Suppr超能文献

朝着“伪触觉化身”迈进:修改自我化身的视觉动画可以模拟举重的感知。

Toward "pseudo-haptic avatars": modifying the visual animation of self-avatar can simulate the perception of weight lifting.

机构信息

Inria Rennes.

出版信息

IEEE Trans Vis Comput Graph. 2014 Apr;20(4):654-61. doi: 10.1109/TVCG.2014.45.

Abstract

In this paper we study how the visual animation of a self-avatar can be artificially modified in real-time in order to generate different haptic perceptions. In our experimental setup, participants could watch their self-avatar in a virtual environment in mirror mode while performing a weight lifting task. Users could map their gestures on the self-animated avatar in real-time using a Kinect. We introduce three kinds of modification of the visual animation of the self-avatar according to the effort delivered by the virtual avatar: 1) changes on the spatial mapping between the user’s gestures and the avatar, 2) different motion profiles of the animation, and 3) changes in the posture of the avatar (upper-body inclination). The experimental task consisted of a weight lifting task in which participants had to order four virtual dumbbells according to their virtual weight. The user had to lift each virtual dumbbells by means of a tangible stick, the animation of the avatar was modulated according to the virtual weight of the dumbbell. The results showed that the altering the spatial mapping delivered the best performance. Nevertheless, participants globally appreciated all the different visual effects. Our results pave the way to the exploitation of such novel techniques in various VR applications such as sport training, exercise games, or industrial training scenarios in single or collaborative mode.

摘要

在本文中,我们研究了如何实时人工修改自我化身的视觉动画,以产生不同的触觉感知。在我们的实验设置中,参与者可以在镜像模式下观看虚拟环境中的自我化身,同时执行举重任务。用户可以使用 Kinect 实时将他们的手势映射到自我动画化身上。我们根据虚拟化身所施加的力引入了三种自我化身视觉动画的修改方式:1)用户手势和化身之间的空间映射的变化,2)动画的不同运动轮廓,和 3)化身姿势(上身倾斜)的变化。实验任务包括举重任务,参与者必须根据虚拟重量对四个虚拟哑铃进行排序。用户必须通过有形的棍子举起每个虚拟哑铃,根据哑铃的虚拟重量来调节化身的动画。结果表明,改变空间映射提供了最佳的性能。然而,参与者普遍喜欢所有不同的视觉效果。我们的结果为在各种 VR 应用中利用这种新技术铺平了道路,例如运动训练、锻炼游戏或单人或协作模式下的工业培训场景。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验