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Understanding regression of Hensen´s node and the caudal stem zone: a mathematical modelling approach

AuthorsHarrison, N. C.; Díez del Corral, Ruth ; Vasiev, B.
Issue Date2009
CitationSymposium on Developmental Biology from a Cell Biology and Biophysics Perspective (2009)
DescriptionPoster presented at the Symposium on developmental biology from a cell biology and biophysics perspective, May 21-22, 2009, CNIC, Madrid.
ReferencesDiez del Corral, R. , Olivera-Martinez, I., Goriely, A., Gale, E, Maden, M. and Storey, K. Opposing FGF and Retinoid pathways control ventral neural pattern, neuronal differentiation and segmentation during body axis extension. 10.1016/S0896-6273(03)00565-8
Dubrulle J. and Pourquié O. fgf8 mRNA decay establishes a gradient that couples axial elongation to patterning in the vertebrate embryo.10.1038/nature02216
Baker RE, Maini PK. Travelling gradients in interacting morphogen systems. Math Biosci. 209:30-50 (2007)
Merks, R. M. H., Glazier, J. A. A cell-centered approach to developmental biology.10.1016/j.physa.2004.12.028
Mathis L, Kulesa PM, Fraser SE. FGF receptor signalling is required to maintain neural progenitors during Hensen's node progression. Nat Cell Biol. 3:559-66 (2001)
Yang X, Dormann D, Münsterberg AE, Weijer CJ. (2002) Cell movement patterns during gastrulation in the chick are controlled by positive and negative chemotaxis mediated by FGF4 and FGF8. 10.1016/S1534-5807(02)00256-3
Appears in Collections:(IC) Comunicaciones congresos
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