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自然视野特征会增强动感。

Natural visual-field features enhance vection.

作者信息

Bubka Andrea, Bonato Frederick

机构信息

Department of Psychology, Saint Peter's College, 2641 Kennedy Boulevard, Jersey City, NJ 07306, USA.

出版信息

Perception. 2010;39(5):627-35. doi: 10.1068/p6315.

Abstract

When a large optic-flow pattern is viewed, induced self-motion perception (vection) can result even for observers who are stationary relative to Earth. Vection is common in optokinetic drums, large-screen cinemas, vehicle simulators, and other virtual environments. However, not all optic-flow patterns are equally effective in producing vection. We hypothesized that visual-field characteristics that typically accompany self-motion are likely to facilitate vection. The two characteristics tested in the current study were color and global visual-field movement consistent with head bob and sway that occurs when a person walks or runs. Stationary observers viewed first-person perspective video clips on a rear-projection screen that depicted forward self-motion. Vection onset and magnitude were measured with a computer-interfaced slide device. In experiment 1, either a grayscale or color video was presented. In experiment 2, the video was shot either from a smooth rolling cart or with a hand-held camera that yielded gait information in addition to global expansion. Vection onset was found to be faster, and stronger in magnitude, when videos containing color and gait movements were viewed. These results suggest that visual-field features that are common during actual self-motion can enhance vection in a virtual environment, resulting in a more realistic experience for viewers.

摘要

当观察到一个大的光流模式时,即使对于相对于地球静止的观察者,也可能产生诱导性自我运动感知(运动错觉)。运动错觉在视动鼓、大屏幕电影院、车辆模拟器和其他虚拟环境中很常见。然而,并非所有的光流模式在产生运动错觉方面都同样有效。我们假设,通常伴随自我运动的视野特征可能会促进运动错觉。在本研究中测试的两个特征是颜色和与头部上下摆动及左右晃动一致的全局视野运动,这种摆动在人行走或跑步时会发生。静止的观察者在背投屏幕上观看第一人称视角的视频片段,这些片段描绘了向前的自我运动。使用计算机接口的滑动装置测量运动错觉的起始和程度。在实验1中,呈现的是灰度视频或彩色视频。在实验2中,视频要么是从平稳滚动的推车上拍摄的,要么是用手持摄像机拍摄的,后者除了全局扩展外还产生了步态信息。当观看包含颜色和步态运动的视频时,发现运动错觉的起始更快,程度更强。这些结果表明,在实际自我运动中常见的视野特征可以增强虚拟环境中的运动错觉,从而为观看者带来更逼真的体验。

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