首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >GPU-accelerated atom and dynamic bond visualization using hyperballs: A unified algorithm for balls, sticks, and hyperboloids
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GPU-accelerated atom and dynamic bond visualization using hyperballs: A unified algorithm for balls, sticks, and hyperboloids

机译:使用超级球实现GPU加速的原子和动态键的可视化:球,棒和双曲面的统一算法

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摘要

Ray casting on graphics processing units (GPUs) opens new possibilities for molecular visualization. We describe the implementation and calculation of diverse molecular representations such as licorice, ball-and-stick, space-filling van der Waals spheres, and approximated solvent-accessible surfaces using GPUs. We introduce HyperBalls, an improved ball-and-stick representation replacing tubes, linking the atom spheres by hyperboloids that can smoothly connect them. This type of depiction is particularly useful to represent dynamic phenomena, such as the evolution of noncovalent bonds. It is furthermore well suited to represent coarse-grained models and spring networks. All these representations can be defined by a single general algebraic equation that is adapted for the ray-casting technique and is well suited for execution on the GPU. Using GPU capabilities, this implementation can routinely, accurately, and interactively render molecules ranging from a few atoms up to huge macromolecular assemblies with more than 500,000 particles. In simple cases, based only on spheres, we have been able to display up to two million atoms smoothly.
机译:在图形处理单元(GPU)上进行射线投射为分子可视化打开了新的可能性。我们描述了使用GPU来实现和计算各种分子表示形式的方法,例如甘草,球棒,空间填充范德华球和近似的溶剂可及表面。我们介绍了HyperBalls,这是一种改进的球棒表示法,代替了管子,它们通过能平稳连接它们的双曲面连接原子球。此类描绘对于表示动态现象(例如非共价键的演变)特别有用。此外,它非常适合表示粗粒度模型和弹簧网络。所有这些表示形式都可以由适用于光线投射技术且非常适合在GPU上执行的单个通用代数方程式定义。使用GPU功能,此实现可以例行,准确且交互式地渲染从几个原子到具有超过500,000个粒子的巨大的大分子组件的分子。在简单的情况下,仅基于球体,我们就能够平滑显示多达200万个原子。

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