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- W3205070922 endingPage "016001" @default.
- W3205070922 startingPage "016001" @default.
- W3205070922 abstract "We propose a unified mechanism that reproduces the sequence of dynamical transitions observed during somitogenesis, the process of body segmentation during embryonic development, that is invariant across all vertebrate species. This is achieved by combining inter-cellular interactions mediated via receptor-ligand coupling with global spatial heterogeneity introduced through a morphogen gradient known to occur along the anteroposterior axis. Our model reproduces synchronized oscillations in the gene expression in cells at the anterior of the presomitic mesoderm as it grows by adding new cells at its posterior, followed by travelling waves and subsequent arrest of activity, with the eventual appearance of somite-like patterns. This framework integrates a boundary-organized pattern formation mechanism, which uses positional information provided by a morphogen gradient, with the coupling-mediated self-organized emergence of collective dynamics, to explain the processes that lead to segmentation." @default.
- W3205070922 created "2021-10-25" @default.
- W3205070922 creator A5016124565 @default.
- W3205070922 creator A5035871695 @default.
- W3205070922 creator A5081086296 @default.
- W3205070922 date "2021-11-11" @default.
- W3205070922 modified "2023-10-16" @default.
- W3205070922 title "Morphogen-regulated contact-mediated signaling between cells can drive the transitions underlying body segmentation in vertebrates" @default.
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