Patterning the cranial neural crest: Hinbrain segmentation and hox gene plasticity
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Neuroscience
Link
http://www.nature.com/articles/35039056.pdf
Reference107 articles.
1. Fraser, S., Keynes, R. & Lumsden, A. Segmentation in the chick embryo hindbrain is defined by cell lineage restrictions. Nature 344, 431–435 (1990).
2. Guthrie, S. & Lumsden, A. Formation and regeneration of rhombomere boundaries in the developing chick hindbrain. Development 112, 221–229 (1991).
3. Guthrie, S., Prince, V. & Lumsden, A. Selective dispersal of avian rhombomere cells in orthotopic and heterotopic grafts. Development 118, 527–538 (1993).
4. Birgbauer, E. & Fraser, S. E. Violation of cell lineage restriction compartments in the chick hindbrain. Development 120 , 1347–1356 (1994).
5. Xu, Q., Mellitzer, G., Robinson, V. & Wilkinson, D. In vivo cell sorting in complementary segmental domains mediated by Eph receptors and ephrins. Nature 399, 267– 271 (1999).Together with paper below, implicates the Eph receptor/ephrin families in sorting mechanisms in the hindbrain, providing a key means of sharpening rhombomere boundaries.
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