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通过多模态视触kappa 效应改变虚拟现实中的时间感知。

Altering Time Perception in Virtual Reality Through Multimodal Visual-Tactile Kappa Effect.

出版信息

IEEE Trans Haptics. 2023 Oct-Dec;16(4):518-523. doi: 10.1109/TOH.2023.3270639. Epub 2023 Dec 21.

Abstract

The perception of time is highly subjective and intertwined with space perception. In a well-known perceptual illusion, called Kappa effect, the distance between consecutive stimuli is modified to induce time distortions in the perceived inter-stimulus interval that are proportional to the distance between the stimuli. However, to the best of our knowledge, this effect has not been characterized and exploited in virtual reality (VR) within a multisensory elicitation framework. This paper investigates the Kappa effect elicited by concurrent visual-tactile stimuli delivered to the forearm, through a multimodal VR interface. This paper compares the outcomes of an experiment in VR with the results of the same experiment performed in the "physical world", where a multimodal interface was applied to participants' forearm to deliver controlled visual-tactile stimuli. Our results suggest that a multimodal Kappa effect can be elicited both in VR and in the physical world relying on concurrent visual-tactile stimulation. Moreover, our results confirm the existence of a relation between the ability of participants in discriminating the duration of time intervals and the magnitude of the experienced Kappa effect. These outcomes can be exploited to modulate the subjective perception of time in VR, paving the path toward more personalised human-computer interaction.

摘要

时间感知具有高度的主观性,并且与空间感知交织在一起。在一种著名的感知错觉中,称为卡帕效应,连续刺激之间的距离会发生变化,从而导致感知到的刺激间间隔的时间扭曲,这种扭曲与刺激之间的距离成正比。然而,据我们所知,在虚拟现实(VR)中,在多感觉引发框架内,尚未对其进行特征描述和利用。本文通过多模态 VR 接口,研究了在前臂上同时给予视觉-触觉刺激所引起的卡帕效应。本文比较了在 VR 中进行的实验结果与在“物理世界”中进行的相同实验的结果,在“物理世界”中,将多模态接口应用于参与者的前臂以提供受控的视觉-触觉刺激。我们的结果表明,既可以在 VR 中也可以在物理世界中通过同时的视觉-触觉刺激引发多模态的卡帕效应。此外,我们的结果证实了参与者在区分时间间隔的持续时间的能力与所经历的卡帕效应的大小之间存在关系。这些结果可用于在 VR 中调节时间的主观感知,为更个性化的人机交互铺平道路。

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