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Attractive Flicker — Guiding Attention in Dynamic Narrative Visualizations

机译:诱人的闪烁-动态叙事可视化中的注意力引导

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Focus-context techniques provide visual guidance in visualizations by giving strong visual prominence to elements of interest while the context is suppressed. However, finding a visual feature to enhance for the focus to pop out from its context in a large dynamic scene, while leading to minimal visual deformation and subjective disturbance, is challenging. This paper proposes Attractive Flicker, a novel technique for visual guidance in dynamic narrative visualizations. We first show that flicker is a strong visual attractor in the entire visual field, without distorting, suppressing, or adding any scene elements. The novel aspect of our Attractive Flicker technique is that it consists of two signal stages: The first “orientation stage” is a short but intensive flicker stimulus to attract the attention to elements of interest. Subsequently, the intensive flicker is reduced to a minimally disturbing luminance oscillation (“engagement stage”) as visual support to keep track of the focus elements. To find a good trade-off between attraction effectiveness and subjective annoyance caused by flicker, we conducted two perceptual studies to find suitable signal parameters. We showcase Attractive Flicker with the parameters obtained from the perceptual statistics in a study of molecular interactions. With Attractive Flicker, users were able to easily follow the narrative of the visualization on a large display, while the flickering of focus elements was not disturbing when observing the context.
机译:焦点上下文技术通过在上下文被抑制的同时对感兴趣的元素提供强烈的视觉突出,从而在可视化中提供视觉指导。然而,寻找视觉特征以增强焦点以在大型动态场景中从其上下文中弹出,同时导致最小的视觉变形和主观干扰是具有挑战性的。本文提出了有吸引力的闪烁,这是一种动态叙事可视化中视觉指导的新技术。我们首先显示闪烁在整个视场中都是强大的视觉吸引器,而不会扭曲,抑制或添加任何场景元素。我们的有吸引力的闪烁技术的新颖之处在于它包括两个信号阶段:第一个“定向阶段”是一个短暂但强烈的闪烁刺激,以吸引人们对关注元素的关注。随后,强烈的闪烁被减小到​​最小程度的扰动亮度振荡(“接合阶段”)作为视觉支持,以跟踪聚焦元件。为了在吸引效果和闪烁引起的主观烦恼之间找到良好的折衷,我们进行了两项感知研究,以找到合适的信号参数。在分子相互作用研究中,我们展示了从感知统计中获得的参数的“诱人闪烁”。借助“有吸引力的闪烁”,用户可以轻松地在大型显示器上跟随可视化的叙述,而焦点元素的闪烁在观察上下文时不会受到干扰。

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