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Anderson, C. B. and Meier, S (1981). The influence of the metameric pattern in the mesoderm on migration of cranial neural crest cells in the chick embryo. Dev. Biol 85, 385-402.[Medline]

Baker, C. V. and Bronner-Fraser, M (1997). The origins of the neural crest. Part I: embryonic induction. Mech. Dev 69, 3-11.[Medline]

Baker, C. V., Bronner-Fraser, M., Le Douarin, N. M. and Teillet, M. A (1997). Early-and late-migrating cranial neural crest cell populations have equivalent developmental potential in vivo. Development 124, 3077-3087.[Abstract]

Birgbauer, E., Sechrist, J., Bronner-Fraser, M. and Fraser, S (1995). Rhombomeric origin and rostrocaudal reassortment of neural crest cells revealed by intravital microscopy. Development 121, 935-945.[Abstract]

Birren, S. J., Lo, L. and Anderson, D. J (1992). Sympathetic neuroblasts undergo a developmental switch in trophic dependence. Development 119, 597-610.[Abstract/Free Full Text]

Bronner-Fraser, M (1986). Analysis of the early stages of trunk neural crest migration in avian embryos using monoclonal antibody HNK-1. Dev. Biol 115, 44-55.[Medline]

Chen, X., Rubock, M. J. and Whitman, M (1996). A transcriptional partner for MAD proteins in TGF-beta signalling. Nature 383, 691-696.[Medline]

D'Amico-Martel, A. and Noden, D. M (1983). Contributions of placodal and neural crest cells to avian cranial peripheral ganglia. Am. J. Anat 166, 445-468.[Medline]

Dickinson, M. E., Selleck, M. A., McMahon, A. P. and Bronner-Fraser, M (1995). Dorsalization of the neural tube by the non-neural ectoderm. Development 121, 2099-2106.[Abstract]

Erickson, C. A., Duong, T. D. and Tosney, K. W (1992). Descriptive and experimental analysis of the dispersion of neural crest cells along the dorsolateral path and their entry into ectoderm in the chick embryo. Dev. Biol 151, 251-272.[Medline]

Erickson, C. A. and Goins, T. L (1995). Avian neural crest cells can migrate in the dorsolateral path only if they are specified as melanocytes. Development 121, 915-924.[Abstract]

Freyaldenhoven, B. S., Freyaldenhoven, M. P., Iacovoni, J. S. and Vogt, P. K (1997). Aberrant cell growth induced by avian winged helix proteins. Cancer Res 57, 123-129.[Abstract/Free Full Text]

Graham, A., Heyman, I. and Lumsden, A (1993). Even-numbered rhombomeres control the apoptotic elimination of neural crest cells from odd-numbered rhombomeres in the chick hindbrain. Development 119, 233-245.[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.

Henion, P. D., Blyss, G. K., Luo, R., An, M., Maynard, T. M., Cole, G. J.and Weston, J. A (2000). Avian transitin expression mirrors glial cell fate restrictions during neural crest development. Dev. Dyn 218, 150-159.[Medline]

Henion, P. D. and Weston, J. A (1997). Timing and pattern of cell fate restrictions in the neural crest lineage. Development 124, 4351-4359.[Abstract]

Holton, B. and Weston, J. A (1982). Analysis of glial cell differentiation in peripheral nervous tissue. II. Neurons promote S 100 synthesis by purified glial precursor cell populations. Dev. Biol 89, 72-81.[Medline]

Homburger, S. A. and Fekete, D. M (1996). High efficiency gene transfer into the embryonic chicken CNS using B-subgroup retroviruses. Dev. Dyn 206, 112-120.[Medline]

Hromas, R., Moore, J., Johnston, T., Socha, C. and Klemsz, M (1993). Drosophila forkhead homologues are expressed in a lineage-restricted manner in human hematopoietic cells. Blood 81, 2854-2859.[Abstract/Free Full Text]

