Guevara Ramón, Velazquez José Luis Pérez, Nenadovic Vera, Wennberg Richard, Senjanovic Goran, Dominguez Luís Garcia
Abdus Salam ICTP, Strada Costiera 11, 34100, Miaramare, Trieste, Italy.
Neuroinformatics. 2005;3(4):301-14. doi: 10.1385/NI:3:4:301.
Phase synchrony analysis is a relatively new concept that is being increasingly used on neurophysiological data obtained through different methodologies. It is currently believed that phase synchrony is an important signature of information binding between distant sites of the brain, especially during cognitive tasks. Electroencephalographic (EEG) recordings are the most widely used recording technique for recording brain signals and assessing phase synchrony patterns. In this study, we address the suitability of phase synchrony analysis in EEG recordings. Using geometrical arguments and numerical examples, employing EEG and magnetoencephalographic data, we show that the presence of a common reference signal in the case of EEG recordings results in a distortion of the synchrony values observed, in that the amplitudes of the signals influence the synchrony measured, and in general destroys the intended physical interpretation of phase synchrony.
相位同步分析是一个相对较新的概念,正越来越多地应用于通过不同方法获得的神经生理学数据。目前人们认为,相位同步是大脑不同部位之间信息绑定的重要标志,尤其是在认知任务期间。脑电图(EEG)记录是用于记录脑信号和评估相位同步模式的最广泛使用的记录技术。在本研究中,我们探讨了相位同步分析在EEG记录中的适用性。通过几何论证和数值示例,利用EEG和脑磁图数据,我们表明,在EEG记录的情况下,共同参考信号的存在会导致观察到的同步值失真,因为信号的幅度会影响所测量的同步,并且一般会破坏相位同步的预期物理解释。