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空间线索化、感觉门控与选择性反应准备:一项关于视觉空间定向的事件相关电位研究

Spatial cueing, sensory gating and selective response preparation: an ERP study on visuo-spatial orienting.

作者信息

Eimer M

机构信息

Universität München, Institut für Psychologie, Germany.

出版信息

Electroencephalogr Clin Neurophysiol. 1993 Sep-Oct;88(5):408-20. doi: 10.1016/0168-5597(93)90017-j.

Abstract

Event-related brain potentials (ERPs) were recorded in a visuo-spatial attention task where the position of an imperative stimulus was indicated either validly or invalidly by a central arrow (trial-by-trial cueing). Subjects had to perform choice RT tasks with the response being dependent either on the identity of the target stimulus or on its position. When target identity was relevant for response selection, validly cued stimuli elicited amplitude enhancements of the early, sensory-evoked P1 and N1 components at lateral posterior sites. The N1 validity effect was limited to scalp sites ipsilateral to the visual field of stimulus presentation. Although these effects were found only when the sensory discrimination task was considerably difficult, they are in line with models assuming that modulations of sensory-perceptual processing ("sensory gating") are induced by spatial cueing. However, when target location was response-relevant, N1 amplitude enhancements were consistently elicited by invalidly cued letters. CNV and LRP measures indicated that the arrow elicited response-related processing in the cue-target interval. Such processes occurred even when the cue contained no information about an upcoming response. Two consecutive lateralization phases were distinguishable in the LRP, with experimentally induced response assignments becoming effective only during the second phase.

摘要

在一项视觉空间注意任务中记录了事件相关脑电位(ERP),在该任务中,一个中央箭头对指令性刺激的位置进行有效或无效指示(逐次试验提示)。受试者必须执行选择反应时任务,反应取决于目标刺激的身份或其位置。当目标身份与反应选择相关时,有效提示的刺激在外侧后部部位引起早期感觉诱发的P1和N1成分的振幅增强。N1有效性效应仅限于刺激呈现视野同侧的头皮部位。尽管仅在感觉辨别任务相当困难时才发现这些效应,但它们与假设空间提示诱导感觉-知觉加工调制(“感觉门控”)的模型一致。然而,当目标位置与反应相关时,无效提示的字母会持续引起N1振幅增强。CNV和LRP测量表明,箭头在提示-目标间隔内引发了与反应相关的加工。即使提示不包含关于即将到来的反应的信息,此类加工也会发生。在LRP中可区分出两个连续的侧化阶段,实验诱导的反应分配仅在第二阶段有效。

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