Zhu Howe Yuan, Chen Hsiang-Ting, Lin Chin-Teng
IEEE Trans Vis Comput Graph. 2023 Apr;29(4):1937-1950. doi: 10.1109/TVCG.2021.3134412. Epub 2023 Feb 28.
Advances in virtual reality technology have greatly benefited the acrophobia research field. Virtual reality height exposure is a reliable method of inducing stress with low variance across ages and demographics. When creating a virtual height exposure environment, researchers have often used haptic feedback elements to improve the sense of realism of a virtual environment. While the quality of the rendered for the virtual environment increases over time, the physical environment is often simplified to a conservative passive haptic feedback platform. The impact of the increasing disparity between the virtual and physical environment on the induced stress levels is unclear. This article presents an experiment that explored the effect of combining an elevated physical platform with different levels of virtual heights to induce stress. Eighteen participants experienced four different conditions of varying physical and virtual heights. The measurements included gait parameters, heart rate, heart rate variability, and electrodermal activity. The results show that the added physical elevation at a low virtual height shifts the participant's walking behaviour and increases the perception of danger. However, the virtual environment still plays an essential role in manipulating height exposure and inducing physiological stress. Another finding is that a person's behaviour always corresponds to the more significant perceived threat, whether from the physical or virtual environment.
虚拟现实技术的进步极大地惠及了恐高症研究领域。虚拟现实中的高空暴露是一种可靠的诱发压力的方法,在不同年龄和人口统计数据中的差异较小。在创建虚拟现实高空暴露环境时,研究人员经常使用触觉反馈元素来提高虚拟环境的真实感。虽然随着时间的推移,虚拟环境的渲染质量有所提高,但物理环境通常被简化为一个保守的被动触觉反馈平台。虚拟环境与物理环境之间日益增大的差异对诱发压力水平的影响尚不清楚。本文介绍了一项实验,该实验探索了将高架物理平台与不同高度的虚拟高度相结合以诱发压力的效果。18名参与者体验了四种不同的物理和虚拟高度条件。测量内容包括步态参数、心率、心率变异性和皮肤电活动。结果表明,在低虚拟高度下增加物理高度会改变参与者的行走行为,并增加危险感。然而,虚拟环境在控制高度暴露和诱发生理压力方面仍然起着至关重要的作用。另一个发现是,一个人的行为总是与更显著的感知威胁相对应,无论这种威胁来自物理环境还是虚拟环境。