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Controlling biological systems: the lactose regulation system of Escherichia coli

机译:控制生物系统:大肠杆菌的乳糖调节系统

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In this paper we present a comprehensive frame-work for abstraction and controller design for a biological system. The first half of the paper concerns modeling and model abstraction of the system. Most models in systems biology are deterministic models with ordinary differential equations in the concentration variables. We present a stochastic hybrid model of the lactose regulation system of E. coli bacteria that capture important phenomena which cannot be described by continuous deterministic models. We then show that the resulting stochastic hybrid model can be abstracted into a much simpler model, a two-state continuous time Markov chain. The second half of the paper discusses controller design for a specific architecture. The architecture consists of measurement of a global quantity in a colony of bacteria as an output feedback, and manipulation of global environmental variables as control actuation. We show that controller design can be performed on the abstracted (Markov chain) model and implementation on the real model yields the desired result.
机译:在本文中,我们为生物系统的抽象和控制器设计提出了一个全面的框架。本文的前半部分涉及系统的建模和模型抽象。系统生物学中的大多数模型都是在浓度变量中具有常微分方程的确定性模型。我们提出了一种大肠杆菌细菌的乳糖调节系统的随机混合模型,该模型捕获了无法由连续确定性模型描述的重要现象。然后,我们证明了所得的随机混合模型可以抽象为一个更简单的模型,即两状态连续时间马尔可夫链。本文的后半部分讨论了针对特定架构的控制器设计。该体系结构包括对细菌菌落中全局数量的测量(作为输出反馈)和对全局环境变量的操纵(作为控制驱动)。我们证明了控制器设计可以在抽象(马尔可夫链)模型上执行,并且在真实模型上的实现可以产生期望的结果。

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