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刺激频率和视网膜刺激位置对视觉诱发电位地形图的影响。

The effect of stimulation frequency and retinal stimulus location on visual evoked potential topography.

作者信息

Skrandies Wolfgang

机构信息

Institute of Physiology, Justus-Liebig University, Aulweg 129, Giessen 35392, Germany.

出版信息

Brain Topogr. 2007 Fall;20(1):15-20. doi: 10.1007/s10548-007-0026-1. Epub 2007 Jun 21.

Abstract

The activity of cortical neurons is influenced by retinal stimulus location and temporal modulation. We investigated how reversal frequency of black-and-white checkerboard patterns presented in different parts of the visual field affects evoked potential topography. Visual evoked potentials were recorded from an array of 16 electrodes over the occipital cortex in 12 healthy adults. A checkerboard reversal stimulus (40' check size) was presented with frequencies between 1.95 reversals/s and 7.81 reversals/s in the center or in the left or right hemiretina. Evoked potential fields displayed the well-known components of pattern reversal evoked activity. Computation of FFT and wavelets displayed electrical brain responses directly related to stimulation frequency. Further analysis showed that both retinal stimulus location and stimulation frequency affected visual evoked activity. Field strength as well as scalp field topography changed significantly with different reversal frequency. In addition, the pattern of lateralization of components also depended on temporal frequency of stimulation. Electrical brain activity elicited by visual stimuli shows globally similar features which are modulated by stimulus location and frequency. Our results indicate that--at least partly--different neuronal assemblies are activated by stimuli of different temporal characteristics.

摘要

皮层神经元的活动受视网膜刺激位置和时间调制的影响。我们研究了在视野不同部位呈现的黑白棋盘格图案的反转频率如何影响诱发电位地形图。在12名健康成年人的枕叶皮层上,通过16个电极组成的阵列记录视觉诱发电位。在中央或左、右半视网膜以1.95次/秒至7.81次/秒之间的频率呈现棋盘格反转刺激(40'方格大小)。诱发电位场显示出模式反转诱发活动的众所周知的成分。快速傅里叶变换(FFT)和小波计算显示了与刺激频率直接相关的脑电反应。进一步分析表明,视网膜刺激位置和刺激频率均影响视觉诱发活动。场强以及头皮场地形图随不同的反转频率而显著变化。此外,成分的侧化模式也取决于刺激的时间频率。视觉刺激引发的脑电活动显示出总体上相似的特征,这些特征受刺激位置和频率的调制。我们的结果表明,至少部分不同的神经元集合由具有不同时间特征的刺激激活。

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