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On the Analysis of Time-Delayed Interactions in Genetic Network Using S-System Model

机译:用S系统模型分析遗传网络中延迟交互的分析

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The Gene Regulatory Network (GRN) is the collection of genes and interactions among them, which captures the mutual interactions among genes. Amongst the various currently available models for inferring GRN, the S-System formalism is often considered as an excellent compromise between accuracy and mathematical tractability, although limited to represent the instantaneous interactions only. Recently proposed Time-delayed S-System Model (TDSS), an improved version of the traditional S-System model, is capable of representing the delayed interactions present in the genetic network. In this paper, we have shown the results of extensive analysis performed on TDSS over a widely used synthetic network. The two well-known performance measures applied to the synthetic network with various time-delayed regulations clearly demonstrate that the TDSS can capture both the instantaneous and delayed interactions correctly with high precision. Further, we have shown the effect of various samples sizes during the optimization where average error for the inferred parameters are reported and compared with an existing state-or-the-art algorithm.
机译:基因调节网络(GRN)是它们之间的基因和相互作用,其捕获基因之间的相互作用。在用于推断GRN的各种目前可用的模型中,S系统形式主义通常被认为是准确性和数学途径之间的出色折衷,但仅限于仅代表瞬时相互作用。最近提出的时间延迟S系统模型(TDS),传统S系统模型的改进版本,能够表示遗传网络中存在的延迟交互。在本文中,我们已经通过广泛使用的合成网络对TDS进行了广泛的分析结果。应用于具有各种延迟规定的合成网络的两个众所周知的性能措施清楚地表明TDSS可以高精度地捕获瞬时和延迟的相互作用。此外,我们已经示出了在优化期间各种样本尺寸的效果,其中报告了推断参数的平均误差并与现有的状态或最新算法进行比较。

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