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A Linear Model of Phase-Dependent Power Correlations in Neuronal Oscillations

机译:神经元振荡中相位相关功率相关的线性模型

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摘要

Recently, it has been suggested that effective interactions between two neuronal populations are supported by the phase difference between the oscillations in these two populations, a hypothesis referred to as “communication through coherence” (CTC). Experimental work quantified effective interactions by means of the power correlations between the two populations, where power was calculated on the local field potential and/or multi-unit activity. Here, we present a linear model of interacting oscillators that accounts for the phase dependency of the power correlation between the two populations and that can be used as a reference for detecting non-linearities such as gain control. In the experimental analysis, trials were sorted according to the coupled phase difference of the oscillators while the putative interaction between oscillations was taking place. Taking advantage of the modeling, we further studied the dependency of the power correlation on the uncoupled phase difference, connection strength, and topology. Since the uncoupled phase difference, i.e., the phase relation before the effective interaction, is the causal variable in the CTC hypothesis we also describe how power correlations depend on that variable. For uni-directional connectivity we observe that the width of the uncoupled phase dependency is broader than for the coupled phase. Furthermore, the analytical results show that the characteristics of the phase dependency change when a bidirectional connection is assumed. The width of the phase dependency indicates which oscillation frequencies are optimal for a given connection delay distribution. We propose that a certain width enables a stimulus-contrast dependent extent of effective long-range lateral connections.
机译:最近,已经提出,这两个神经元群之间的振荡之间的相位差支持了两个神经元群之间的有效交互作用,这一假设被称为“通过相干通信”(CTC)。实验工作通过两个种群之间的功率相关性量化了有效的相互作用,其中功率是根据局部场势和/或多单元活动计算的。在这里,我们提出了一个相互作用的振荡器的线性模型,该模型说明了两个总体之间的功率相关性的相位依赖性,并且可以用作检测非线性(例如增益控制)的参考。在实验分析中,根据振荡器的耦合相位差对试验进行分类,同时进行振荡之间的假定相互作用。利用建模的优势,我们进一步研究了功率相关性对未耦合相位差,连接强度和拓扑的依赖性。由于未耦合的相位差(即有效交互之前的相位关系)是CTC假设中的因果变量,因此我们还描述了功率相关如何依赖于该变量。对于单向连通性,我们观察到非耦合相位依赖性的宽度比耦合相位的宽度宽。此外,分析结果表明,当假设双向连接时,相位相关性的特性会发生变化。相位相关性的宽度指示对于给定的连接延迟分布,哪些振荡频率最佳。我们建议一定的宽度可以使有效的远程横向连接的刺激与对比度有关。

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