Rappelsberger P
Brain Research Institute, University of Vienna, Austria.
Brain Topogr. 1989 Fall-Winter;2(1-2):63-72. doi: 10.1007/BF01128844.
Four techniques are applied to record EEG signals: bipolar recording, referential recording, common average reference recording and source derivation. For the interpretation of EEG parameter maps knowledge of the properties of the applied recording technique is essential. Bipolar recordings are not discussed in this paper. The application of reference and common average reference recording has the disadvantage of an unknown reference potential. This disadvantage is much larger with the use of source derivation because every electrode signal has its particular reference signal. This must be taken into consideration when coherence estimations are made. With actual EEG records the influence of the reference cannot be determined unambiguously. However, simulation studies enable some essential conclusions. In this paper by means of autoregressive processes EEG signals with given power and coherence properties were simulated and different recording situations using the same data set were reconstructed. The essential result is that computation and mapping of coherences yield the most reliable results when reference recording is used. However, measures to ensure a low reference signal must be taken.
有四种技术用于记录脑电图(EEG)信号:双极记录、参考记录、公共平均参考记录和源推导。对于脑电图参数图的解读,了解所应用记录技术的特性至关重要。本文不讨论双极记录。参考记录和公共平均参考记录的应用存在参考电位未知的缺点。使用源推导时,这个缺点更为突出,因为每个电极信号都有其特定的参考信号。在进行相干性估计时必须考虑到这一点。对于实际的脑电图记录,参考的影响无法明确确定。然而,模拟研究能得出一些重要结论。在本文中,通过自回归过程模拟了具有给定功率和相干特性的脑电图信号,并使用同一数据集重建了不同的记录情况。重要的结果是,当使用参考记录时,相干性的计算和映射能产生最可靠的结果。然而,必须采取措施确保参考信号较低。