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导航图像诱发的短期脑电图动态变化及神经发生器

Short-term EEG dynamics and neural generators evoked by navigational images.

作者信息

Leroy Axelle, Cevallos Carlos, Cebolla Ana-Maria, Caharel Stéphanie, Dan Bernard, Cheron Guy

机构信息

Laboratory of Neurophysiology and Movement Biomechanics, ULB Neuroscience Institut, Université Libre de Bruxelles, Brussels, Belgium.

Haute Ecole Condorcet, Mons, Belgium.

出版信息

PLoS One. 2017 Jun 20;12(6):e0178817. doi: 10.1371/journal.pone.0178817. eCollection 2017.

Abstract

The ecological environment offered by virtual reality is primarily supported by visual information. The different image contents and their rhythmic presentation imply specific bottom-up and top-down processing. Because these processes already occur during passive observation we studied the brain responses evoked by the presentation of specific 3D virtual tunnels with respect to 2D checkerboard. For this, we characterized electroencephalograhy dynamics (EEG), the evoked potentials and related neural generators involved in various visual paradigms. Time-frequency analysis showed modulation of alpha-beta oscillations indicating the presence of stronger prediction and after-effects of the 3D-tunnel with respect to the checkerboard. Whatever the presented image, the generators of the P100 were situated bilaterally in the occipital cortex (BA18, BA19) and in the right inferior temporal cortex (BA20). In checkerboard but not 3D-tunnel presentation, the left fusiform gyrus (BA37) was additionally recruited. P200 generators were situated in the temporal cortex (BA21) and the cerebellum (lobule VI/Crus I) specifically for the checkerboard while the right parahippocampal gyrus (BA36) and the cerebellum (lobule IV/V and IX/X) were involved only during the 3D-tunnel presentation. For both type of image, P300 generators were localized in BA37 but also in BA19, the right BA21 and the cerebellar lobule VI for only the checkerboard and the left BA20-BA21 for only the 3D-tunnel. Stronger P300 delta-theta oscillations recorded in this later situation point to a prevalence of the effect of changing direction over the proper visual content of the 3D-tunnel. The parahippocampal gyrus (BA36) implicated in navigation was also identified when the 3D-tunnel was compared to their scrambled versions, highlighting an action-oriented effect linked to navigational content.

摘要

虚拟现实所提供的生态环境主要由视觉信息支撑。不同的图像内容及其有节奏的呈现暗示了特定的自下而上和自上而下的处理过程。由于这些过程在被动观察期间就已发生,我们研究了特定3D虚拟隧道呈现相对于2D棋盘格所诱发的大脑反应。为此,我们对各种视觉范式中涉及的脑电图动力学(EEG)、诱发电位及相关神经发生器进行了表征。时频分析显示,α-β振荡受到调制,这表明3D隧道相对于棋盘格存在更强的预测和后效。无论呈现何种图像,P100的发生器双侧位于枕叶皮质(BA18、BA19)和右侧颞下回皮质(BA20)。在棋盘格呈现而非3D隧道呈现中,还额外激活了左侧梭状回(BA37)。P200发生器位于颞叶皮质(BA21)和小脑(小叶VI/ Crus I),专门针对棋盘格,而右侧海马旁回(BA36)和小脑(小叶IV/V和IX/X)仅在3D隧道呈现期间参与。对于这两种类型的图像,P300发生器仅在棋盘格时位于BA37,也位于BA19、右侧BA21和小脑小叶VI;仅在3D隧道时位于左侧BA20 - BA21。在这种情况下记录到的更强的P300 δ-θ振荡表明,在3D隧道的适当视觉内容上,方向变化的影响更为普遍。当将3D隧道与其打乱版本进行比较时,还发现了与导航相关的海马旁回(BA36),突出了与导航内容相关的以行动为导向的效应。

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