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CellNetVis: a web tool for visualization of biological networks using force-directed layout constrained by cellular components

机译:CellNetVis:一种用于使用受细胞成分约束的力导向布局来可视化生物网络的网络工具

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摘要

BackgroundThe advent of “omics” science has brought new perspectives in contemporary biology through the high-throughput analyses of molecular interactions, providing new clues in protein/gene function and in the organization of biological pathways. Biomolecular interaction networks, or graphs, are simple abstract representations where the components of a cell (e.g. proteins, metabolites etc.) are represented by nodes and their interactions are represented by edges. An appropriate visualization of data is crucial for understanding such networks, since pathways are related to functions that occur in specific regions of the cell. The force-directed layout is an important and widely used technique to draw networks according to their topologies. Placing the networks into cellular compartments helps to quickly identify where network elements are located and, more specifically, concentrated. Currently, only a few tools provide the capability of visually organizing networks by cellular compartments. Most of them cannot handle large and dense networks. Even for small networks with hundreds of nodes the available tools are not able to reposition the network while the user is interacting, limiting the visual exploration capability.
机译:背景技术“组学”科学的出现通过对分子相互作用的高通量分析,为当代生物学带来了新的观点,为蛋白质/基因功能和生物途径的组织提供了新的线索。生物分子相互作用网络或图形是简单的抽象表示,其中细胞的组成部分(例如蛋白质,代谢产物等)用结点表示,它们的相互作用用边缘表示。数据的适当可视化对于理解此类网络至关重要,因为通路与细胞特定区域中发生的功能有关。力导向布局是一种根据网络拓扑绘制网络的重要且广泛使用的技术。将网络放置在蜂窝隔室中有助于快速识别网络元素的位置,更具体地说是集中的位置。当前,只有少数工具提供了通过蜂窝隔室可视地组织网络的功能。它们中的大多数不能处理大型密集网络。即使对于具有数百个节点的小型网络,可用的工具也无法在用户交互时重新定位网络,从而限制了视觉探索能力。

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