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External Control in Markovian Genetic Regulatory Networks

机译:马尔可夫遗传调控网络中的外部控制

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摘要

Probabilistic Boolean Networks (PBN's) have been recently introduced as a rule-based paradigm for modeling gene regulatory networks. Such networks, which form a subclass of Markovian Genetic Regulatory Networks, provide a convenient tool for studying interactions between different genes while allowing for uncertainty in the knowledge of these relationships. This paper deals with the issue of control in probabilistic Boolean networks. More precisely, given a general Markovian Genetic Regulatory Network whose state transition probabilities depend on an external (control) variable, the paper develops a procedure by which one can choose the sequence of control actions that minimize a given performance index over a finite number of steps. The procedure is based on the theory of controlled Markov chains and makes use of the classical technique of Dynamic Programming. The choice of the finite horizon performance index is motivated by cancer treatment applications where one would ideally like to intervene only over a finite time horizon, then suspend treatment and observe the effects over some additional time before deciding if further intervention is necessary. The undiscounted finite hori/,on cost minimization problem considered here is the simplest one to formulate and solve, and is selected mainly for clarity of exposition, although more complicated costs could be used, provided appropriate technical conditions are satisfied.
机译:概率布尔网络(PBN)最近作为基于规则的范例被引入,用于对基因调控网络进行建模。这样的网络构成了马尔可夫遗传调控网络的一个子类,为研究不同基因之间的相互作用提供了一种方便的工具,同时还允许人们不确定这些关系的知识。本文讨论概率布尔网络中的控制问题。更准确地说,给定一个通用的马尔可夫遗传调节网络,其状态转换概率取决于外部(控制)变量,本文提出了一种程序,通过该程序可以选择一系列控制动作,从而在有限的步骤中将给定的性能指标最小化。该过程基于受控马尔可夫链理论,并利用了动态规划的经典技术。有限视野性能指标的选择是由癌症治疗应用推动的,理想情况下,人们希望只在有限的时间视野内进行干预,然后中止治疗并观察一段时间后的效果,然后再决定是否需要进一步干预。此处考虑的关于成本最小化的无折扣有限水平是最容易制定和解决的问题,主要是为了阐明问题而选择,尽管可以使用更复杂的成本,但要满足适当的技术条件。

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