., Porteus, M. H., Grippo, J. F. and Rubenstein, J. L (1993). The mouse Dlx-2 (Tes-1) gene is expressed in spatially restricted domains of the forebrain, face and limbs in midgestation mouse embryos. Mech. Dev 40, 129-140.[Medline]
Bulfone, A., Puelles, L., Porteus, M. H., Frohman, M. A., Martin, G. R.and Rubenstein, J. L (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]
Clarke, J. D., Erskine, L. and Lumsden, A (1998). Differential progenitor dispersal and the spatial origin of early neurons can explain the predominance of single-phenotype clones in the chick hindbrain. Dev. Dyn 212, 14-26.[Medline]
Cochard, P. and Giess, M. C (1995). Oligodendrocyte lineage. C. R. Seances Soc. Biol. Fil 189, 263-269.[Medline]
Edwards, M. A., Yamamoto, M. and Caviness, V. S., Jr (1990). Organization of radial glial and related cells in the developing murine CNS. An analysis based upon a new monoclonal antibody marker. Neurosci 14, 98-104.
Guazzi, S., Price, M., De Felice, M., Damante, G., Mattei, M. G. and Di Lauro, R (1990). Thyroid nuclear factor 1 (TTF-1) contains a homeodomain and displays a novel DNA binding specificity. EMBO J 9, 3631-3639.[Medline]
Hall, A., Giese, N. A. and Richardson, W. D (1996). Spinal cord oligodendrocytes develop from ventrally derived progenitor cells that express PDGF alpha-receptors. Development 122, 4085-4094.[Abstract]
Hamburger, V. and Hamilton, H. L (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 49-92.
Hartfuss, E., Galli, R., Heins, N. and G\232tz, M (2001). Characterization of CNS precursor subtypes and radial glia. Dev. Biol 229, 15-30.[Medline]
Hatten, M. E (1990). Riding the glial monorail: a common mechanism for glial guided neuronal migration in different regions of the developing mammalian brain. Trends Neurosci 13, 179-184.[Medline]
Hu, H (1999). Chemorepulsion of neuronal migration by Slit2 in the developing mammalian forebrain. Neuron 23, 703-711.[Medline]
Kiernan, B. W. and ffrench-Constant, C (1993). Oligodendrocyte precursor (O-2A progenitor cell) migration: a model system for the study of cell migration in the developing central nervous system. Development 119, 219-225.
Lavdas, A. A., Grigoriou, M., Pachnis, V. and Parnavelas, J. G (1999). The medial ganglionic eminence gives rise to a population of early neurons in the developing cerebral cortex. J. Neurosci 99, 7881-7888.
Leber, S. M. and Sanes, J. R (1995). Migratory paths of neurons and glia in the embryonic chick spinal cord. Neuroscience 15, 1236-1248.
Leber, S. M., Yamagata, M. and Sanes, J. R (1996). Gene transfer using replication-defective retroviral and adenoviral vectors. Methods Cell Biol 51, 161-183.[Medline]
LeDouarin, N. M (1986). Cell line segregation during peripheral nervous system ontogeny. Science 231, 1515-1522.[Abstract/Free Full Text]
LeDouarin, N. M (1993). Embryonic neural chimaeras in the study of brain development. Trends Neurosci 16, 64-72.[Medline]
Levison, S. W., Chuang, C., Abramson, B. J. and Goldman, J. E (1993). The migrational patterns and developmental fates of glial precursors in the rat subventricular zone are temporally regulated. Development 119, 611-22.[Abstract]
Liu, J. K., Ghattas, I., Liu, S., Chen, S. and Rubenstein, J. L (1997). Dlx genes encode DNA-binding proteins that are expressed in an overlapping and sequential pattern during basal ganglia differentiation. Dev. Dyn 210, 498-512.[Medline]
Lu, Q. R., Yuk, D., Alberta, J. A., Zhu, Z., Pawlitzky, I., Chan, J., McMahon, A. P., Stiles, C. D. and Rowitch, D. H (2000). Sonic hedgehog-regulated oligodendrocyte lineage genes encoding bHLH proteins in the mammalian central nervous system. Neuron 25, 317-329.[Medline]
