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Interactive 3D protein structure visualization using virtual reality

机译:使用虚拟现实的交互式3D蛋白质结构可视化

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Large-scale biomedical data sets of macromolecular structures such as DNA and proteins describe highly complex biomolecular entities which often consist of thousands of atoms and residues in large 3D strands of amino acids. Various types of abstract representations are used to display these data sets, ranging from traditional ball-and-stick models to feature-presenting cartoon models. Despite these abstractions, even the most simplified representations still generate a large amount of geometry data. Useful features are often difficult to recognize in the sheer amount of detail produced by the rendering software. Comparative visualization of various structures in any type of abstract representation is helpful for understanding the relation between function and structure, and prediction of properties of newly discovered proteins which might have an impact on drug design and better treatment options for diseases. We present a case study that uses high performance workstations and a virtual reality display system to process large amounts of geometry data for real-time 3D exploration, superimposition, and interactive navigational tasks in a virtual reality environment.
机译:大分子结构(例如DNA和蛋白质)的大规模生物医学数据集描述了高度复杂的生物分子实体,该实体通常由大的3D氨基酸链中的数千个原子和残基组成。从传统的球棒模型到特征呈现卡通模型,各种类型的抽象表示都用于显示这些数据集。尽管有这些抽象,但即使是最简化的表示形式也仍然会生成大量的几何数据。有用的功能通常很难通过渲染软件产生的大量细节来识别。以任何类型的抽象表示形式对各种结构进行比较可视化,有助于理解功能与结构之间的关系,并有助于预测新发现的蛋白质的性质,这可能会对药物设计和疾病的更好治疗选择产生影响。我们提出了一个案例研究,该案例使用高性能工作站和虚拟现实显示系统来处理大量几何数据,以在虚拟现实环境中进行实时3D探索,叠加和交互式导航任务。

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