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Touching sounds: Perception of the curvature of auditory virtual surfaces

机译:触摸声音:感知听觉虚拟表面的曲率

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In this study, we investigated the ability of blindfolded adults to discriminate between concave and convex auditory virtual surfaces. We used a Leap Motion device to measure the movements of the hand and fingers. Participants were asked to explore the space above the device with the palm of one hand and an auditory feedback was produced only when the palm was moving into the boundaries of the surface. In order to demonstrate that curvature direction was correctly perceived by our participants, we estimated their discrimination thresholds with a psychophysical staircase procedure. Two groups of participants were fed with two different sonification of the surface. Results showed that most of the participants were able to learn the task. The best results were obtained with an auditory feedback related to the component of the hand velocity tangential to the virtual surface. This work proposes a contribution to the introduction in virtual reality of auditory virtual objects.
机译:在这项研究中,我们研究了蒙住眼睛的成年人区分凹凸听觉虚拟表面之间的能力。我们使用了一台LEAP运动装置来测量手和手指的运动。要求参与者在手掌上探索设备上方的空间,只有当手掌进入表面的边界时才产生听觉反馈。为了证明我们的参与者正确地认为曲率方向,我们估计了与心理物理阶梯程序的歧视阈值。两组参与者被喂养了两种不同的表面的声音。结果表明,大多数参与者都能够学到任务。通过与虚拟表面切向的手速度的组件相关的听觉反馈获得了最佳结果。这项工作提出了对视听虚拟对象虚拟现实的介绍的贡献。

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