Hromas, R., Ye, H., Spinella, M., Dmitrovsky, E., Xu, D. and Costa, R. H (1999). Genesis, a Winged Helix transcriptional repressor, has embryonic expression limited to the neural crest, and stimulates proliferation in vitro in a neural development model. Cell Tissue Res 297, 371-382.[Medline]

Kaestner, K. H., Knochel, W. and Martinez, D. E (2000). Unified nomenclature for the winged helix/forkhead transcription factors. Genes Dev 14, 142-146.[Free Full Text]

Kaufmann, E. and Knochel, W (1996). Five years on the wings of fork head. Mech. Dev 57, 3-20.[Medline]

Kelsh, R. N., Dutton, K., Medlin, J. and Eisen, J. S (2000). Expression of zebrafish fkd6 in neural crest-derived glia. Mech. Dev 93, 161-164.[Medline]

Kitamura, K., Takiguchi-Hayashi, K., Sezaki, M., Yamamoto, H. and Takeuchi, T (1992). Avian neural crest cells express a melanogenic trait during early migration from the neural tube: observations with the new monoclonal antibody, \324MEBL-1'. Development 114, 367-378.[Abstract]

Kontges, G. and Lumsden, A (1996). Rhombencephalic neural crest segmentation is preserved throughout craniofacial ontogeny. Development 122, 3229-3242.[Abstract]

Kuratani, S. C. and Kirby, M. L (1991). Initial migration and distribution of the cardiac neural crest in the avian embryo: an introduction to the concept of the circumpharyngeal crest. Am. J. Anat 191, 215-227.[Medline]

Labosky, P. A. and Kaestner, K. H (1998). The winged helix transcription factor Hfh2 is expressed in neural crest and spinal cord during mouse development. Mech. Dev 76, 185-190.[Medline]

Liem, K. F. J., Tremml, G., Roelink, H. and Jessell, T. M (1995). Dorsal differentiation of neural plate cells induced by BMP-mediated signals from epidermal ectoderm. Cell 82, 969-979.[Medline]

Liu, J. P. and Jessell, T. M (1998). A role for rhoB in the delamination of neural crest cells from the dorsal neural tube. Development 125, 5055-5067.[Abstract]

Loring, J. F. and Erickson, C. A (1987). Neural crest cell migratory pathways in the trunk of the chick embryo. Dev. Biol 121, 220-236.[Medline]

Lumsden, A., Sprawson, N. and Graham, A (1991). Segmental origin and migration of neural crest cells in the hindbrain region of the chick embryo. Development 113, 1281-1291.[Abstract]

Marusich, M. F., Furneaux, H. M., Henion, P. D. and Weston, J. A (1994). Hu neuronal proteins are expressed in proliferating neurogenic cells. J. Neurobiol 25, 143-155.[Medline]

Morgan, B. A. and Fekete, D. M (1996). Manipulating gene expression with replication-competent retroviruses. Methods Cell Biol 51, 185-218.[Medline]

Nakagawa, S. and Takeichi, M (1998). Neural crest emigration from the neural tube depends on regulated cadherin expression. Development 125, 2963-2971.[Abstract]

Nieto, M. A., Patel, K. and Wilkinson, D. G (1996). In situ hybridization analysis of chick embryos in whole mount and tissue sections. Methods Cell Biol 51, 219-235.[Medline]

Noden, D. M (1978). The control of avian cephalic neural crest cytodifferentiation. I. Skeletal and connective tissues. Dev. Biol 67, 296-312.[Medline]

Oakley, R. A., Lasky, C. J., Erickson, C. A. and Tosney, K. W (1994). Glycoconjugates mark a transient barrier to neural crest migration in the chicken embryo. Development 120, 103-114.[Abstract]

Perez, S. E., Rebelo, S. and Anderson, D. J (1999). Early specification of sensory neuron fate revealed by expression and function of neurogenins in the chick embryo. Development 126, 1715-1728.[Abstract]

