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首页> 外文期刊>Bioinformatics >FPV: fast protein visualization using Java 3D(TM).
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FPV: fast protein visualization using Java 3D(TM).

机译:FPV:使用Java 3D™快速蛋白质可视化。

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Motivation: Many tools have been developed to visualize protein structures. Tools that have been based on Java 3D((TM)) are compatible among different systems and they can be run remotely through web browsers. However, using Java 3D for visualization has some performance issues with it. The primary concerns about molecular visualization tools based on Java 3D are in their being slow in terms of interaction speed and in their inability to load large molecules. This behavior is especially apparent when the number of atoms to be displayed is huge, or when several proteins are to be displayed simultaneously for comparison. Results: In this paper we present techniques for organizing a Java 3D scene graph to tackle these problems. We have developed a protein visualization system based on Java 3D and these techniques. We demonstrate the effectiveness of the proposed method by comparing the visualization component of our system with two other Java 3D based molecular visualization tools. In particular, for van der Waals display mode, with the efficient organization of the scene graph, we could achieve up to eight times improvement in rendering speed and could load molecules three times as large as the previous systems could. Availability: FPV is freely available with source code at the following URL: http://www.cs.ucsb.edu/~tcan/fpv/ Contact: tcan@cs.ucsb.edu
机译:动机:已经开发出许多工具来可视化蛋白质结构。已经基于Java 3D(TM)的工具在不同系统之间是兼容的,并且可以通过Web浏览器远程运行。但是,使用Java 3D进行可视化会带来一些性能问题。基于Java 3D的分子可视化工具的主要关注点在于它们的交互速度较慢且无法加载大分子。当要显示的原子数很大时,或者要同时显示几种蛋白质以进行比较时,这种行为尤其明显。结果:在本文中,我们提出了组织Java 3D场景图来解决这些问题的技术。我们已经开发了基于Java 3D和这些技术的蛋白质可视化系统。通过将我们系统的可视化组件与其他两个基于Java 3D的分子可视化工具进行比较,我们证明了该方法的有效性。特别是对于范德华斯显示模式,通过高效组织场景图,我们可以将渲染速度提高多达八倍,并且可以将分子装载的容量是以前系统的三倍。可用性:FPV可通过以下URL免费提供源代码:http://www.cs.ucsb.edu/~tcan/fpv/联系人:tcan@cs.ucsb.edu

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