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一项关于视觉特征辨别引发的事件相关电位的地形学研究。

A topographic study of ERPs elicited by visual feature discrimination.

作者信息

O'Donnell B F, Swearer J M, Smith L T, Hokama H, McCarley R W

机构信息

Department of Psychiatry, Brockton VA Medical Center, MA 02401, USA.

出版信息

Brain Topogr. 1997 Winter;10(2):133-43. doi: 10.1023/a:1022203811678.

Abstract

The functional properties and topographic distribution of event-related potential (ERP) components elicited by visual discrimination of orientation, spatial frequency, spatial location, and color were investigated. ERPs were recorded from 28 electrode sites from 16 adult subjects. Five ERP components were measured: N1 (peak latency = 160 ms), P2 (250 ms), anterior N2 (260 ms), posterior N2 (280 ms), and P3 (400 ms). N1 and P2 were more negative when a stimulus was a target, showing the selection negativity effect. Feature-specific effects on component amplitude or topography varied by component. N1 and P2 were sensitive to stimulus orientation and location. Anterior or posterior N2 was sensitive to orientation, spatial frequency, and location. P3 varied with orientation, but not with other stimulus features. Cross-task comparisons of ERPs to vertical line segments in the color, orientation, and location discrimination tasks indicated that P2 and N2, but not N1 and P3, were sensitive to changes in task-demand. These data provide topographic evidence that ERP components in the 160-400 ms time domain can be differentiated on the basis to processing of specific visual features, and reflect neurophysiologically distinct visual pathways in the human cortex.

摘要

研究了由方向、空间频率、空间位置和颜色的视觉辨别所引发的事件相关电位(ERP)成分的功能特性和地形图分布。从16名成年受试者的28个电极位点记录ERP。测量了五个ERP成分:N1(峰值潜伏期 = 160毫秒)、P2(250毫秒)、前部N2(260毫秒)、后部N2(280毫秒)和P3(400毫秒)。当刺激为目标时,N1和P2更负,表现出选择负性效应。对成分幅度或地形图的特征特异性效应因成分而异。N1和P2对刺激方向和位置敏感。前部或后部N2对方向、空间频率和位置敏感。P3随方向变化,但不随其他刺激特征变化。在颜色、方向和位置辨别任务中,对垂直线段的ERP进行跨任务比较表明,P2和N2对任务需求的变化敏感,而N1和P3不敏感。这些数据提供了地形图证据,表明在160 - 400毫秒时域内的ERP成分可根据特定视觉特征的处理进行区分,并在神经生理学上反映人类皮层中不同的视觉通路。

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