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Motor-Intuitive Interactions Based on Image Schemas: Aligning Touchless Interaction Primitives with Human Sensorimotor Abilities

机译:基于图像模式的运动直观交互:将非接触式交互原语与人类感觉运动能力对齐

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Elicitation and evaluation studies investigated intuitiveness of touchless gestures but did not operationalize intuitiveness. For example, studies found that users fail to make accurate 3D strokes as interaction commands. But this phenomenon remains unexplained. In this paper, we first explain how making accurate 3D strokes is generally unintuitive, because it exceeds our sensorimotor knowledge. We then introduce motor-intuitive, touchless interaction that uses sensorimotor knowledge by relying on image schemas. Specifically, we propose an interaction primitive-mid-air, directional strokes-based on space schemas up-down and left-right. In a controlled study with large displays, we found that biomechanical factors affected directional strokes. Strokes were efficient (0.2 s) and effective (12.5 degrees angular error), but affected by directions and length. Our work operationalized intuitive touchless interaction using the continuum of knowledge in intuitive interaction, and demonstrated how user performance of a motor-intuitive, touchless primitive based on sensorimotor knowledge (image schemas) is affected by biomechanical factors.
机译:启发和评估研究调查了非接触式手势的直观性,但并未实现直观性。例如,研究发现用户无法做出准确的3D笔划作为交互命令。但是这种现象仍然无法解释。在本文中,我们首先说明做出准确的3D笔画通常是不直观的,因为它超出了我们的感觉运动知识。然后,我们介绍了运动直观,非接触式交互,该交互通过依赖于图像模式来使用感觉运动知识。具体来说,我们提出了一种基于上下左右空间模式的交互原始空中,定向笔触。在大型显示器的对照研究中,我们发现生物力学因素影响方向性冲程。笔划有效(0.2 s),有效(12.5度角度误差),但受方向和长度的影响。我们的工作使用直觉交互中的知识连续性来实现直觉非触摸交互,并演示了基于生物力学因素如何影响基于感觉运动知识(图像模式)的直觉,非触摸原语的用户性能。

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