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Integration of metabolic networks and gene expression in virtual reality

机译:虚拟现实中代谢网络和基因表达的整合

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Motivation: Metabolic networks combine metabolism and regulation. These complex networks are difficult to understand and visualize due to the amount and diverse types of information that need to be represented. For example, pathway information gives indications of interactions. Experimental data, such as transcriptomics, proteomics and metabolomics data, give snapshots of the system state. Stereoscopic virtual environments provide a true three-dimensional representation of metabolic networks, which can be intuitively manipulated, and may help to manage the data complexity.Results: MetNet3D, a 3D virtual reality system, allows a user to explore gene expression and metabolic pathway data simultaneously. Normalized gene expression data are processed in R and visualized as a 3D plot. Users can find a particular gene of interest or a cluster of genes that behave similarly and see how these genes function in metabolic networks from MetNetDB, a database of Arabidopsis metabolic networks, using animated network graphs. Interactive virtual reality, with its enhanced ability to display more information, makes such integration more effective by abstracting key relationships.
机译:动机:代谢网络结合了新陈代谢和调节作用。这些复杂的网络由于需要表示的信息量和种类繁多而难以理解和可视化。例如,途径信息给出了相互作用的指示。实验数据,例如转录组学,蛋白质组学和代谢组学数据,提供了系统状态的快照。立体虚拟环境提供了代谢网络的真实三维表示,可以直观地对其进行操作,并且可以帮助管理数据的复杂性。结果:3D虚拟现实系统MetNet3D允许用户探索基因表达和代谢途径数据同时。标准化的基因表达数据在R中进行处理,并可视化为3D图。用户可以使用动画网络图,从拟南芥代谢网络数据库MetNetDB中找到感兴趣的特定基因或行为类似的基因簇,并查看这些基因在代谢网络中的功能。交互式虚拟现实具有增强的显示更多信息的能力,可以通过抽象关键关系来使这种集成更加有效。

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