Essl M, Rappelsberger P
Institute of Neurophysiology, Vienna, Austria.
Med Biol Eng Comput. 1998 Jul;36(4):399-406. doi: 10.1007/BF02523206.
Coherence has become an essential tool in the description of functional relationships between EEG signals generated within various brain areas. In EEG coherence analysis, the reference signal has an important influence, as an improper reference can distort the results and make them impossible to interpret. In the study, EEG are recorded from one volunteer in 11 sessions, with electrodes selected according to the international 10-20 system against FCz. Additional electrodes are placed on the nose, chin and left and right ear lobes, and recordings are made also against FCz. This enables re-referencing of the stored EEG signals for different reference sites, averaged reference signals, common average reference, Laplacian and bipolar. Coherence values using single reference electrodes depend on the reference site to a large extent. Reliable results are obtained using averaged non-cephalic signals as reference ([A1 + A2]/2). Coherence based on FCz yields slightly lower or higher values than that based on non-cephalic reference sites. Completely different results yield common average reference recordings, Laplacian and bipolar recordings, probably owing to the cancellation effect of essential signal portions using these techniques. A mathematical model for coherence based on signal-to-noise ratios is introduced to explain the experimental findings: the model demonstrates that noisy reference signals lead to coherence increase, whereas a coherent amount in the reference signal leads to coherence decrease.
相干性已成为描述不同脑区产生的脑电图(EEG)信号之间功能关系的重要工具。在EEG相干性分析中,参考信号具有重要影响,因为不合适的参考可能会扭曲结果并使其无法解释。在该研究中,从一名志愿者身上进行了11次EEG记录,电极根据国际10-20系统相对于FCz进行选择。另外的电极放置在鼻子、下巴以及左右耳垂上,同样相对于FCz进行记录。这使得能够针对不同的参考位点、平均参考信号、公共平均参考、拉普拉斯和双极参考对存储的EEG信号进行重新参考。使用单个参考电极的相干值在很大程度上取决于参考位点。使用平均非头部信号作为参考([A1 + A2]/2)可获得可靠的结果。基于FCz的相干性产生的值比基于非头部参考位点的相干性略低或略高。公共平均参考记录、拉普拉斯和双极记录产生完全不同的结果,这可能是由于使用这些技术时基本信号部分的抵消效应。引入了一个基于信噪比的相干性数学模型来解释实验结果:该模型表明有噪声的参考信号会导致相干性增加,而参考信号中的相干量会导致相干性降低。