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模式形成的最小反应方案。

Minimal reaction schemes for pattern formation.

机构信息

Department of Mathematical Sciences, University of Bath, Bath BA2 7AY, UK.

Centre for Mathematical Biology, University of Bath, Bath BA2 7AY, UK.

出版信息

J R Soc Interface. 2024 Feb;21(211):20230490. doi: 10.1098/rsif.2023.0490. Epub 2024 Feb 28.

Abstract

We link continuum models of reaction-diffusion systems that exhibit diffusion-driven instability to constraints on the particle-scale interactions underpinning this instability. While innumerable biological, chemical and physical patterns have been studied through the lens of Alan Turing's reaction-diffusion pattern-forming mechanism, the connections between models of pattern formation and the nature of the particle interactions generating them have been relatively understudied in comparison with the substantial efforts that have been focused on understanding proposed continuum systems. To derive the necessary reactant combinations for the most parsimonious reaction schemes, we analyse the emergent continuum models in terms of possible generating elementary reaction schemes. This analysis results in the complete list of such schemes containing the fewest reactions; these are the simplest possible hypothetical mass-action models for a pattern-forming system of two interacting species.

摘要

我们将表现出扩散驱动不稳定性的反应-扩散系统的连续体模型与构成这种不稳定性的粒子尺度相互作用的约束联系起来。虽然通过艾伦·图灵的反应-扩散模式形成机制的视角研究了无数的生物、化学和物理模式,但与集中于理解所提出的连续体系统的大量努力相比,模式形成模型与产生它们的粒子相互作用的本质之间的联系相对较少受到研究。为了推导出最简约的反应方案所需的反应物组合,我们根据可能的生成基本反应方案来分析涌现的连续体模型。这种分析导致了包含最少反应的此类方案的完整列表;这些是两个相互作用物种的形成模式系统的最简单的假设质量作用模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f392/10898969/2d6549039ec3/rsif20230490f01.jpg

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