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Combining Quantitative Eye-Tracking and GIS Techniques With Qualitative Research Methods to Evaluate the Effectiveness of 2D and Static, 3D Karst Visualizations: Seeing Through the Complexities of Karst Environments

机译:将定量眼动追踪和GIS技术与定性研究方法相结合,以评估2D和静态3D岩溶可视化的效果:了解岩溶环境的复杂性

摘要

Karst environments are interconnected landscapes vulnerable to degradation. Many instances of anthropogenic karst disturbance are unintentional, and occur because of the publicu27s lack of understanding or exposure to karst knowledge. When attempts are made to educate the general public about these landscapes, the concepts taught are often too abstract to be fully understood. Thus, karst educational pursuits must use only the most efficient and effective learning materials. A technique useful for assessing educational effectiveness of learning materials is eye-tracking, which allows scientists to quantitatively measure an individualu27s points of interest and eye movements when viewing a 2D or 3D visualization. Visualization developers use eye-tracking data to create graphics that hold the observeru27s attention and, thereby, enhance learning about a particular concept. This study aimed to assess and improve the educational effectiveness of 2D karst visualizations by combining eye-tracking techniques with Geographic Information Systems, knowledge assessments, and semi-structured interviews. The first phase of this study consisted of groups of 10 participants viewing 2D karst visualizations with one category of manipulated visual stimuli. The second phase consisted of groups of 10-15 participants viewing 2D karst visualizations that were created based on the results from the first phase. The results of this study highlighted both effective stimuli in karst visualizations and stimuli that hinder the educational effectiveness of visualizations.
机译:喀斯特环境是相互联系的景观,容易退化。人为的喀斯特地貌扰乱是无意的,是由于公众缺乏对喀斯特地貌的了解或了解而发生的。当试图教育公众了解这些景观时,所教的概念通常过于抽象而无法完全理解。因此,岩溶教育追求必须仅使用最有效的学习材料。眼动追踪是一种用于评估学习材料的教育效果的技术,该技术可使科学家在查看2D或3D可视化效果时定量测量个人的兴趣点和眼球运动。可视化开发人员使用眼动数据来创建吸引观察者注意力的图形,从而增强对特定概念的学习。这项研究旨在通过将眼动追踪技术与地理信息系统,知识评估和半结构化访谈相结合,来评估和改善2D岩溶可视化的教育效果。这项研究的第一阶段由10名参与者组成的小组,这些参与者查看2D喀斯特地貌以及一类可操纵的视觉刺激。第二阶段由10-15名参与者组成,这些小组查看基于第一阶段结果创建的2D岩溶可视化。这项研究的结果强调了岩溶可视化中的有效刺激和阻碍可视化的教育效果的刺激。

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    Tyrie Elizabeth Katharyn;

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  • 年度 2014
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