网络可视化和网络分析。

EXS Pub Date : 2007-01-01 DOI:10.1007/978-3-7643-7439-6_11
Victoria J Nikiforova, Lothar Willmitzer
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引用次数: 26

摘要

生命系统的网络分析是当代系统生物学的重要组成部分。它的目标是将相互作用的系统元素之间的相互依赖组合成整个系统功能的集成视图。在下一章中,我们描述了生物网络的现有分类,并展示了生物系统中复杂的相互依赖关系是如何用更简单的网络图形式来表示的。对组装的生物网络进行进一步的结构分析,可以了解整个生物系统的功能。涉及了网元的连通性及连通性度分布、节点的中心性、聚类系数、网络直径、平均路径长度等网络结构方面。网络被分析为静态实体,或者潜在生物系统的动态行为可以被考虑。数学和计算方法的描述,以确定调节网络的动态提供。因果关系作为动态功能生物系统的另一个特征,也可以在生物网络的重建中获得;我们给出了如何完成这种集成的示例。关于网络动力学和进化的进一步问题可以通过网络比较来解决。基于网络重建的可靠性,网络分析产生了关于系统功能的新的全局假设和新的分子相互作用的还原论发现,这必须在随后的实验中进行测试。我们提供了一组有用的链接,用于分析生物网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network visualization and network analysis.

Network analysis of living systems is an essential component of contemporary systems biology. It is targeted at assemblance of mutual dependences between interacting systems elements into an integrated view of whole-system functioning. In the following chapter we describe the existing classification of what is referred to as biological networks and show how complex interdependencies in biological systems can be represented in a simpler form of network graphs. Further structural analysis of the assembled biological network allows getting knowledge on the functioning of the entire biological system. Such aspects of network structure as connectivity of network elements and connectivity degree distribution, degree of node centralities, clustering coefficient, network diameter and average path length are touched. Networks are analyzed as static entities, or the dynamical behavior of underlying biological systems may be considered. The description of mathematical and computational approaches for determining the dynamics of regulatory networks is provided. Causality as another characteristic feature of a dynamically functioning biosystem can be also accessed in the reconstruction of biological networks; we give the examples of how this integration is accomplished. Further questions about network dynamics and evolution can be approached by means of network comparison. Network analysis gives rise to new global hypotheses on systems functionality and reductionist findings of novel molecular interactions, based on the reliability of network reconstructions, which has to be tested in the subsequent experiments. We provide a collection of useful links to be used for the analysis of biological networks.

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