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The magnetic touch illusion: A perceptual correlate of visuo-tactile integration in peripersonal space

机译:磁性错觉:人际空间中视触融合的感知相关性

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To accurately localize our limbs and guide movements toward external objects, the brain must represent the body and its surrounding (peripersonal) visual space. Specific multisensory neurons encode peripersonal space in the monkey brain, and neurobehavioral studies have suggested the existence of a similar representation in humans. However, because peripersonal space lacks a distinct perceptual correlate, its involvement in spatial and bodily perception remains unclear. Here, we show that applying brushstrokes in mid-air at some distance above a rubber hand without touching it in synchrony with brushstrokes applied to a participant's hidden real hand results in the illusory sensation of a "magnetic force" between the brush and the rubber hand, which strongly correlates with the perception of the rubber hand as one's own. In eight experiments, we characterized this "magnetic touch illusion" by using quantitative subjective reports, motion tracking, and behavioral data consisting of pointing errors toward the rubber hand in an intermanual pointing task. We found that the illusion depends on visuo-tactile synchrony and exhibits similarities with the visuo-tactile receptive field properties of peripersonal space neurons, featuring a non-linear decay at 40 cm that is independent of gaze direction and follows changes in the rubber hand position. Moreover, the "magnetic force" does not penetrate physical barriers, thus further linking this phenomenon to body-specific visuo-tactile integration processes. These findings provide strong support for the notion that multisensory integration within peripersonal space underlies bodily self-attribution. Furthermore, we propose that the magnetic touch illusion constitutes a perceptual correlate of visuo-tactile integration in peripersonal space. (C) 2016 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license
机译:为了准确定位我们的四肢并引导运动向外部物体移动,大脑必须代表身体及其周围(个人)视觉空间。特定的多感觉神经元在猴脑中编码人际空间,神经行为研究表明在人类中存在类似的表现。但是,由于人际空间缺乏明显的知觉相关性,因此其在空间和身体知觉中的参与仍不清楚。在这里,我们显示了在空中以较高的距离在橡胶手上方的某个距离上施加笔触而不与施加到参与者隐藏的真实手上的笔触同步地对其进行触摸会导致在笔和橡胶手之间产生“磁力”的幻觉,这与将橡皮手当作自己的感觉紧密相关。在八个实验中,我们通过使用定量的主观报告,运动跟踪和行为数据来表征这种“磁性触摸错觉”,这些数据包括在人工指向任务中指向橡胶手的指向错误。我们发现这种错觉取决于视触觉的同步性,并且与人际空间神经元的视触觉感受野特性相似,其特征是在40 cm处出现非线性衰减,与视线方向无关,并且跟随橡胶手的位置变化。此外,“磁力”不会穿透物理屏障,因此将这种现象与特定于身体的视觉-触觉整合过程联系在一起。这些发现为以下观点提供了有力的支持:人际空间内的多感官整合是身体自我归宿的基础。此外,我们提出,磁性触摸错觉构成了个人周围空间中的视觉-触觉整合的感知相关性。 (C)2016作者。由Elsevier B.V.发布。这是CC BY-NC-ND许可下的开放获取文章

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