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人类后顶叶皮层中视觉空间的扫视后更新

Post-saccadic updating of visual space in the posterior parietal cortex in humans.

作者信息

Bellebaum Christian, Hoffmann Klaus-Peter, Daum Irene

机构信息

Department of Neuropsychology, Institute of Cognitive Neuroscience, Ruhr-University of Bochum, Germany.

出版信息

Behav Brain Res. 2005 Sep 8;163(2):194-203. doi: 10.1016/j.bbr.2005.05.007.

Abstract

Updating of visual space takes place in the posterior parietal cortex to guarantee spatial constancy across eye movements. However, the timing of updating with respect to saccadic eye movements remains a matter of debate. In the present study, event-related potentials (ERPs) were recorded in 15 volunteers during a saccadic double-step task to elucidate the time course of the updating process. In the experimental condition updating of visual space was required, because both saccade targets had already disappeared before the first saccade was executed. A similar task without updating requirements served as control condition. ERP analysis revealed a significantly larger slow positive wave in the retino-spatial dissonance condition compared to the control condition, starting between 150 and 200 ms after first saccade onset. Source analysis showed an asymmetry with respect to the direction of the first saccade. Whereas the source was restricted to the right PPC in trials with leftward first saccades, left and right PPC were involved in rightward trials. The results of the present study suggest that updating of visual space in a saccadic double-step task occurs not earlier than 150 ms after the onset of the first saccade. We conclude that extraretinal information about the first saccade is integrated with motor information about the second saccade in the inter-saccade interval.

摘要

视觉空间的更新发生在顶叶后皮质,以确保眼球运动过程中的空间恒常性。然而,关于扫视眼动的更新时间仍存在争议。在本研究中,对15名志愿者在扫视双步任务期间记录事件相关电位(ERP),以阐明更新过程的时间进程。在实验条件下,由于两个扫视目标在第一次扫视执行之前就已经消失,因此需要更新视觉空间。一个不需要更新的类似任务作为对照条件。ERP分析显示,与对照条件相比,在视网膜空间失调条件下,从第一次扫视开始后150至200毫秒之间开始出现明显更大的慢正波。源分析显示出与第一次扫视方向有关的不对称性。在第一次扫视向左的试验中,源仅限于右侧顶叶后皮质,而在向右的试验中,左右顶叶后皮质均参与其中。本研究结果表明,扫视双步任务中视觉空间的更新不会早于第一次扫视开始后150毫秒。我们得出结论,关于第一次扫视的视网膜外信息与扫视间隔内关于第二次扫视的运动信息相结合。

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