Department of Electrical Communication Engineering, Indian Institute of Science, Bangalore 560012, India.
Comput Biol Med. 2014 Mar;46:11-21. doi: 10.1016/j.compbiomed.2013.10.025. Epub 2013 Nov 17.
Real world biological systems such as the human brain are inherently nonlinear and difficult to model. However, most of the previous studies have either employed linear models or parametric nonlinear models for investigating brain function. In this paper, a novel application of a nonlinear measure of phase synchronization based on recurrences, correlation between probabilities of recurrence (CPR), to study connectivity in the brain has been proposed. Being non-parametric, this method makes very few assumptions, making it suitable for investigating brain function in a data-driven way. CPR's utility with application to multichannel electroencephalographic (EEG) signals has been demonstrated. Brain connectivity obtained using thresholded CPR matrix of multichannel EEG signals showed clear differences in the number and pattern of connections in brain connectivity between (a) epileptic seizure and pre-seizure and (b) eyes open and eyes closed states. Corresponding brain headmaps provide meaningful insights about synchronization in the brain in those states. K-means clustering of connectivity parameters of CPR and linear correlation obtained from global epileptic seizure and pre-seizure showed significantly larger cluster centroid distances for CPR as opposed to linear correlation, thereby demonstrating the superior ability of CPR for discriminating seizure from pre-seizure. The headmap in the case of focal epilepsy clearly enables us to identify the focus of the epilepsy which provides certain diagnostic value.
真实世界的生物系统,如人脑,本质上是非线性的,难以建模。然而,之前的大多数研究要么采用线性模型,要么采用参数非线性模型来研究大脑功能。在本文中,提出了一种基于递归的相位同步非线性度量的新应用,用于研究大脑中的连接。由于该方法是非参数的,因此做出了很少的假设,使其非常适合以数据驱动的方式研究大脑功能。已经证明了该方法在多通道脑电图(EEG)信号中的应用。使用多通道 EEG 信号的阈值化 CPR 矩阵获得的脑连接显示了(a)癫痫发作和发作前以及(b)睁眼和闭眼状态下脑连接中连接的数量和模式的明显差异。相应的脑头部图提供了关于这些状态下大脑同步的有意义的见解。CPR 和从全局癫痫发作和发作前获得的线性相关的连接参数的 K-均值聚类显示,CPR 的聚类中心距离明显大于线性相关,从而证明了 CPR 区分发作前和发作的能力更强。在局灶性癫痫的情况下,头部图使我们能够识别癫痫的焦点,从而提供了一定的诊断价值。