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Motion in images is essential to cause motion sickness symptoms, but not to increase postural sway

机译:图像中的运动对于引起晕车症状是必不可少的,但并不能增加姿势摇摆

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摘要

Objective: It is generally assumed that motion in motion images is responsible for increased postural sway as well as for visually induced motion sickness (VIMS). However, this has not yet been tested. To that end, we studied postural sway and VIMS induced by motion and still images. Method: 15 Participants were exposed to motion- and still images in separate sessions. Motion images consisted of video clips taken from a first person shooter game. Still images consisted of stills taken every 10 s from these same clips. Before, during, and after exposure, VIMS was rated and postural sway was measured. Sway path length, standard deviation and short- and long-term scaling components of the centre of pressure were calculated as measures of postural sway. Results: VIMS scores obtained during and after exposure to motion images were significantly higher compared to scores obtained before, and directly after exposure to still images. The sway path length, standard deviation in anteroposterior direction and short-term scaling components in mediolateral and anteroposterior direction increased significantly during exposure to motion and still images. Conclusion: In this experiment motion- and still images caused different levels of VIMS, but comparable increases in postural sway. We assume VIMS was caused by a mismatch between visual and vestibular motion cues. The increase in sway during exposure to still images can be explained by visual effects present in still images. The lack of vection in the motion images may explain why sway was not larger when viewing these motion images as compared to viewing the still images.
机译:目的:通常认为运动图像中的运动会导致姿势摇摆以及视觉诱发的晕动病(VIMS)。但是,这尚未经过测试。为此,我们研究了运动和静止图像引起的姿势摇摆和VIMS。方法:在单独的会议中,有15位参与者分别暴露于运动图像和静止图像。运动图像包括从第一人称射击游戏中拍摄的视频片段。静止图像由每10 s从这些相同剪辑中拍摄的静止图像组成。在暴露之前,期间和之后,对VIMS进行评级并测量姿势摇摆。计算摇摆路径长度,标准偏差以及压力中心的短期和长期缩放比例分量作为姿势摇摆的量度。结果:与暴露于静止图像之前和之后直接获得的分数相比,暴露于运动图像期间和之后获得的VIMS分数明显更高。在运动和静止图像曝光期间,摇摆路径的长度,前后方向的标准偏差以及在前外侧和前后方向的短期缩放比例分量显着增加。结论:在该实验中,运动图像和静止图像导致了不同水平的VIMS,但是姿势摇摆的增加相当。我们假设VIMS是由视觉和前庭运动提示之间的不匹配引起的。静止图像曝光期间晃动的增加可以用静止图像中存在的视觉效果来解释。运动图像中缺乏对向运动可以解释为什么在观看这些运动图像时与观看静止图像相比摇摆不大。

著录项

  • 来源
    《Displays》 |2015年第7期|55-61|共7页
  • 作者单位

    Research Institute MOVE, Faculty of Human Movement Sciences, VU University Amsterdam, Netherlands,Vrije Universiteit (VU) - Faculty of Human Movement Sciences, Van der Boechorstraat 9,1081BT Amsterdam, Netherlands;

    Research Institute MOVE, Faculty of Human Movement Sciences, VU University Amsterdam, Netherlands,TNO Perceptual and Cognitive Systems, Soesterberg, Netherlands,TNO Perceptual and Cognitive Systems, P. O. Box 23, 3769 ZG, Soesterberg, Netherlands;

    Research Institute MOVE, Faculty of Human Movement Sciences, VU University Amsterdam, Netherlands,Vrije Universiteit (VU) - Faculty of Human Movement Sciences, Van der Boechorstraat 9,1081BT Amsterdam, Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Visually induced motion sickness; Postural sway; Detrended fluctuation analysis; Motion images; Sensory conflict; Vection;

    机译:视觉诱发的晕车;姿势摇摆;去趋势波动分析;动态影像;感官冲突;动力;

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