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Bally-Cuif, L. and Wassef, M (1994). Ectopic induction and reorganisation of Wnt-1 expression in quail/chick chimeras. Development 120, 3379-3394.[Abstract]

Bally-Cuif, L. and Wassef, M (1995). Determination events in the nervous system of the vertebrate embryo. Curr. Opin. Genet. Dev 5, 450-458.[Medline]

Bally-Cuif, L., Gulisano, M., Broccoli, V. and Boncinelli, E (1995). c-otx2 is expressed in two different phases of gastrulation and is sensitive to retinoic acid treatment in chick embryo. Mech. Dev 49, 49-63.[Medline]

Christen, B. and Slack, J. M (1997). FGF-8 is associated with anteroposterior patterning and limb regeneration in Xenopus. Dev. Biol 192, 455-466.[Medline]

Crossley, P. H. and Martin, G. R (1995). The mouse Fgf8 gene encodes a family of polypeptides and is expressed in regions that direct outgrowth and patterning in the developing embryo. Development 121, 439-451.[Abstract]

Crossley, P. H., Martinez, S. and Martin, G. R (1996). Midbrain development induced by FGF8 in the chick embryo. Nature 380, 66-68.[Medline]

Guthrie, S. and Lumsden, A (1991). Formation and regeneration of rhombomere boundaries in the developing chick hindbrain. Development 112, 221-229.[Abstract]

Guthrie, S., Butcher, M. and Lumsden, A (1991). Patterns of cell division and interkinetic nuclear migration in the chick embryo hindbrain. J. Neurobiol 22, 742-754.[Medline]

Hamburger, V. and Hamilton, H (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 49-92.

Henrique, D., Adam, J., Myat, A., Chitnis, A., Lewis, J. and Ish-Horowicz, D (1995). Expression of a Delta homologue in the chick. Nature 375, 787-790.[Medline]

Heyman, I., Kent, A. and Lumsden, A (1993). Cellular morphology and extracellular space at rhombomere boundaries in the chick embryo hindbrain. Dev. Dynam 198, 241-253.[Medline]

Heyman, I., Faissner, A. and Lumsden, A (1995). Cell and matrix specialisations of rhombomere boundaries. Dev. Dyn 204, 301-315.[Medline]

Irving, C., Nieto, M.A., DasGupta, R., Charnay, P. and Wilkinson, D.G (1996). Progressive spatial restriction of Sek-1 and Krox-20 gene expression during hindbrain segmentation. Dev. Biol 173, 26-38.[Medline]

Irving, C., Flenniken, A., Alldus, G. and Wilkinson, D.G (1996). Cell-cell interactions and segmentation in the developing hindbrain. Biochem. Soc. Symp 62, 85-95.[Medline]

Joyner, A. L (1996). Engrailed, Wnt and Pax genes regulate midbrain\320hindbrain development. Trends Genet 12, 15-20.[Medline]

Lee, S. M., Danielian, P. S., Fritzsch, B. and McMahon, A. P (1997). Evidence that FGF8 signalling from the midbrain-hindbrain junction regulates growth and polarity in the developing midbrain. Development 124, 959-969.[Abstract]

Lumsden, A. G. S. and Keynes, R (1989). Segmental patterns of neuronal development in the chick hindbrain. Nature 337, 424-428.[Medline]

Mahmood, R., Bresnick, J., Hornbruch, A., Mahony, K., Morton, N., Colquhoun, K., Martin, P., Lumsden, A., Dickson, C. and Mason, I (1995). FGF-8 in the mouse embryo: a role in the initiation and maintenance of limb bud outgrowth. Curr. Biol 5, 797-806.[Medline]

Mahmood, R., Kiefer, P., Guthrie, S., Dickson, C. and Mason, I.J (1995). Multiple roles for FGF-3 during cranial neural development of the chicken. Development 121, 1399-1410.[Abstract]

Marin, F. and Puelles, L (1994). Patterning of the embryonic midbrain after experimental inversions: a polarizing activity from the isthmus. Dev. Biol 163, 19-37.[Medline]

Martinez, S., Geijo, E., S\207nchez-Vives, M. V., Puelles, L. and Gallego, R (1992). Reduced junctional permiability at interrhombomeric boundaries. Development 116, 1069-1076.[Abstract]

Martinez, S., Crossley, P. H., Cobos, I., Rubenstein, J. L. and Martin, G. R (1999). FGF8 induces formation of an ectopic isthmic organiser and isthmocerebellar development via a repressive effect on Otx2 expression. Development 126, 1189-2000.[Abstract]

Meinhardt, H (1983). Cell determination boundaries as organizing regions for secondary embryonic fields. Dev. Biol 96, 375-385.[Medline]

Meyers, E. N., Lewandoski, M. and Martin, G. R (1998). An Fgf8 mutant allelic series generated by Cre-and Flp-mediated recombination. Nat. Genet 18, 136-141.[Medline]

Millet, S., Bloch-Gallego, E., Simeone, A. and Alvarado-Mallart, R. M (1996). The caudal limit of Otx2 gene expression as a marker of the midbrain/hindbrain boundary: a study using in situ hybridisation and chick/quail homotopic grafts. Development 122, 3785-3797.[Abstract]

Riefers, F., Bohli, H., Walsh, E., Crossley, P., Stanier, D. and Brand, M (1998). Fgf8 is mutated in zebrafish acerebellar ( ace) mutants and is required for maintenance of midbrain-hindbrain boundary development and somitogenesis. Development 125, 2381-2395.[Abstract]

Shamim, H. and Mason, I (1998). Expression of Gbx-2 during early development of the chick embryo. Mech. Dev 76, 157-159.[Medline]

Shamim, H., Mahmood, R., Logan, C., Doherty, P., Lumsden, A. andMason, I (1999). Sequential roles for Fgf4, En1 and Fgf8 in specification and regionalisation of the midbrain. Development 126, 945-959.[Abstract]

Wassarman, K. M., Lewandoski, M., Campbell, K., Joyner, A. L., Rubenstein, J. L., Martinez, S. and Martin, G. R (1997). Specification of the anterior hindbrain and establishment of a normal mid/hindbrain organizer is dependent on Gbx2 gene function. Development 124, 2923-34.[Abstract]

Wassef, M. and Joyner, A. L (1997). Early mesencephalon/metencephalon patterning and development of the cerebellum. Perspect. Dev. Neurobiol 5, 3-16.[Medline]

Xu, Q., Alldus, G., Holder, N. and Wilkinson, D.G (1995). Expression of truncated Sek-1 receptor tyrosine kinase disrupts the segmental restriction of gene expression in the Xenopus and zebrafish hindbrain. Development 121, 4005-4016.[Abstract]




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This Article
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