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Abercrombie, M (1970). Contact inhibition in tissue culture. In Vitro 6, 128-142.[Medline]

Bandtlow, C. E., Schmidt, M. F., Hassinger, T. D., Schwab, M. E. and Kater, S. B (1993). Role of intracellular calcium in NI-35-evoked collapse of neuronal growth cones. Science 259, 80-83.[Abstract/Free Full Text]

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

Cox, E. C., Muller, B. and Bonhoeffer, F (1990). Axonal guidance in the chick visual system: posterior tectal membranes induce collapse of growth cones from the temporal retina. Neuron 4, 31-37.[Medline]

Davies, J. A., Cook, G. M. W., Stern, C. D. and Keynes, R. J (1990). Isolation from chick somites of a glycoprotein fraction that causes collapse of dorsal root ganglion growth cones. Neuron 4, 11-20.[Medline]

Drescher, U., Kremoser, C., Handwerker, C., L\232schinger, J., Noda, M. and Bonhoeffer, F (1995). In vitro guidance of retinal ganglion cell axons by RAGS, a 25kDa tectal protein related to ligands for Eph receptor tyrosine kinases. Cell 82, 359-370.[Medline]

Erickson, C. A (1985). Control of neural crest cell dispersion in the trunk of the avian embryo. Dev. Biol 111, 138-157.[Medline]

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 77, 251-272.

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]

Erickson, C. A. and Turley, E. A (1983). Substrata formed by combinations of extracellular matrix components alter neural crest cell motility in vitro. J. Cell Sci 61, 299-323.[Abstract]

Fan, J., Mansfield, S. G., Redmond, T., Gordon-Weeks, P. R. and Raper, J (1993). The organization of f-actin and microtubules in growth cones exposed to a brain-derived collapsing factor. J. Cell Biol 121, 867-878.[Abstract/Free Full Text]

Halpern, M. E., Ho, R. K., Walker, C. W. and B., K. C (1993). Induction of muscle pioneers and floor plate is distinguished by the zebrafish no tail mutation. Cell 75, 99-111.[Medline]

Ho, R. K. and Kane, D. A (1990). Cell-autonomous action of zebrafish spt-1 mutation in specific mesodermal precursors. Nature 348, 728-730.[Medline]

Igarashi, M., Strittmatter, S. M., Vartanian, T. and Fishman, M. C (1993). Mediation by G proteins of signals that cause collapse of growth cones. Science 259, 77-79.[Abstract/Free Full Text]

Kapfhammer, J. P. and Raper, J. A (1987). Collapse of growth cone structure on contact with specific neurites in culture. J. Neurosci 7, 201-212.[Abstract]

Keynes, R. and Cook, G (1990). Cell-cell repulsion: clues from the growth cone?. Cell 62, 609-610.

Kimmel, C. B., Kane, D. A., Walker, C., Warga, R. M. and Rothman, M. B (1989). A mutation that changes cell movement and cell fate in the zebrafish embryo. Nature 337, 358-362.[Medline]

Luo, Y., Raible, D. and Raper, J. A (1993). Collapsin: a protein in brain that induces the collapse and paralysis of neuronal growth cones. Cell 75, 217-227.[Medline]

Metcalfe, W. K., Myers, P. Z., Trevarrow, B., Bass, M. B. and Kimmel, C. B (1990). Primary neurons that express the L2/HNK-1 carbohydrate during early development in the zebrafish. Development 110, 491-504.[Abstract/Free Full Text]

Newgreen, D. F., Scheel, M. and Kastner, V (1986). Morphogenesis of sclerotome and neural crest in avian embryos. In vivo and in vitro studies on the role of notochordal extracellular material. Cell Tiss. Res 244, 299-313.[Medline]

Oakley, R. A., Lasky, C. J., Erickson, C. A. and Tosney, K. W (1994). Glycoconjugates mark a transient barrier to neural crest emigration in the chicken embryo. Development 120, 1-.[Abstract]

Perris, R. and Johansson, S (1987). Amphibian neural crest cell migration on purified extracellular matrix components: a chondroitin sulphate proteoglycan inhibits locomotion on fibronectin substrates. J. Cell Biol 105, 2511-2521.[Abstract/Free Full Text]

Raible, D. W. and Eisen, J. S (1994). Restriction of neural crest cell fate in the trunk of the embryonic zebrafish. Development 120, 495-503.[Abstract]

Raible, D. W., Wood, A., Hodsdon, W., Henion, P. D., Weston, J. A. and Eisen, J. S (1992). Segregation and early dispersal of neural crest cells in the embryonic zebrafish. Dev. Dynamics 195, 29-42.[Medline]

Schilling, T. F. and Kimmel, C. B (1994). Segment and cell type lineage restrictions during pharyngeal arch development in the zebrafish embryo. Development 120, 483-494.[Abstract]

Serbedzija, G. N., Bronner-Fraser, M. and Fraser, S. E (1989). A vital dye analysis of the timing and pathways of avian neural crest cell migration. Development 106, 809-819.[Abstract/Free Full Text]

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

Tanaka, E., Ho, T. and Kirschner, M. W (1995). The role of microtubule dynamics in growth cone motility and axonal growth. J. Cell Biol 128, 139-155.[Abstract/Free Full Text]

Thiery, J. P., Duband, J. L. and Delouvee, A (1982). Pathways and mechanisms of avian trunk neural crest cell migration and localization. Dev. Biol 93, 324-343.[Medline]

van Raamsdonk, W., Pool, C. W. and te Kronnie, G (1978). Differentiation of muscle fiber types in the teleost, Brachydanio rerio. Anat. Embryol 153, 137-155.[Medline]

Waterman, R. E (1969). Development of the lateral musculature in the teleost, Brachydanio rerio : A fine structural study. Am. J. Anat 125, 457-494.[Medline]

Weston, J. A (1963). A radioautographic analysis of the migration and localization of trunk neural crest cells in the chick. Dev. Biol 6, 279-310.


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This Article
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