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16 April 2024
 
  » arxiv » physics/0002050

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Scaling in dynamical Turing pattern formation: density of defects frozen into permanent patterns
Jacek Dziarmaga ;
Date 28 Feb 2000
Subject Biological Physics; Chemical Physics; Pattern Formation and Solitons | physics.bio-ph cond-mat nlin.PS physics.chem-ph q-bio
AbstractWe estimate density of defects frozen into a biological Turing pattern which was turned on at a finite rate. A self-locking of gene expression in individual cells, which makes the Turing transition discontinuous, stabilizes the pattern together with its defects. A defect-free pattern can be obtained by spatially inhomogeneous activation of the genes.
Source arXiv, physics/0002050
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