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The Tilted Self: Visuo-Graviceptive Mismatch in the Full-Body Illusion.

Carla Thür, Marte Roel Lesur, Christopher J Bockisch, Christophe Lopez, Bigna Lenggenhager

Frontiers in neurology January 1, 2019 DOI: 10.3389/fneur.2019.00436 via PubMed

Summary

AI-generated from the abstract

The sense of having a body depends on integrating multiple senses and prior beliefs, but the role of the vestibular system—which detects gravity—is not well understood. In an experiment, participants viewed a virtual body in front of them through a head-mounted display while receiving tactile stimulation on their back either synchronously or asynchronously. Tilting the virtual body created a conflict between visual and gravity-related cues about body orientation. Self-identification with the virtual body decreased when this visuo-graviceptive conflict was present.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Participants
Keywords Bodily orientation Full-body illusion Haptic vertical Multisensory integration Out-of-body experience
Citations 12
Key finding Self-identification with a seen body decreased when visual and gravity-related cues about body orientation conflicted, but perceived verticality and body orientation were not modulated overall.

Abstract

The bodily self is a fundamental part of human self-consciousness and relies on online multimodal information and prior beliefs about one's own body. While the contribution of the vestibular system in this process remains under-investigated, it has been theorized to be important. The present experiment investigates the influence of conflicting gravity-related visual and bodily information on the sense of a body and, vice versa, the influence of altered embodiment on verticality and own-body orientation perception. In a full-body illusion setup, participants saw in a head-mounted display a projection of their own body 2 m in front of them, on which they saw a tactile stimulation on their back displayed either synchronously or asynchronously. By tilting the seen body to one side, an additional visuo-graviceptive conflict about the body orientation was created. Self-identification with the seen body was measured explicitly with a questionnaire and implicitly with skin temperature. As measures of orientation with respect to gravity, we assessed subjective haptic vertical and the haptic body orientation. Finally, we measured the individual visual field dependence using the rod-and-frame test. The results show a decrease in self-identification during the additional visuo-graviceptive conflict, but no modulation of perceived verticality or subjective body orientation. Furthermore, explorative analyses suggest a stimulation-dependent modulation of the perceived body orientation in individuals with a strong visual field dependence only. The results suggest a mutual interaction of graviceptive and other sensory signals and the individual's weighting style in defining our sense of a bodily self.

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