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分级工作记忆任务中的稳态视觉诱发电位(SSVEP)地形图。

Steady state visually evoked potential (SSVEP) topography in a graded working memory task.

作者信息

Silberstein R B, Nunez P L, Pipingas A, Harris P, Danieli F

机构信息

Brain Sciences Institute, Swinburne University of Technology, Melbourne, Australia.

出版信息

Int J Psychophysiol. 2001 Oct;42(2):219-32. doi: 10.1016/s0167-8760(01)00167-2.

Abstract

The steady state visually evoked potential (SSVEP) elicited by a diffuse 13-Hz visual flicker was recorded from 64 scalp sites in 30 subjects performing a low and high demand version of an object working memory task. During the perceptual component of the task, the SSVEP amplitude was reduced at left and right parieto-occipital sites. During the hold or memory component of the task, the SSVEP amplitude exhibited a load-dependent increase at frontal and occipito-parietal sites, while the SSVEP latency exhibited a load-dependent reduction at central and left frontal sites. We suggest that SSVEP amplitude changes index cortical information processing modes in that perceptual processes are associated with an SSVEP amplitude reduction, while holding information in active short-term or working memory is associated with an SSVEP amplitude increase. We also discuss changes in SSVEP amplitude and latency in terms of changes in the behavior of cortico-cortico and thalamo-cortico loops that utilize cortical layer I. Such cortico-cortico and thalamo-cortical loops are also proposed to constitute a neurophysiological mechanism for holding information in working memory.

摘要

在30名执行低需求和高需求版本物体工作记忆任务的受试者中,从64个头皮部位记录了由13赫兹弥漫性视觉闪烁诱发的稳态视觉诱发电位(SSVEP)。在任务的感知阶段,左右顶枕部位的SSVEP波幅降低。在任务的保持或记忆阶段,额部和枕顶部位的SSVEP波幅呈现出与负荷相关的增加,而中央和左额部位的SSVEP潜伏期呈现出与负荷相关的缩短。我们认为,SSVEP波幅变化指示了皮层信息处理模式,即感知过程与SSVEP波幅降低相关,而在活跃的短期或工作记忆中保持信息则与SSVEP波幅增加相关。我们还根据利用皮层I层的皮质-皮质和丘脑-皮质环路行为的变化来讨论SSVEP波幅和潜伏期的变化。这种皮质-皮质和丘脑-皮质环路也被认为构成了在工作记忆中保持信息的神经生理机制。

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