Lumsden, A. and Keynes, R (1989). Segmental patterns of neuronal development in the chick hindbrain. Nature 337, 424-428.[Medline]
Lumsden, A. and Krumlauf, R (1996). Patterning the vertebrate neuraxis. Science 274, 1109-1115.[Abstract/Free Full Text]
McConnell, S (1991). The generation of neuronal diversity in the central nervous system. Annu. Rev. Neurosci 14, 269-300.[Medline]
Marin, F. and Puelles, L (1995). Morphological fate of rhombomeres in quail/chick chimeras: a segmental analysis of hindbrain nuclei. Eur. J. Neurosci 7, 1714-1738.[Medline]
Martinez, S., Wassef, M., Alvarado-Mallart, R. M (1991). Induction of a mesencephalic prosencephalon is preceded by the early expression of the homeobox gene. Neuron 6, 971-978.[Medline]
Miller, R. H. and Ono, K (1998). Morphological analysis of the early stages of oligodendrocyte development in the vertebrate central nervous system. Microsc. Res. Tech 41, 441-453.[Medline]
Milner, R. and ffrench Constant, C (1994). A developmental analysis of oligodendroglial integrins in primary cells: changes in alpha v-associated beta subunits during differentiation. Development 120, 3497-3506.[Abstract]
Misson, J-P., Edwards, M. A., Yamamoto, M. and Caviness, V. S (1988). Identification of radial cells within the developing murine central nervous system: studies based upon a new immunohistochemical marker. Dev. Brain Res 44, 95-108.[Medline]
Noll, E. and Miller, R. H (1993). Oligodendrocyte precursors originate at the ventral ventricular zone dorsal to the ventral midline region in the embryonic rat spinal cord. Development 118, 563-573.[Abstract]
O'Leary, D. D. and Wilkinson, D. G (1999). Eph receptors and ephrins in neural development. Curr. Opin. Neurobiol 1, 65-73.
Ono, K., Bansal, R., Payne, J., Rutishauser, U. and Miller, R. H (1995). Early development and dispersal of oligodendrocytes precursors in the embryonic spinal cord. Development 121, 1743-1754.[Abstract]
Ono, K., Yasui, Y., Rutishauser, U. and Miller, R. H (1997). Focal ventricular origin and migration of oligodendrocytes precursors into the chick optic nerve. Neuron 19, 283-292.[Medline]
Orentas, D. M., Hayes, J. E., Dyer, K. L. and Miller, R. H (1999). Sonic hedgehog signaling is required during the appearance of spinal cord oligodendrocyte precursors. Development 126, 2419-2429.[Abstract]
Paynes, H. R. and Lemmon, V (1993). Glial cells of O-2A lineage bind preferentially to N-cadherin and develop distinct morphologies. Dev. Biol 159, 595-607.[Medline]
Perez Villegas, E. M., Olivier, C., Spassky, N., Poncet, C., Cochard, P., Zalc, B., Thomas, J. L. and Mart\222nez, S (1999). Early specification of oligodendrocytes in the chick embryonic brain. Dev. Biol 216, 98-113.[Medline]
Poncet, C., Soula, C., Trousse, F., Kan, P., Hirsinger, E., Pourquie, O., Duprat, A. M. and Cochard, P (1996). Induction of oligodendrocyte progenitors in the trunk neural tube by ventralizing signals: effects of notochord and floor plate grafts, and of sonic hedgehog. Mech. Dev 60, 13-32.[Medline]
Pringle, N. P. and Richardson, W. D (1993). A singularity of PDGF alpha-receptor expression in the dorso-ventral axis of the neural tube may define the origin of the oligodendrocyte lineage. Development 117, 525-533.[Abstract]
Pringle, N. P., Yu, W. P., Guthrie, S., Roelink, H., Lumsden, A., Peterson, A. C. and Richardson, W. D (1996). Determination of neuroepithelial cell fate: induction of the oligodendrocyte lineage by ventral midline cells and sonic hedgehog. Dev. Biol 177, 30-42.[Medline]
Pringle, N. P., Guthrie, S., Lumsden, A. and Richardson, W. D (1998). Dorsal spinal cord neuroepithelium generates astrocytes but not oligodendrocytes. Neuron 20, 883-893.[Medline]
