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虚拟现实中的脑电图μ节律表明,个人空间周围视觉物体的运动编码取决于任务。

EEG μ rhythm in virtual reality reveals that motor coding of visual objects in peripersonal space is task dependent.

作者信息

Wamain Yannick, Gabrielli François, Coello Yann

机构信息

Univ. Lille, CNRS, CHU Lille, UMR 9193 - SCALab - Sciences Cognitives et Sciences Affectives, Lille, France.

Univ. Lille, CNRS, CHU Lille, UMR 9193 - SCALab - Sciences Cognitives et Sciences Affectives, Lille, France.

出版信息

Cortex. 2016 Jan;74:20-30. doi: 10.1016/j.cortex.2015.10.006. Epub 2015 Oct 26.

Abstract

Previous fMRI studies have shown that the visual perception of manipulable objects spontaneously involves the sensorimotor system, especially when the objects are located in peripersonal space. However, it has also been suggested that the motor coding of manipulable objects perceived in peripersonal space depends on an anticipation to interact with them. The present study aims at clarifying this issue by analyzing healthy adults' EEG activity on the centro-parietal region while perceptually judging intrinsic (prototypical or distorted shape) or extrinsic (reachable or not reachable location) properties of visual objects. In both the object identification and reachability judgment tasks, time-frequency decomposition of EEG signals was performed across the first 1000 ms following object presentation for trials on which no post-stimulus response was required (90% of the trials). Event-Related-(De)Synchronization (ERD/S) of μ rhythm was computed using the 150 ms pre-stimulus period as baseline. In the reachability judgment task, EEG analysis showed a desynchronization of μ rhythm starting 300 ms after object presentation, but only when the objects were presented with a prototypical shape in peripersonal space. For those objects, desynchronization of μ rhythm diminished progressively from peripersonal to extrapersonal space. By contrast, no such gradient was observed in the object identification task. On the whole, these data indicate that motor coding of visual objects expressed in the μ rhythm depends on an object's shape and location in space, but also on the goal of the perceptual task.

摘要

以往的功能磁共振成像研究表明,对可操纵物体的视觉感知会自发地涉及感觉运动系统,尤其是当物体位于个人周边空间时。然而,也有人提出,在个人周边空间中感知到的可操纵物体的运动编码取决于与它们互动的预期。本研究旨在通过分析健康成年人在感知判断视觉物体的内在(原型或变形形状)或外在(可触及或不可触及位置)属性时中央顶叶区域的脑电图活动来阐明这个问题。在物体识别和可达性判断任务中,对不需要刺激后反应的试验(占试验的90%),在物体呈现后的前1000毫秒内对脑电图信号进行时频分解。使用刺激前150毫秒的时间段作为基线来计算μ节律的事件相关去同步化(ERD)/同步化(ERS)。在可达性判断任务中,脑电图分析显示,在物体呈现后300毫秒开始出现μ节律去同步化,但仅当物体以原型形状呈现于个人周边空间时。对于这些物体,μ节律去同步化从个人周边空间到个人外部空间逐渐减弱。相比之下,在物体识别任务中未观察到这种梯度。总体而言,这些数据表明,以μ节律表达的视觉物体的运动编码取决于物体的形状、在空间中的位置,还取决于感知任务的目标。

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