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Anderson, D. J. and Axel, R. ( (1986). A bipotential neuroendocrine precursor whose choice of cell fate is determined by NGF and glucocorticoids. Cell 47, 1079-1090.[Medline]

Artinger, K. B. and Bronner, F. M. ( (1992). Partial restriction in the developmental potential of late emigrating avian neural crest cells. Dev. Biol 149, 149-57.[Medline]

Auerbach, R. ( (1954). Analysis of the developmental effects of a lethal mutation in the house mouse. J. Exp. Zool 127, 305-329.

Baroffio, A., Dupin, E. and LeDouarin, N. M. ( (1988). Clone-forming ability and differentiation potential of migratory neural crest cells. Proc. Natl. Acad. Sci. USA 85, 5325-9.[Abstract/Free Full Text]

Baroffio, A., Dupin, E. and LeDouarin, N. M. ( (1991). Common precursors for neural and mesectodermal derivatives in the cephalic neural crest. Development 112, 301-305.[Abstract]

Bronner-Fraser, M. and Fraser, S. E. ( (1988). Cell lineage analysis reveals multipotency of some avian neural crest cells. Nature 335, 161-164.[Medline]

Bronner-Fraser, M. and Fraser, S. E. ( (1989). Developmental potential of avian trunk neural crest cells in situ. Neuron 3, 755-766.[Medline]

Collazo, A., Bronner-Fraser, M. and Fraser, S. E. ( (1993). Vital dye labelling of Xenopus Laevis trunk neural crest reveals multipotency and novel pathways of migration. Development 118, 363-376.[Abstract]

Capecchi, M. R. ( (1989). The new mouse genetics: altering the genome by gene targeting. Trends Genet 5, 70-76.[Medline]

Doupe, A., J., Patterson, P. H. and Landis, S. C. ( (1985). Small intensely fluorescent cells in culture: role of glucocorticoids and growth factors in their development and interconversions with other neural crest derivatives. J. Neurosci 5, 2143-2160.[Abstract]

Frank, E. and Sanes, J. R. ( (1991). Lineage of neurons and glia in chick dorsalroot ganglia: analysis in vivo with a recombinant retrovirus. Development 111, 895-908.[Abstract/Free Full Text]

Fraser, S. E. and Bronner-Fraser, M. ( (1991). Migrating neural crest cells in the trunk of the avian embryo are multipotent. Development 112, 913-920.[Abstract]

Gruneberg, H. and Truslove, G. M. ( (1960). Two closely linked genes in the mouse. Genet. Res 1, 69-90.

Morrison-Graham, K. and Weston, J. A. ( (1989). Mouse mutants provide new insights into the role of extracellular matrix in cell migration and differentiation. Trends Genet 5, 116-121.[Medline]

Rickmann, M., Fawcett, J. W. and Keynes, R. J. ( (1985). The migration of neural crest cells and the growth of motor axons through the rostral half of the chick somite. J. Embryol. Exp. Morph 90, 437-455.[Medline]

Scherson, T. Y., Serbedzija, G. N., Fraser, S. E. and Bronner-Fraser, M. ( (1993). Regenerative capacity of cephalic neural crest and neural tube. Development 118, 1049-1063.[Abstract]

Serbedzija, G. N., Bronner-Fraser, M. and Fraser, S. E. ( (1989). A vital dye analysis of timing and pathways of avian trunk neural crest cell migration. Development 106, 809-816.[Abstract/Free Full Text]

Serbedzija, G. N., Fraser, S. E. and Bronner-Fraser, M. ( (1990). Pathways of trunk neural crest cell migration in the mouse embryo as revealed by vital dye labelling. Development 108, 605-612.[Abstract/Free Full Text]

Serbedzija, G. N., Burgan, S., Fraser, S. E. and Bronner-Fraser, M. ( (1991). Vital dye labelling demonstrates a sacral neural crest contribution to theenteric nervous system of chick and mouse embryos. Development 111, 857-866.[Abstract/Free Full Text]

Serbedzija, G., Bronner-Fraser, M. and S. Fraser ( (1992). Vital dye analysis of cranial neural crest migration in the mouse embryo. Development 116, 297-307.[Medline]

Sieber-Blum, M. ( (1991). Role of the neurotrophic factors BDNF and NGF in the commitment of pluripotent neural crest cells. Neuron 6, 949-55.[Medline]

Stemple, D.L. and Anderson, D. J. ( (1992). Isolation of a stem cell for neurons and glia from the mammalian neural crest. Cell 71, 973-985.[Medline]

Teillet, M. A., Kalcheim, C. and Le Douarin, N. M. ( (1987). Formation of the dorsal root ganglia in the avian embryo: segmental origin and migratory behavior of the neural crest progenitor cells. Dev. Biol 120, 329-347.[Medline]

Walsh, C. and Cepko, C. L. ( (1992). Widespread dispersion of neuronal clones across functional regions of the cerebral cortex. Science 255, 434-440.[Abstract/Free Full Text]

Weston, J. A. and Butler, S. L. ( (1966). Temporal factors affecting localization of neural crest cells in the chicken embryo. Dev. Biol 14, 246-266.[Medline]

Weston, J. A (1970). The migration and differentiation of neural crest cells. Adv. Morphogen 8, 41-114.[Medline]




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This Article
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