佛耳幻觉通过视觉触觉刺激实现耳垂的直接和广泛变形

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-23 DOI:10.1177/20416695241262208
Kenri Kodaka, Yutaro Sato
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引用次数: 0

摘要

经典的身体拥有权幻觉,如橡胶手幻觉,是在不超过本体感觉灵活性极限的时间和空间限制条件下,通过适当的本体感觉位移实现的。在 "2023 年度最佳幻觉 "竞赛中,我们推出了佛耳幻觉(BEI),该幻觉通过即时的视觉触觉刺激,制造出拥有明显变形耳垂的错觉,似乎挑战了传统的本体感觉界限。实验室实验研究了这种幻觉的机理,揭示了耳垂触觉牵拉和视觉模仿之间的重要交互作用,这有助于增强对耳垂拉伸的感知。重要的是,88% 的参与者确认了耳垂拉伸的错觉(在 7 点量表中的评分为 +4 或更高)。半数以上的参与者表示,在10秒钟的视觉刺激中,耳垂下降了10厘米。研究结果表明,与传统的所有权幻觉相比,BEI的运作原理与本体感觉调节不同。
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Buddha's ear illusion: Immediate and extensive earlobe deformation through visuotactile stimulation
The classical body ownership illusion, such as the rubber hand illusion, is achieved through appropriate proprioceptive displacement within temporal and spatial constraints that do not exceed the limits of proprioceptive flexibility. In the 2023 Best Illusion of the Year Contest, we introduced Buddha's ear illusion (BEI), which creates the illusion of owning a dramatically deformed earlobe through immediate visuotactile stimulation and seemingly challenges classical proprioceptive boundaries. The laboratory experiment examined the mechanics of this illusion, revealing a significant interaction between tactile earlobe pulling and visual miming that contributed to the enhanced perception of earlobe stretch. Importantly, 88% of the participants confirmed the illusory earlobe stretch (a rating of +4 or higher on a 7-point scale). More than half reported an earlobe descent of >10 cm within a 10-s visuotactile stimulation. The findings suggest that BEI operates on a distinct principle separate from proprioceptive modulation in contrast to classical ownership illusions.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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