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我的嘴在哪里?人类感知嘴部位置的快速经验依赖性可塑性。

Where is my mouth? Rapid experience-dependent plasticity of perceived mouth position in humans.

机构信息

Institute of Cognitive Neuroscience, University College London, London, WC1N 3AZ, UK.

出版信息

Eur J Neurosci. 2019 Dec;50(11):3814-3830. doi: 10.1111/ejn.14508. Epub 2019 Jul 18.

Abstract

Several neural and behavioural studies propose that movements of the hand to the mouth are a key motor primitive of the primate sensorimotor system. These studies largely focus on sensorimotor coordination required to reach the mouth with the hand. However, hand-to-mouth movement depends on representing the location of the mouth. We report 5 experiments using a novel dental model illusion (DMI) that investigates the neural representation of mouth position. When participants used their right index finger to touch the teeth of an unseen dental model in synchrony with the experimenter's tactile stimulation of the participant's own teeth, participants felt that the position of their own teeth was shifted towards the dental model and stated that their right index finger was touching their actual teeth. This result replicated across four experiments and provides an oral analogue to the rubber hand illusion. Synchrony between the two tactile motions was necessary condition to elicit DMI (Experiment 3). DMI was moderately affected by manipulating the macrogeometric or microgeometric tactile properties of the dental model, suggesting cognitive images of one's own oral morphology play a modest role (Experiments 4 and 5). Neuropsychological theories often stress that hand-to-mouth movement emerges early in development or may even be innate. Our research suggests that general, bottom-up principles of multisensory plasticity suffice to provide spatial representation of the egocentric core, including mouth position.

摘要

一些神经和行为研究表明,手向嘴的运动是灵长类动物感觉运动系统的一个关键运动原语。这些研究主要集中在手到达嘴所需的感觉运动协调上。然而,手到嘴的运动依赖于对嘴的位置的表示。我们报告了 5 项使用新型牙齿模型错觉(DMI)的实验,该错觉研究了嘴位置的神经表示。当参与者用他们的右食指与实验者的触觉刺激同步触摸看不见的牙齿模型的牙齿时,参与者感觉自己的牙齿位置向牙齿模型移动,并表示他们的右食指正在触摸他们的实际牙齿。这个结果在四个实验中得到了复制,并为橡胶手错觉提供了口腔模拟。两个触觉运动之间的同步是产生 DMI 的必要条件(实验 3)。通过操纵牙齿模型的宏观几何或微观几何触觉特性,DMI 受到适度影响,这表明对自己口腔形态的认知图像起着适度的作用(实验 4 和 5)。神经心理学理论经常强调,手到嘴的运动在发展早期就出现了,甚至可能是天生的。我们的研究表明,多感觉可塑性的一般、自下而上的原则足以提供自我中心核心的空间表示,包括嘴的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df43/6973246/f328c3aed95c/EJN-50-3814-g001.jpg

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