Clinic for Neurology and Stereotactic Neurosurgery, Otto von Guericke University, Leipziger Strasse 44, 39120 Magdeburg, Germany.
J Neurosci Methods. 2009 Oct 30;184(1):54-70. doi: 10.1016/j.jneumeth.2009.07.023. Epub 2009 Jul 28.
Transient episodes of synchronisation of neuronal activity in particular frequency ranges are thought to underlie cognition. Empirical mode decomposition phase locking (EMDPL) analysis is a method for determining the frequency and timing of phase synchrony that is adaptive to intrinsic oscillations within data, alleviating the need for arbitrary bandpass filter cut-off selection. It is extended here to address the choice of reference electrode and removal of spurious synchrony resulting from volume conduction. Spline Laplacian transformation and independent component analysis (ICA) are performed as pre-processing steps, and preservation of phase synchrony between synthetic signals, combined using a simple forward model, is demonstrated. The method is contrasted with use of bandpass filtering following the same pre-processing steps, and filter cut-offs are shown to influence synchrony detection markedly. Furthermore, an approach to the assessment of multiple EEG trials using the method is introduced, and the assessment of statistical significance of phase locking episodes is extended to render it adaptive to local phase synchrony levels. EMDPL is validated in the analysis of real EEG data, during finger tapping. The time course of event-related (de)synchronisation (ERD/ERS) is shown to differ from that of longer range phase locking episodes, implying different roles for these different types of synchronisation. It is suggested that the increase in phase locking which occurs just prior to movement, coinciding with a reduction in power (or ERD) may result from selection of the neural assembly relevant to the particular movement.
暂态神经元活动同步特定频率范围被认为是认知的基础。经验模态分解锁相(EMDPL)分析是一种确定相位同步频率和时间的方法,它适应于数据中的固有振荡,减轻了对任意带通滤波器截止选择的需求。在这里,它被扩展到解决参考电极的选择和由于容积传导而产生的虚假同步去除问题。样条拉普拉斯变换和独立成分分析(ICA)作为预处理步骤执行,并证明了使用简单正向模型组合的合成信号之间的相位同步保持。该方法与使用相同预处理步骤的带通滤波进行了对比,并且显示出滤波器截止值会显著影响同步检测。此外,还介绍了一种使用该方法评估多个 EEG 试验的方法,并扩展了相位锁定事件的统计显著性评估,使其适应于局部相位同步水平。EMDPL 在分析手指敲击期间的真实 EEG 数据时得到了验证。事件相关(去)同步(ERD/ERS)的时程与长程相位锁定事件的时程不同,这意味着这两种不同类型的同步具有不同的作用。有人认为,在运动之前发生的相位锁定增加与功率(或 ERD)的降低同时发生,可能是由于选择了与特定运动相关的神经集合。