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Using Mobile Eye-Trackers to Unpack the Perceptual Benefits of a Tangible User Interface for Collaborative Learning

机译:使用移动眼动仪来挖掘有形用户界面在协作学习中的感性好处

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In this study, we investigated the way users memorize, analyze, collaborate, and learn new concepts on a Tangible User Interface (TUI). Twenty-seven pairs of apprentices in logistics (N = 54) interacted with an interactive simulation of a warehouse. Their task was to discover efficient design principles for building storehouses. In a between-subjects experimental design, half of the participants used 3D physical shelves, whereas the other half used 2D paper shelves. This manipulation allowed us to control for the "representational effect" of 3D tangibles: the first group saw the warehouse as a small-scale model with realistic shelves, whereas the second group had access to a more abstract layout with rectangular pieces of paper. Both groups interacted with the system in the same way. We found that participants in the first group (i.e., who used 3D realistic shelves) better memorized a warehouse layout, built a more efficient model, and scored higher on a learning test. Additionally, students wore eye-tracking goggles while completing those tasks; preliminary results suggest that 3D interfaces increased joint visual attention, which was found to be a significant predictor for participants' task performance and learning gains. Implications for designing TUIs in collaborative settings are discussed.
机译:在这项研究中,我们调查了用户在有形用户界面(TUI)上记忆,分析,协作和学习新概念的方式。物流中的27对学徒(N = 54)与仓库的交互式模拟进行了交互。他们的任务是发现用于建造仓库的有效设计原则。在受试者之间的实验设计中,一半的参与者使用3D物理架子,而另一半则使用2D纸架子。这种操作使我们能够控制3D有形物体的“代表性效果”:第一组将仓库视为具有逼真的货架的小规模模型,而第二组将仓库视为具有矩形纸的更抽象的布局。两组都以相同的方式与系统交互。我们发现第一组的参与者(即使用3D现实货架的参与者)更好地记住了仓库布局,建立了更有效的模型,并且在学习测试中得分更高。此外,学生在完成这些任务时还戴了眼动仪。初步结果表明3D界面增加了关节的视觉注意力,这被发现是参与者任务表现和学习成果的重要预测指标。讨论了在协作环境中设计TUI的含义。

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