Peters-van der Sanden, M. J., Kirby, M. L., Gittenberger-de, G. A.,Tibboel, D., Mulder, M. P. and Meijers, C (1993). Ablation of various regions within the avian vagal neural crest has differential effects on ganglion formation in the fore-, mid-and hindgut. Dev. Dyn 196, 183-194.[Medline]

Pruginin-Bluger, M., Shelton, D. L. and Kalcheim, C (1997). A paracrine effect for neuron-derived BDNF in development of dorsal root ganglia: stimulation of Schwann cell myelin protein expression by glial cells. Mech. Dev 61, 99-111.[Medline]

Reedy, M. V., Faraco, C. D. and Erickson, C. A (1998). The delayed entry of thoracic neural crest cells into the dorsolateral path is a consequence of the late emigration of melanogenic neural crest cells from the neural tube. Dev. Biol 200, 234-246.[Medline]

Reedy, M. V., Faraco, C. D. and Erickson, C. A (1998). Specification and migration of melanoblasts at the vagal level and in hyperpigmented Silkie chickens. Dev. Dyn 213, 476-485.[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. Morphol 90, 437-455.[Medline]

Sela-Donenfeld, D. and Kalcheim, C (1999). Regulation of the onset of neural crest migration by coordinated activity of BMP4 and Noggin in the dorsal neural tube. Development 126, 4749-4762.[Abstract]

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

Selleck, M. A. and Bronner-Fraser, M (1996). The genesis of avian neural crest cells: a classic embryonic induction. Proc. Natl. Acad. Sci. USA 93, 9352-9357.[Abstract/Free Full Text]

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]

Shigetani, Y., Aizawa, S. and Kuratani, S (1995). Overlapping origins of pharyngeal arch crest cells on the postotic hind-brain. Dev. Growth Differ 37, 733-746.

Stemple, D. L. and Anderson, D. J (1993). Lineage diversification of the neural crest: in vitro investigations. Dev. Biol 159, 12-23.[Medline]

Sutton, J., Costa, R., Klug, M., Field, L., Xu, D., Largaespada, D. A., Fletcher, C. F., Jenkins, N. A., Copeland, N. G., Klemsz, M. and Hromas, R (1996). Genesis, a winged helix transcriptional repressor with expression restricted to embryonic stem cells. J. Biol. Chem 271, 23126-23133.[Abstract/Free Full Text]

Tosney, K. W (1978). The early migration of neural crest cells in the trunk region of the avian embryo: an electron microscopic study. Dev. Biol 62, 317-333.[Medline]

Tosney, K. W (1982). The segregation and early migration of cranial neural crest cells in the avian embryo. Dev. Biol 89, 13-24.[Medline]

Wakamatsu, Y., Mochii, M., Vogel, K. S. and Weston, J. A (1998). Avian neural crest-derived neurogenic precursors undergo apoptosis on the lateral migration pathway. Development 125, 4205-4213.[Abstract]

Wakamatsu, Y., Maynard, T. M.. and Weston, J. A (2000). Fate determination of neural crest cells by NOTCH-mediated lateral inhibition and asymmetrical cell division during gangliogenesis. Development 127, 2811-2821.[Abstract]

Wehrle-Haller, B. and Weston, J. A (1997). Receptor tyrosine kinase-dependent neural crest migration in response to differentially localized growth factors. BioEssays 19, 337-345.[Medline]

Xu, D., Yoder, M., Sutton, J. and Hromas, R (1998). Forced expression of Genesis, a winged helix transcriptional repressor isolated from embryonic stem cells, blocks granulocytic differentiation of 32D myeloid cells. Leukemia 12, 207-212.[Medline]

Yamagata, M. and Noda, M (1998). The winged-helix transcription factor CWH-3 is expressed in developing neural crest cells. Neurosci. Lett 249, 33-36.[Medline]


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