Rakic, P (1972). Mode of cell migration to the superficial layers of fetal monkey neocortex. J. Comp. Neurol 145, 61-84.[Medline]
Redies, C. and Takeichi, M (1993). N and R-cadherin expression in the optic nerve of the chick embryo. Glia 8, 161-171.[Medline]
Rubenstein, J. L., Shimamura, K., Martinez, S. and Puelles, L (1998). Regionalization of the prosencephalic neural plate. Annu. Rev. Neurosci 21, 445-477.[Medline]
Shimamura, K., Hartgan, D. J., Martinez, S., Puelles, L. and Rubenstein, J. L. R (1995). Longitudinal organisation of the anterior neural plate and neural tube. Development 121, 3923-3933.[Abstract]
Shimamura, K. and Rubenstein, J. L (1997). Inductive interactions direct early regionalization of the mouse forebrain. Development 124, 2709-2718.[Abstract]
Simon, H. and Lumsden, A (1993). Rhombomere-specific origin of the contralateral vestibulo-acoustic efferent neurons and their migration across the embryonic midline. Neuron 11, 209-220.[Medline]
Small, R. K., Riddle, P. and Noble, M (1987). Evidence for migration of oligodendrocyte-type-2 astrocyte progenitor cells into the developing rat optic nerve. Nature 328, 155-157.[Medline]
Sommer, I. and Schachner, M (1981). Monoclonal antibodies (O1 to O4) to oligodendrocyte cell surfaces: An immunocytological study in the central nervous system. Dev. Biol 83, 311-327.[Medline]
Spassky, N., Goujet-Zalc, C., Parmantier, E., Olivier, C., Martinez, S., Ivanova, A., Ikenaka, K., Macklin, W., Cerruti, I., Zalc, B. and Thomas, J. L (1998). Multiple restricted origin of oligodendrocytes. J. Neurosci 18, 8331-8343.[Abstract/Free Full Text]
Sussel, L., Marin, O., Kimura, S. and Rubenstein, J. L (1999). Loss ofNkx2.1 homeobox gene function results in a ventral to dorsal molecular respecification within the basal telencephalon: evidence for a transformation of the pallidum into the striatum. Development 126, 3359-3370.[Abstract]
Szele, F. G. and Cepko, C. L (1998). The dispersion of clonally related cells in the developing chick telencephalon. Dev. Biol 195, 100-113.[Medline]
Tan, S. S., Kalloniatis, M., Sturm, K., Tam, P. P., Reese, B. E. and Faulkner-Jones, B (1998). Separate progenitors for radial and tangential cell dispersion during development of the cerebral neocortex. Neuron 21, 295-304.[Medline]
Timsit, S., Martinez, S., Allinquant, B., Peyron, F., Puelles, L. and Zalc, B (1995). Oligodendrocytes originate in a restricted zone of the embryonic ventral neural tube defined by DM-20 mRNA expression. J. Neurosci 15, 1012-1024.[Abstract]
Wharf, B. C., Fok-Seang, J. and Miller, R. H (1991). Evidence for the ventral origin of oligodendrocyte precursors in the rat spinal cord. J. Neurosci 11, 2477-2488.[Abstract]
Wingate, R. J. and Lumsden, A (1996). Persistence of rhombomeric organisation in the postsegmental hindbrain. Development 122, 2143-2152.[Abstract]
Wu, W., Wong, K., Chen, J., Jiang, Z., Dupuis. S., Wu, J. Y. and Rao, Y (1999). Directional guidance of neuronal migration in the olfactory system by the protein Slit. Nature 400, 331-336.[Medline]
Yamamura, T., Konola, J. T., Wekerle, H. and Lee, M. B (1991). Monoclonal antibodies against myelin proteolipid protein: Identification and characterization of two major determinants. J. Neurochem 57, 1671-1680.[Medline]
Zacchei, A. M (1961). Lo sviluppo embrionale della quaglia giapponese (Coturnix coturnix japonica, T. eS.). Arch. Ital. Anat. Embriol 66, 36-62.[Medline]
Zhu, Y., Li, H., Zhou, L., Wu, J. Y. and Rao Y (1999). Cellular and molecular guidance of GABAergic neuronal migration from an extracortical origin to the neocortex. Neuron 23, 473-485.[Medline]