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Forging patterns and making waves from biology to geology: a commentary on Turing (1952) ‘The chemical basis of morphogenesis’

机译:锻造模式并在生物学到地质学之间掀起波澜:关于图灵(1952)形态发生的化学基础的评论

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摘要

Alan Turing was neither a biologist nor a chemist, and yet the paper he published in 1952, ‘The chemical basis of morphogenesis’, on the spontaneous formation of patterns in systems undergoing reaction and diffusion of their ingredients has had a substantial impact on both fields, as well as in other areas as disparate as geomorphology and criminology. Motivated by the question of how a spherical embryo becomes a decidedly non-spherical organism such as a human being, Turing devised a mathematical model that explained how random fluctuations can drive the emergence of pattern and structure from initial uniformity. The spontaneous appearance of pattern and form in a system far away from its equilibrium state occurs in many types of natural process, and in some artificial ones too. It is often driven by very general mechanisms, of which Turing's model supplies one of the most versatile. For that reason, these patterns show striking similarities in systems that seem superficially to share nothing in common, such as the stripes of sand ripples and of pigmentation on a zebra skin. New examples of ‘Turing patterns' in biology and beyond are still being discovered today. This commentary was written to celebrate the 350th anniversary of the journal Philosophical Transactions of the Royal Society.
机译:艾伦·图灵既不是生物学家也不是化学家,但是他在1952年发表的论文《形态发生的化学基础》中,关于在经历其成分的反应和扩散的系统中图案的自发形成对这两个领域都产生了重大影响。 ,以及其他与地貌和犯罪学不同的领域。由于球形胚胎如何变成绝对的非球形生物(例如人)这一问题的启发,Turing设计了一个数学模型,该模型解释了随机波动如何从最初的均匀性驱动图案和结构的出现。在远离其平衡状态的系统中,图案和形式的自发出现在许多类型的自然过程中,在某些人工过程中也会发生。它通常由非常通用的机制驱动,图灵的模型提供了其中最通用的机制之一。因此,这些模式在表面上似乎没有任何共同点的系统中表现出惊人的相似性,例如沙纹条纹和斑马皮上的色素沉着。如今,生物学和其他领域“转折模式”的新例子仍在被发现。这篇评论是为庆祝《皇家学会哲学交易》发表350周年而写的。

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