The biological clock in vertebrate embryogenesis as a mechanism of general control over the developmental organism

Author:

Gorodilov Yu. N.

Publisher

Pleiades Publishing Ltd

Subject

Developmental Biology

Reference68 articles.

1. Aulehla, A. and Johnson, R.L., Dynamic Expression of Lunatic Fringe Suggests a Link between Notch Signalling and an Autonomous Cellular Oscillator Driving Somite Segmentation, Devel. Biol., 1999, vol. 207, pp. 49–61.

2. Bozhkova, V.P., Kvavilashvili, I.Sh., Rott, N.N., and Chailakhyan, L.M., Relation between the Periods of Cyclic Changes in Membrane Electrical Characteristics and Phases of Cyto- and Karyokinesis in Cleaving Loach and Axolotl Eggs, Tsitologiya, 1974, vol. 16, no. 6, pp. 709–716.

3. Burgess, R., Rawls, A., Brown, D., et al., Requirement of the Paraxis Gene for Somite Formation and Musculoskeletal Patterning, Nature, 1996, vol. 384, pp. 570–573.

4. Cooke, J. and Elsdale, T., Somitogenesis in Amphibian Embryos. III. Effects of Ambient Temperature and Developmental Stage upon Pattern Abnormalities That Follow Short Temperature Shocks, J. Embryol. Exp. Morphol., 1980, vol. 58, pp. 107–118.

5. Cooke, J. and Zeeman, J.C., A Clock and Wavefront Model for Control of the Number of Repeated Structures during Animal Morphogenesis, J. Theor. Biol., 1976, vol. 58, pp. 455–476.

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