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视觉空间信息处理的时间:与线段二等分判断相关的电源成像

Timing of visuo-spatial information processing: electrical source imaging related to line bisection judgements.

作者信息

Waberski Till D, Gobbelé René, Lamberty Kathrin, Buchner Helmut, Marshall John C, Fink Gereon R

机构信息

Department of Neurology, University Hospital Aachen, Pauwelsstr. 30, RWTH Aachen, D-52057 Aachen, Germany.

出版信息

Neuropsychologia. 2008 Apr;46(5):1201-10. doi: 10.1016/j.neuropsychologia.2007.10.024. Epub 2007 Nov 9.

Abstract

This study deconvolves the temporal dynamics of the neural processes underlying line bisection judgements (i.e., the landmark task). Event-related potentials (ERPs) were recorded from 96 scalp electrodes in 10 healthy right-handed male subjects while they were judging whether horizontal lines were correctly prebisected. In the control task, subjects judged whether or not the horizontal line was transected by a vertical line, irrespective of its position. Using a current density reconstruction approach, source maxima in the time range from 50 to 400ms after stimulus onset were localized and the time courses of activation were elaborated. Five regions, corresponding to those revealed by our previous fMRI studies (e.g., [Fink, G. R., Marshall, J. C., Shah, N. J., Weiss, P. H., Halligan, P. W., Grosse-Ruyken, et al. (2000). Line bisection judgments implicate right parietal cortex and cerebellum as assessed by fMRI. Neurology, 54, 1324-1331]), were identified as contributing significant source activity related to line bisection judgements: right middle occipital gyrus (Brodmann area; BA18); bilateral inferior occipital gyrus (BA19); right superior posterior parietal cortex (BA7) and right inferior posterior parietal cortex (BA40). Temporal deconvolution indicated sequential activation of these regions starting at BA18 as early as 90ms post-stimulus onset, followed by the successive activation of the right superior posterior parietal (BA7), bilateral inferior occipital (BA19) and right inferior posterior parietal cortex (BA40). Three of these areas (BA18, BA17 and BA19) became reactivated within 250ms of stimulus onset. The data provide evidence for an early involvement of the right hemispheric parietal network in visuo-spatial information processing. Furthermore, the temporal deconvolution of the electrophysiological data suggest that iterative processes between and within parietal (dorsal path) and occipital areas (ventral path) mediate bisection judgements.

摘要

本研究对直线二等分判断(即地标任务)背后神经过程的时间动态进行了反卷积分析。在10名健康右利手男性受试者判断水平直线是否被正确预二等分时,通过96个头皮电极记录了事件相关电位(ERP)。在对照任务中,受试者判断水平直线是否被垂直线截断,而不考虑其位置。采用电流密度重建方法,对刺激开始后50至400毫秒时间范围内的源最大值进行定位,并详细阐述激活的时间进程。五个区域被确定为与直线二等分判断相关的显著源活动区域,这些区域与我们之前的功能磁共振成像研究(如[芬克,G.R.,马歇尔,J.C.,沙阿,N.J.,魏斯,P.H.,哈利根,P.W.,格罗斯 - 鲁伊肯,等人(2000年)。功能磁共振成像评估显示直线二等分判断涉及右顶叶皮层和小脑。《神经病学》,54,1324 - 1331])所揭示的区域相对应:右枕中回(布罗德曼区域;BA18);双侧枕下回(BA19);右上后顶叶皮层(BA7)和右下后顶叶皮层(BA40)。时间反卷积表明,这些区域从刺激开始后最早90毫秒时的BA18开始依次激活,随后是右上后顶叶(BA7)、双侧枕下(BA19)和右下后顶叶皮层(BA40)的相继激活。其中三个区域(BA18、BA17和BA19)在刺激开始后250毫秒内再次激活。数据为右半球顶叶网络在视觉空间信息处理中的早期参与提供了证据。此外,电生理数据的时间反卷积表明,顶叶(背侧通路)和枕叶区域(腹侧通路)之间以及内部的迭代过程介导了二等分判断。

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