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Non-deterministic dynamics in cells: From multistability to stochastic switching

机译:细胞的非确定性动力学:从多重稳定性到随机切换

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I will discuss the interplay between ¿traditional¿ deterministic dynamics and stochastic effects in live cells. The main example the lac operon, a set of self-promoting genes, which, together with the enzymes they express, act as a hysteretic switch. Stochastic simulations of the same system predict spontaneous, random switching by individual cells. This behavior can be well described by a simple abstraction. In a broader context, we review a few examples where stochasticity leads to useful and quantifiable behavior that amounts to a hedging strategy on the level of a population of cells. Finally, we describe stochastic simulations of systems with spatial structure, a field with applications from cancer to swarm robotics.
机译:我将讨论“传统”确定性动力学和活细胞中随机效应之间的相互作用。主要的例子是lac操纵子,这是一组自我促进的基因,它们与它们表达的酶一起起滞后转换的作用。同一系统的随机模拟可预测单个单元格的自发随机切换。此行为可以通过简单的抽象很好地描述。在更广泛的背景下,我们回顾一些随机性导致有用且可量化的行为的示例,这些行为相当于对细胞群体水平的对冲策略。最后,我们描述了具有空间结构的系统的随机仿真,该领域的应用范围从癌症到群体机器人技术。

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