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Analyzing Complex FTMS Simulations: a Case Study in High-Level Visualization of Ion Motions

机译:分析复杂的FTMS模拟:离子运动高级可视化的案例研究

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Current practice in particle visualization renders particle position data directly onto the screen as points or glyphs. Using a camera placed at a fixed position, particle motions can be visualized by rendering trajectories or by animations. Applying such direct techniques to large, time dependent particle data sets often results in cluttered images in which the dynamic properties of the underlying system are difficult to interpret. In this case study we take an alternative approach to the visualization of ion motions. Instead of rendering ion position data directly, we first extract meaningful motion information from the ion position data and then map this information onto geometric primitives. Our goal is to produce high-level visualizations that reflect the physicists' way of thinking about ion dynamics. Parameterized geometric icons are defined to encode motion information of clusters of related ions. In addition, a parameterized camera control mechanism is used to analyze relative instead of only absolute ion motions. We apply the techniques to simulations of Fourier transform mass spectrometry (FTMS) experiments. The data produced by such simulations can amount to 5.104 ions and 105 timesteps. This paper discusses the requirements, design and informal evaluation of the implemented system
机译:粒子可视化的当前做法是将粒子位置数据作为点或字形直接渲染到屏幕上。使用放置在固定位置的相机,可以通过渲染轨迹或通过动画来可视化粒子运动。将此类直接技术应用于大型,与时间相关的粒子数据集通常会导致图像混乱,其中底层系统的动态特性难以解释。在本案例研究中,我们采用了一种替代方法来可视化离子运动。我们首先直接从离子位置数据中提取有意义的运动信息,然后将其映射到几何图元上,而不是直接绘制离子位置数据。我们的目标是产生能反映物理学家对离子动力学的思考方式的高级可视化效果。定义了参数化的几何图标以对相关离子簇的运动信息进行编码。此外,使用参数化的相机控制机制来分析相对运动,而不仅仅是绝对离子运动。我们将这些技术应用于傅立叶变换质谱(FTMS)实验的模拟。这种模拟产生的数据总计为5.104个离子和105个时间步。本文讨论了实施系统的要求,设计和非正式评估

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