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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]

Bee, J. and Thorogood, P (1980). The role of tissue interactions in the skeletogenic differentiation of avian neural crest cells. Dev. Biol 78, 47-62.[Medline]

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. ( (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 labeling of Xenopuslaevis neural crest cells reveals multipotentiality and novel pathways of migration. Development 118, 363-376.[Abstract]

DuShane, G. P (1935). An experimental study of the origin of pigment cells in Amphibia. J. Exp. Zool 19, 1-31.

Epperlein, H. H. and Lehmann, R (1975). The ectomesenchymal-endodermal interaction system (EEIS) of Triturus alpestris in tissue culture. 2. Observations on the differentiation of visceral cartilage. Differentiation 4, 159-174.

Epperlein, H. H. and L\232fberg, J (1990). The development of the larval pigment patterns in Triturus alpestris and Ambystoma mexicanum. Adv. Anat. Embryol. Cell Biol 118, 1-101.[Medline]

Epperlein, H. H. and L\232fberg, J (1993). The development of the neural crest in amphibians. Ann. Anat 175, 483-499.

Graveson, A. C. and Armstrong, J. B (1987). Differentiation of cartilage from cranial neural crest in the axolotl ( Ambystoma mexicanum ). Differentiation 35, 16-20.[Medline]

Hall, B. K (1981). The induction of neural crest-derived cartilage and bone by embryonic epithelia: an analysis of the mode of action of an epithelial-mesenchymal interaction. J. Embryol. Exp. Morphol 64, 305-320.[Medline]

Hall, B. K (1987). Development of the mandibular skeleton in the embryonic chick as evaluated using the DNA-inhibiting agent 5-fluoro-2-deoxyuridine. J. Craniofac. Genet. Dev. Biol 7, 145-159.[Medline]

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

Honig, M. G. and Hume, R. I (1989). Carbocyanine dyes. Novel markers for labelling neurons. Trends Neurosci 12, 336-338.[Medline]

Hunt, P., Ferretti, P., Krumlauf, K., and Thorogood, P (1995). Restoration of normal Hox code and branchial arch morphogenesis after extensive deletion of hindbrain neural crest. Dev. Biol 168, 584-597.[Medline]

Hunt, P., Clarke, J. D. W., Buxton, P., Ferretti, P. & Thorogood, P (1998). Stability and plasticity of neural crest patterning and branchial arch Hox code after extensive cephalic crest rotation. Dev. Biol 198, 82-104.[Medline]

Landacre, F. L (1921). The fate of the neural crest in the head of the urodeles. J. Comp. Neurol 33, 1-43.

Maconochie, M., Krishnamurthy, R., Nonchev, S., Meier, P., Manzanares, M., Mitchell, P. J. and Krumlauf, R (1999). Regulation of Hoxa2 in cranial neural crest involves members of the AP-2 family. Development 126, 1483-1494.[Abstract]

McKee, G. J. and Ferguson, M. W (1984). The effects of mesencephalic neural crest cell extirpation on the development of chicken embryos. J. Anat 139, 491-512.

Mitchell, P. J., Timmons, P. M., Hebert, J. M., Rigby, P. W. Tjian, R (1991). Transcription factor AP-2 is expressed in neural crest cell lineages during mouse embryogenesis. Genes Dev 5, 105-119.[Abstract/Free Full Text]

Nakamura, H. and Ayer-Le Lievre, C (1982). Mesectodermal capabilities of the trunk neural crest of birds. J. Embryol. exp. Morphol 70, 1-18.[Medline]

Noden, D. M (1975). An analysis of the migratory behavior of avian cephalic neural crest cells. Dev. Biol 42, 106-130.[Medline]

Reissmann,E., Ernsberger, U., Francis-West, P. H., Rueger, D., Brickell, P. M. and Rohrer, H (1996). Involvement of bone morphogenetic protein-4 and bone morphogenetic protein-7 in the differentiation of the adrenergic phenotype in developing sympathetic neurons. Development 122, 2079-2088.[Abstract]

Saldivar, J. R., Sechrist, J. W., Krull, C. E., Ruffins, S. and Bronner-Fraser, M (1997). Dorsal hindbrain ablation results in rerouting of neural crest migration and changes in gene expression, but normal hyoid development. Development 124, 2729-2739.[Abstract]

Scherson, T., Serbedzija, G. N., Fraser, S. and Bronner-Fraser, M (1993). Regulative capacity of the cranial neural tube to form neural crest. Development 118, 1049-1062.[Abstract]

Sechrist, J. Scherson, T. and Bronner-Fraser, M (1994). Rhombomere rotation reveals that multiple mechanisms contribute to the segmental pattern of hindbrain neural crest migration. Development 120, 1777-1790.[Abstract]

Sechrist, J., Nieto, M. A., Zamanian, R. T. and Bronner-Fraser, M (1995). Regulative response of the cranial neural tube after neural fold ablation: spatiotemporal nature of neural crest regeneration and up-regulation of Slug. Development 121, 4103-4115.[Abstract]

Selleck, M. A. J. and Bronner-Fraser,M (1995). Origins of the avian neural crest: the role of neural plate-epidermal interactions. Development 121, 525-538.[Abstract]

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

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

Shah, N. M., Marchionni, M. A., Isaacs, I., Stroobant, P. and Anderson, D. J (1994). Glial growth factor restricts mammalian neural crest stem cells to a glial fate. Cell 77, 349-60.[Medline]

Shah, N. M., Groves, A. K. and Anderson, D. J (1996). Alternative neural crest cell fates are instructively promoted by TGFbeta superfamily members. Cell 85, 331-343.[Medline]

Shen, H., Wilke, T., Ashique, A. M., Narvey, M., Zerucha, T., Savino, E., Williams, T. and Richman, J. M (1997). Chicken transcription factor AP-2: cloning, expression and its role in outgrowth of facial prominences and limb buds. Dev. Biol 188, 248-266.[Medline]

Stone, L. S (1922). Experiments on the development of the cranial ganglia and the lateral line sense organs in Amblystoma punctatum. J. Exp. Zool 35, 421-496.

Stone, L. S (1932). Transplantation of hyobranchial mesentoderm, including the right lateral anlage of the second basibranchium in Amblystoma punctatum. J. Exp. Zool 62, 109-123.

Tyler, M. S. and Hall, B. K (1977). Epithelial influences on skeletogenesis in the mandible of the embryonic chick. Anat. Rec 188, 229-239.[Medline]

Varley, J. E., Wehby, R. G., Rueger, D. C. and Maxwell, G. D (1995). Number of adrenergic and islet-1 immunoreactive cells is increased in avian trunk neural crest cultures in the presence of human recombinant osteogenic protein-1. Dev. Dyn 203, 434-447.[Medline]

Winning, R. S., Shea, L. J., Marcus, S. J. and Sargent, T. D (1991). Developmental regulation of transcription factor AP-2 during Xenopus laevis embryogenesis. Nucl. Acids Res 19, 3709-3714.[Abstract/Free Full Text]

Yntema, C. L. and Hammond, W. S (1945). Depletions and abnormalities in the cervical sympathetic system of the chick following extirpation of the neural crest. J. Exp. Zool 100, 237-263.

Yntema, C. L. and Hammond, W. S (1947). The development of the autonomic nervous system. Biol. Rev 22, 344-357.




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