Lins O G, Picton T W, Berg P, Scherg M
Human Neurosciences Research Unit, University of Ottawa, Canada.
Brain Topogr. 1993 Fall;6(1):65-78. doi: 10.1007/BF01234128.
The source dipoles for blinks point radially whereas the source dipoles for saccades point tangentially, in the direction of the eye movement. This indicates that blink potentials are not generated by eye movements but by the eyelid sliding down over the positively charged cornea. Dipole source dipole analysis shows that the "rider artifact" at the onset of upward and lateral saccades is caused by the eyelid as it lags a little behind the eyes at the beginning of the movement. Dipole source analysis allows both the EEG and the EOG to be modeled simultaneously and EOG generators to be distinguished from nearby EEG generators. Ocular source components can be calculated from a principal component analysis of EEG and EOG recordings during blinks and saccades. The effectiveness of propagation factors, source dipoles and source components in removing ocular artifacts from EEG samples was assessed. The most effective correction procedure uses source components.
眨眼的源偶极子呈放射状指向,而扫视的源偶极子则沿眼球运动方向切向指向。这表明眨眼电位不是由眼球运动产生的,而是由眼睑在带正电荷的角膜上向下滑动产生的。偶极子源偶极子分析表明,向上和侧向扫视开始时的“骑手伪迹”是由眼睑在运动开始时稍微滞后于眼睛引起的。偶极子源分析允许同时对脑电图(EEG)和眼电图(EOG)进行建模,并将EOG发生器与附近的EEG发生器区分开来。眼源成分可以通过眨眼和扫视期间EEG和EOG记录的主成分分析来计算。评估了传播因子、源偶极子和源成分在去除EEG样本中的眼伪迹方面的有效性。最有效的校正程序使用源成分。