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The dual frequency RV-coupling coefficient: a novel measure for quantifying cross-frequency information transactions in the brain

机译:双频RV耦合系数:一种量化大脑中跨频信息交易的新颖方法

摘要

Identifying dynamic transactions between brain regions has become increasingly important. Measurements within and across brain structures, demonstrating the occurrence of bursts of beta/gamma oscillations only during one specific phase of each theta/alpha cycle, have motivated the need to advance beyond linear and stationary time series models. Here we offer a novel measure, namely, the "dual frequency RV-coupling coefficient", for assessing different types of frequency-frequency interactions that subserve information flow in the brain. This is a measure of coherence between two complex-valued vectors, consisting of the set of Fourier coefficients for two different frequency bands, within or across two brain regions. RV-coupling is expressed in terms of instantaneous and lagged components. Furthermore, by using normalized Fourier coefficients (unit modulus), phase-type couplings can also be measured. The dual frequency RV-coupling coefficient is based on previous work: the second order bispectrum, i.e. the dual-frequency coherence (Thomson 1982; Haykin & Thomson 1998); the RV-coefficient (Escoufier 1973); Gorrostieta et al (2012); and Pascual-Marqui et al (2011). This paper presents the new measure, and outlines relevant statistical tests. The novel aspects of the "dual frequency RV-coupling coefficient" are: (1) it can be applied to two multivariate time series; (2) the method is not limited to single discrete frequencies, and in addition, the frequency bands are treated by means of appropriate multivariate statistical methodology; (3) the method makes use of a novel generalization of the RV-coefficient for complex-valued multivariate data; (4) real and imaginary covariance contributions to the RV-coherence are obtained, allowing the definition of a "lagged-coupling" measure that is minimally affected by the low spatial resolution of estimated cortical electric neuronal activity.
机译:识别大脑区域之间的动态交易变得越来越重要。大脑结构内和跨大脑结构的测量表明只有在每个theta / alpha周期的一个特定阶段才发生β/γ振荡,这激发了超越线性和固定时间序列模型的需求。在这里,我们提供了一种新颖的测量方法,即“双频RV耦合系数”,用于评估不同类型的频率-频率相互作用,从而保护大脑中的信息流。这是两个复数值向量之间的相干性度量,两个向量由两个大脑区域之内或之间的两个不同频带的傅立叶系数组成。 RV耦合用瞬时和滞后分量表示。此外,通过使用归一化的傅立叶系数(单位模量),也可以测量相位型耦合。双频RV耦合系数基于先前的工作:二阶双谱,即双频相干(Thomson 1982; Haykin&Thomson 1998);以及RV系数(Escoufier 1973); Gorrostieta等人(2012);和Pascual-Marqui等人(2011)。本文介绍了这一新措施,并概述了相关的统计检验。 “双频RV耦合系数”的新颖方面是:(1)它可以应用于两个多元时间序列; (2)该方法不限于单个离散频率,此外,通过适当的多元统计方法对频带进行处理; (3)该方法利用了RV系数对复数值多元数据的新颖概括; (4)获得了对RV相干性的实,虚协方差贡献,从而允许定义“滞后耦合”量度,该量度受估计皮层电神经元活动的低空间分辨率的影响最小。

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