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首页> 外文期刊>Frontiers in Psychology >Sense of Resistance for a Cursor Moved by User’s Keystrokes
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Sense of Resistance for a Cursor Moved by User’s Keystrokes

机译:由用户击键移动的光标的阻力感

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Haptic sensation of a material can be modulated by its visual appearance. A technique that utilizes this visual-haptic interaction is called as pseudo-haptic feedback. Conventional studies have investigated pseudo-haptic feedback in situations, wherein a user manipulated a virtual object using a computer mouse, a force-feedback device, etc. The present study investigated whether and how it was possible to offer pseudo-haptic feedback to a user who manipulated a virtual object using keystrokes. Participants moved a cursor toward a destination by pressing a key. While the cursor was moving, the cursor was temporarily slowed down on a square area of the screen. The participants’ task was to report, on a five-point scale, how much resistance they felt to the cursor’s movement. In addition to the basic speed of the cursor, the ratio of the basic speed to the speed within the square area was varied. In Experiment 1, we found that these two factors interacted significantly with each other, but further analysis showed that the cursor speed within the square area was the most important determinant of perceived resistance. In Experiment 2, consistent with the results of the previous experiment, it was found that the cursor movement outside of the square area was not required to generate the sense of resistance. Counterintuitively, in Experiment 3, the sense of resistance was apparent even without user’s keystrokes. We discuss how the sense of resistance for a cursor moved by keystrokes can be triggered visually, but interpreted by the brain as a haptic impression.
机译:材料的触觉感觉可以通过其视觉外观来调节。利用这种视觉触觉交互的技术称为伪触觉反馈。传统研究在情况下研究了伪触觉反馈,其中用户使用计算机鼠标,力反馈设备等操纵虚拟对象。本研究研究了是否以及如何向用户提供伪触觉反馈谁使用击键操纵虚拟对象。参与者通过按一个键将光标向目的地移动。当光标移动时,光标暂时放慢屏幕的平方区域。参与者的任务是以五分之一的规模报告,他们对光标运动感受了多少阻力。除了光标的基本速度之外,还改变了方形区域内的基本速度与速度的比率。在实验1中,我们发现这两个因素彼此显着互动,但进一步的分析表明,平方区域内的光标速度是感知阻力最重要的决定因素。在实验2中,与先前实验的结果一致,发现不需要产生平方区域外的光标运动来产生抵抗感。违反实验3,即使没有用户的击键,抵抗感也很明显。我们讨论击声移动的光标的抵抗程度如何在视觉上触发,而是被大脑作为触觉印象解释。

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