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前庭对身体意识的贡献。

Vestibular contributions to bodily awareness.

机构信息

Institute of Cognitive Neuroscience, University College London, London, UK.

出版信息

Neuropsychologia. 2013 Jul;51(8):1445-52. doi: 10.1016/j.neuropsychologia.2013.04.006. Epub 2013 Apr 25.

Abstract

The vestibular system has widespread interactions with multisensory cortical networks, including the somatosensory areas. Several clinical observations suggested that vestibular signals are essential to compute more abstract cognitive representations of the body. However, the existing literature is generally based on isolated reports. We aimed to provide both a theoretical framework, and an experimental method to investigate potential vestibular contributions to somatic cognition. Accordingly, we have investigated effects of galvanic vestibular stimulation (GVS) on the localisation of a stimulus on the skin of the hand (a process that we define as somatoperception) and on the implicit representation of the hand size and shape (involving a different process which we define as somatorepresentation). Vestibular input influenced the localisation of tactile stimuli on the hand: touches on the dorsum of the hand were perceived as shifted toward the wrist. The specific polarity of vestibular stimulation influences the localisation errors. Right anodal and left cathodal, which influences both cerebral hemispheres, induced a stronger localisation bias compared to left anodal and right cathodal GVS, which influences primarily the right hemisphere. Although our data confirmed previous findings that the body model of the shape of the hand is massively distorted, vestibular inputs do not contribute to these distortions. Our results suggest that vestibular input influences the registration of somatosensory input onto a map of the body (somatoperception), but does not influence stored knowledge about the spatial organisation of the body as a physical object (somatorepresentation).

摘要

前庭系统与多感觉皮质网络广泛相互作用,包括躯体感觉区域。一些临床观察表明,前庭信号对于计算身体更抽象的认知表示是至关重要的。然而,现有文献通常基于孤立的报道。我们旨在提供一个理论框架和一种实验方法,以研究前庭对躯体认知的潜在贡献。因此,我们研究了电前庭刺激 (GVS) 对皮肤刺激的手部定位(我们定义为躯体感觉)以及手部大小和形状的隐性表示(涉及我们定义为躯体表示的不同过程)的影响。前庭输入影响触觉刺激在手部的定位:手背上的触摸被感知为向手腕方向移动。前庭刺激的特定极性影响定位误差。右阳极和左阴极刺激会影响两个大脑半球,比主要影响右半球的左阳极和右阴极 GVS 引起更强的定位偏差。尽管我们的数据证实了先前的发现,即手的形状的身体模型被严重扭曲,但前庭输入不会导致这些扭曲。我们的结果表明,前庭输入会影响躯体感觉输入到身体图上的登记(躯体感觉),但不会影响对身体作为物理对象的空间组织的存储知识(躯体表示)。

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