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事件相关电位的半球间侧化;运动性与非运动性皮质活动

Inter-hemispheric lateralization of event related potentials; motoric versus non-motoric cortical activity.

作者信息

Van 't Ent D, Apkarian P

机构信息

Department of Physiology I, Medical Faculty, Erasmus University Rotterdam, The Netherlands.

出版信息

Electroencephalogr Clin Neurophysiol. 1998 Oct;107(4):263-76. doi: 10.1016/s0013-4694(98)00068-6.

Abstract

To study hemispheric lateralization of cortical potentials associated with motoric and non-motoric function, cortical activity was recorded accompanying either finger extension or saccadic eye movements in a contingent negative variation (CNV) paradigm. Subjects viewed computer-generated pacing stimuli, presented in the left visual hemi-field, and were instructed to either initiate or inhibit a motor response following an imperative signal. Motoric lateralization was assessed by means of the lateralized readiness potential (LRP). In addition, a measure complementary to the LRP was introduced to investigate non-motoric lateralization (NML). Contralateral inter-hemispheric lateralization was evident in the LRP preceding finger movement, but was absent prior to eye movements. However, pre-saccadic cortical response profiles did exhibit a right hemispheric, non-motoric lateralization (NML) during stimulus presentation. Comparable non-motoric lateralization was found for finger extension. Results of the present study suggest that non-motoric lateralization may be a contributing factor to the frequently reported inter-hemispheric asymmetry preceding self-initiated saccadic eye movements. Results of the present study also suggest that the latter may be related to a covert shift of visuospatial attention toward the saccadic target. Associated shifts of attention are suppressed in a CNV paradigm, where attentional focus is primarily on the CNV stimulus during the pre-saccade period.

摘要

为研究与运动和非运动功能相关的皮质电位的半球侧化,在一个关联性负变化(CNV)范式中,记录了伴随手指伸展或眼球扫视运动的皮质活动。受试者观看呈现于左半视野的计算机生成的起搏刺激,并被指示在命令信号后启动或抑制运动反应。通过侧化准备电位(LRP)评估运动侧化。此外,引入了一种与LRP互补的测量方法来研究非运动侧化(NML)。在手指运动之前的LRP中,对侧半球间侧化明显,但在眼球运动之前则不存在。然而,在刺激呈现期间,扫视前的皮质反应图谱确实表现出右半球的非运动侧化(NML)。对于手指伸展也发现了类似的非运动侧化。本研究结果表明,非运动侧化可能是自我启动的眼球扫视运动之前经常报道的半球间不对称的一个促成因素。本研究结果还表明,后者可能与视觉空间注意力向扫视目标的隐蔽转移有关。在CNV范式中,注意力的相关转移受到抑制,在扫视前阶段,注意力焦点主要集中在CNV刺激上。

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