Picton T W, van Roon P, Armilio M L, Berg P, Ille N, Scherg M
Rotman Research Institute, University of Toronto, Ontario, Canada.
Clin Neurophysiol. 2000 Jan;111(1):53-65. doi: 10.1016/s1388-2457(99)00227-8.
To evaluate the scalp topography of the potentials related to saccades and blinks.
The scalp topographies of the potentials associated with saccades and blinks were recorded in 60 subjects. The topographies were analyzed using both source components and attenuation factors, with each factor representing the fraction of the potential recorded in peri-ocular electrodes that contributes to the EEG recorded from a particular scalp location.
Blinks and upward saccades generated potentials with very different topographies. Left and right saccades and up and down saccades generated equal but inverted fields except at peri-ocular locations where subtle inequalities occurred. The potentials associated with lateral saccades were consistently larger in female subjects than in male subjects.
The differences in the scalp topographies between blinks and vertical saccades can be explained by the different ways in which they are generated. Blink potentials are caused by the eyelids sliding down over the positively charged cornea, whereas saccade potentials are caused by changes in the orientation of the corneoretinal dipole. Any compensation procedure for ocular artifacts must take into account the topographic differences between blinks and upward saccades.
评估与扫视和眨眼相关电位的头皮地形图。
记录了60名受试者与扫视和眨眼相关电位的头皮地形图。使用源成分和衰减因子对地形图进行分析,每个因子代表眼周电极记录的电位中对特定头皮位置记录的脑电图有贡献的部分。
眨眼和向上扫视产生的电位具有非常不同的地形图。向左和向右扫视以及向上和向下扫视产生大小相等但方向相反的电场,除了眼周位置存在细微差异。与水平扫视相关的电位在女性受试者中始终比男性受试者大。
眨眼和垂直扫视之间头皮地形图的差异可以通过它们产生的不同方式来解释。眨眼电位是由眼睑在带正电的角膜上向下滑动引起的,而扫视电位是由角膜视网膜偶极方向的变化引起的。任何针对眼电伪迹的补偿程序都必须考虑眨眼和向上扫视之间的地形差异。