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Control of reaction-diffusion equations on time-evolving manifolds

机译:时间演化流形上反应扩散方程的控制

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摘要

Among the main actors of organism development there are morphogens, which are signaling molecules diffusing in the developing organism and acting on cells to produce local responses. Growth is thus determined by the distribution of such signal. Meanwhile, the diffusion of the signal is itself affected by the changes in shape and size of the organism. In other words, there is a complete coupling between the diffusion of the signal and the change of the shapes.In this paper, we introduce a mathematical model to investigate such coupling. The shape is given by a manifold, that varies in time as the result of a deformation given by a transport equation. The signal is represented by a density, diffusing on the manifold via a diffusion equation. We show the non-commutativity of the transport and diffusion evolution by introducing a new concept of Lie bracket between the diffusion and the transport operator. We also provide numerical simulations showing this phenomenon.
机译:在生物发展的主要参与者中,有形态发生子,它是信号分子在正在发展的生物中扩散并作用于细胞以产生局部反应。因此,生长是由这种信号的分布决定的。同时,信号的扩散本身受生物体形状和大小变化的影响。换句话说,信号的扩散与形状的变化之间存在完全的耦合。本文介绍了一种数学模型来研究这种耦合。形状由歧管给定,歧管随运输方程给出的变形而随时间变化。信号由密度表示,通过扩散方程在歧管上扩散。通过在扩散和运输算子之间引入一个李括号的新概念,我们展示了运输和扩散演化的非可交换性。我们还提供了数值模拟来显示此现象。

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