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Who turned the clock? Effects of Manipulated Zeitgebers, Cognitive Load and Immersion on Time Estimation

机译:谁把时钟拨开?操纵的Zeitgeber,认知负荷和沉浸感对时间估计的影响

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摘要

Current virtual reality (VR) technologies have enormous potential to allow humans to experience computer-generated immersive virtual environments (IVEs). Many of these IVEs support near-natural audiovisual stimuli similar to the stimuli generated in our physical world. However, decades of VR research have been devoted to exploring and understand differences between perception and action in such IVEs compared to real-world perception and action. Although, significant differences have been revealed for spatiotemporal perception between IVEs and the physical world such as distance underestimation, there is still a scarcity of knowledge about the reasons for such perceptual discrepancies, in particular regarding the perception of temporal durations in IVEs. In this article, we explore the effects of manipulated zeitgebers, cognitive load and immersion on time estimation as yet unexplored factors of spatiotemporal perception in IVEs. We present an experiment in which we analyze human sensitivity to temporal durations while experiencing an immersive head-mounted display (HMO) environment. We found that manipulations of external zeitgebers caused by a natural or unnatural movement of the virtual sun had a significant effect on time judgments. Moreover, using the dual-task paradigm the results show that increased spatial and verbal cognitive load resulted in a significant shortening of judged time as well as an interaction with the external zeitgebers. Finally, we discuss the implications for the design of near-natural computer-generated virtual worlds.
机译:当前的虚拟现实(VR)技术具有巨大的潜力,可让人们体验计算机生成的沉浸式虚拟环境(IVE)。这些IVE中有许多支持接近自然的视听刺激,类似于我们在物理世界中产生的刺激。但是,数十年来的VR研究致力于探索和理解这种IVE中与真实世界的感知和动作相比,感知和动作之间的差异。尽管已发现IVE与物理世界之间的时空感知存在显着差异(例如距离低估),但仍缺乏关于此类感知差异的原因的知识,尤其是关于IVE中对时间长度的感知的知识。在本文中,我们探讨了操纵zeitgeber,认知负荷和沉浸感对时间估计的影响,而IVE是时空知觉中尚未探索的因素。我们提出了一个实验,其中我们在体验身临其境的头戴式显示器(HMO)环境时分析了人类对时间持续时间的敏感性。我们发现,由虚拟太阳的自然或不自然运动引起的外部Zeitgeber操纵对时间判断有重大影响。此外,使用双任务范式的结果表明,空间和语言认知负荷的增加导致判断时间的显着缩短以及与外部Zeitgeber的交互作用。最后,我们讨论了近自然计算机生成的虚拟世界的设计含义。

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