Cellular oscillators in animal segmentation
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[1] G. K. Davis,et al. Pax group III genes and the evolution of insect pair-rule patterning. , 2001, Development.
[2] V. French,et al. Disruption of segmentation in a short germ insect embryo. II. The structure of segmental abnormalities induced by heat shock. , 1986, Journal of embryology and experimental morphology.
[3] Watson Mr.,et al. Signs of Life , 1997 .
[4] L Wolpert,et al. A clock and trail model for somite formation, specialization and polarization. , 2000, Journal of theoretical biology.
[5] N. Patel,et al. Developmental evolution: insights from studies of insect segmentation. , 1994, Science.
[6] J. E. Mee. Pattern formation in fragmented eggs of the short germ insect Schistocerca gregaria , 1986, Roux's archives of developmental biology.
[7] A. Fritz,et al. Zebrafish Mesp family genes, mesp-a and mesp-b are segmentally expressed in the presomitic mesoderm, and Mesp-b confers the anterior identity to the developing somites. , 2000, Development.
[8] R. Solé,et al. Gene networks capable of pattern formation: from induction to reaction-diffusion. , 2000, Journal of theoretical biology.
[9] Marcos González-Gaitán,et al. Gradient Formation of the TGF-β Homolog Dpp , 2000, Cell.
[10] R. Krumlauf. Hox genes in vertebrate development , 1994, Cell.
[11] Nigel A. Brown,et al. Waves of mouse Lunatic fringe expression, in four-hour cycles at two-hour intervals, precede somite boundary formation , 1998, Current Biology.
[12] E. C. Zeeman,et al. A clock and wavefront model for control of the number of repeated structures during animal morphogenesis. , 1976, Journal of theoretical biology.
[13] B C Goodwin,et al. A cellular oscillator model for periodic pattern formation. , 2001, Journal of theoretical biology.
[14] K. White,et al. Patterns of Gene Expression During Drosophila Mesoderm Development , 2001, Science.
[15] M. Barresi,et al. DEVELOPMENTAL DYNAMICS 219:287–303 (2000) REVIEWS A PEER REVIEWED FORUM Somite Development in Zebrafish , 2022 .
[16] A. Wagner,et al. Evolution of gene networks by gene duplications: a mathematical model and its implications on genome organization. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[17] S. Gould. The Shape of Life , 1996 .
[18] P. Callaerts,et al. PAX-6 in development and evolution. , 1997, Annual review of neuroscience.
[19] C. Stern,et al. Clocked gene expression in somite formation. , 1998, BioEssays : news and reviews in molecular, cellular and developmental biology.
[20] G. Webster,et al. Form and transformation , 1996 .
[21] J. Cooke,et al. Control of somite number during morphogenesis of a vertebrate, Xenopus laevis , 1975, Nature.
[22] P K Maini,et al. A cell cycle model for somitogenesis: mathematical formulation and numerical simulation. , 2000, Journal of theoretical biology.
[23] D Kosman,et al. Automated assay of gene expression at cellular resolution. , 1998, Pacific Symposium on Biocomputing. Pacific Symposium on Biocomputing.
[24] Stuart A. Newman,et al. Problems and paradigms: Is segmentation generic? , 1993 .
[25] B. Lieberman,et al. Evolutionary Developmental Biology , 1993 .
[26] M. Hirsch,et al. Differential Equations, Dynamical Systems, and Linear Algebra , 1974 .
[27] N. Monk. Elegant hypothesis and inelegant fact in developmental biology. , 2000, Endeavour.
[28] P. Calow,et al. Invertebrates: a new synthesis. , 1988 .
[29] D. Sharp,et al. Stripe forming architecture of the gap gene system. , 1998, Developmental genetics.
[30] O. Pourquié,et al. Notch signalling is required for cyclic expression of the hairy-like gene HES1 in the presomitic mesoderm. , 2000, Development.
[31] R. Solé,et al. Phenotypic and dynamical transitions in model genetic networks I. Emergence of patterns and genotype‐phenotype relationships , 2001, Evolution & development.
[32] F Radtke,et al. Oscillating expression of c-Hey2 in the presomitic mesoderm suggests that the segmentation clock may use combinatorial signaling through multiple interacting bHLH factors. , 2000, Developmental biology.
[33] Scott F. Gilbert,et al. Developmental Biology, 6th edition , 2000 .
[34] Scott A. Rifkin,et al. Microarray analysis of Drosophila development during metamorphosis. , 1999, Science.
[35] R. Keynes,et al. Mechanisms of vertebrate segmentation. , 1988, Development.
[36] H. Meinhardt. Models of biological pattern formation , 1982 .
[37] A. Turing. The chemical basis of morphogenesis , 1952, Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences.
[38] V. French,et al. Disruption of segmentation in a short germ insect embryo. I. The location of abnormalities induced by heat shock. , 1986, Journal of embryology and experimental morphology.
[39] C. Nüsslein-Volhard,et al. Control of her1 expression during zebrafish somitogenesis by a delta-dependent oscillator and an independent wave-front activity. , 2000, Genes & development.
[40] J. Cooke,et al. A gene that resuscitates a theory--somitogenesis and a molecular oscillator. , 1998, Trends in genetics : TIG.
[41] David H. Sharp,et al. Model for cooperative control of positional information in Drosophila by bicoid and maternal hunchback. , 1995, The Journal of experimental zoology.
[42] Brian C. Goodwin,et al. Analytical physiology of cells and developing organisms , 1976 .
[43] A. Brivanlou,et al. Microarray-based analysis of early development in Xenopus laevis. , 2001, Developmental biology.
[44] Olivier Pourquié,et al. The lunatic Fringe gene is a target of the molecular clock linked to somite segmentation in avian embryos , 1998, Current Biology.
[45] O. Pourquié,et al. A clock-work somite. , 2000, BioEssays : news and reviews in molecular, cellular and developmental biology.
[46] C. Muratov. Synchronization, chaos, and the breakdown of collective domain oscillations in reaction-diffusion systems , 1996, patt-sol/9608005.
[47] R V Solé,et al. Phenotypic and dynamical transitions in model genetic networks II. Application to the evolution of segmentation mechanisms , 2001, Evolution & development.
[48] Cyrille Alexandre,et al. The progeny of wingless-expressing cells deliver the signal at a distance in Drosophila embryos , 2000, Current Biology.
[49] David H. Sharp,et al. Mechanism of eve stripe formation , 1995, Mechanisms of Development.
[50] O. Pourquié,et al. Avian hairy Gene Expression Identifies a Molecular Clock Linked to Vertebrate Segmentation and Somitogenesis , 1997, Cell.
[51] G. Odell,et al. The segment polarity network is a robust developmental module , 2000, Nature.
[52] Mads Kærn,et al. Segmentation and somitogenesis derived from phase dynamics in growing oscillatory media. , 2000, Journal of theoretical biology.
[53] Stuart A. Kauffman,et al. ORIGINS OF ORDER , 2019, Origins of Order.
[54] A chemical flow system mimics waves of gene expression during segmentation. , 2000, Biophysical chemistry.
[55] R. Keynes,et al. Periodic segmental anomalies induced by heat shock in the chick embryo are associated with the cell cycle. , 1989, Development.