Berg P, Scherg M
University of Konstanz, Germany.
Clin Phys Physiol Meas. 1991;12 Suppl A:49-54. doi: 10.1088/0143-0815/12/a/010.
The spatio-temporal dipole model approach has been used to identify the difference dipoles arising from changes in the ocular dipoles due to eye movements and blinks. Based on these results a method has been developed to remove eye artefacts from electrical or magnetic data. The method avoids distortions due to the head model by determining the spatial distribution of the signals from the eyes empirically. Using simultaneous modelling of the EEG or MEG activity with dipole sources distributed within the head together with the empirically determined spatial eye components, the eye activity can be estimated and removed from the EEG or MEG. This greatly reduces the distortion to the topography that is a concomitant of previous eye artefact correction methods. The advantages of the method are illustrated using simulated and real electrical data.
时空偶极子模型方法已被用于识别因眼球运动和眨眼导致眼偶极子变化而产生的差异偶极子。基于这些结果,已开发出一种从电数据或磁数据中去除眼伪迹的方法。该方法通过凭经验确定来自眼睛的信号的空间分布,避免了因头部模型引起的失真。通过将头部内分布的偶极子源对脑电图(EEG)或脑磁图(MEG)活动进行同步建模,以及凭经验确定的空间眼部成分,可以估计眼活动并从EEG或MEG中去除。这极大地减少了先前眼伪迹校正方法所伴随的地形图失真。使用模拟和真实电数据说明了该方法的优点。