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Quantitative modeling of gene networks of biological systems using fuzzy Petri nets and fuzzy sets

机译:基于模糊Petri网和模糊集的生物系统基因网络定量建模

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Quantitative demonstrating of organic frameworks has turned into an essential computational methodology in the configuration of novel and investigation of existing natural frameworks. Be that as it may, active information that portrays the framework's elements should be known keeping in mind the end goal to get pertinent results with the routine displaying strategies. This information is frequently robust or even difficult to get. Here, we exhibit a model of quantitative fuzzy rational demonstrating approach that can adapt to obscure motor information and hence deliver applicable results despite the fact that dynamic information is fragmented or just dubiously characterized. Besides, the methodology can be utilized as a part of the blend with the current cutting edge quantitative demonstrating strategies just in specific parts of the framework, i.e., where the data are absent. The contextual analysis of the methodology suggested in this paper is performed on the model of nine-quality genes. We propose a kind of FPN model in light of fuzzy sets to manage the quantitative modeling of biological systems. The tests of our model appear that the model is practical and entirely powerful for information impersonation and thinking of fuzzy expert frameworks.
机译:定量证明有机框架已成为小说配置和现有自然框架研究中必不可少的计算方法。尽管如此,应该牢记描述框架元素的主动信息,并牢记最终目标,以便通过常规展示策略获得相关结果。该信息通常是可靠的,甚至很难获得。在这里,我们展示了一种定量模糊有理论证方法模型,该模型可以适应模糊的电机信息,因此尽管动态信息是零散的或仅具有可疑特征,但仍可以提供适用的结果。此外,该方法可以被用作与当前最前沿的定量论证策略相融合的一部分,仅在框架的特定部分即没有数据的地方。本文提出的方法的上下文分析是在九个质量基因的模型上进行的。我们提出了一种基于模糊集的FPN模型来管理生物系统的定量建模。我们模型的测试表明,该模型对于信息模拟和模糊专家框架的思考是实用且完全强大的。

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