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脑电功能连接度量 wPLI 和 wSMI 可解释大脑功能交互的不同类型。

EEG functional connectivity metrics wPLI and wSMI account for distinct types of brain functional interactions.

机构信息

MoMiLab Research Unit, IMT School for Advanced Studies Lucca, Lucca, Italy.

Department of Psychology, University of Cambridge, Cambridge, United Kingdom.

出版信息

Sci Rep. 2019 Jun 20;9(1):8894. doi: 10.1038/s41598-019-45289-7.

Abstract

The weighted Phase Lag Index (wPLI) and the weighted Symbolic Mutual Information (wSMI) represent two robust and widely used methods for MEG/EEG functional connectivity estimation. Interestingly, both methods have been shown to detect relative alterations of brain functional connectivity in conditions associated with changes in the level of consciousness, such as following severe brain injury or under anaesthesia. Despite these promising findings, it was unclear whether wPLI and wSMI may account for distinct or similar types of functional interactions. Using simulated high-density (hd-)EEG data, we demonstrate that, while wPLI has high sensitivity for couplings presenting a mixture of linear and nonlinear interdependencies, only wSMI can detect purely nonlinear interaction dynamics. Moreover, we evaluated the potential impact of these differences on real experimental data by computing wPLI and wSMI connectivity in hd-EEG recordings of 12 healthy adults during wakefulness and deep (N3-)sleep, characterised by different levels of consciousness. In line with the simulation-based findings, this analysis revealed that both methods have different sensitivity for changes in brain connectivity across the two vigilance states. Our results indicate that the conjoint use of wPLI and wSMI may represent a powerful tool to study the functional bases of consciousness in physiological and pathological conditions.

摘要

加权相位滞后指数(wPLI)和加权符号互信息(wSMI)是两种用于 MEG/EEG 功能连接估计的强大且广泛应用的方法。有趣的是,这两种方法都已被证明可检测与意识水平变化相关的条件下大脑功能连接的相对改变,例如严重脑损伤或麻醉下。尽管有这些有希望的发现,但尚不清楚 wPLI 和 wSMI 是否可以解释不同或相似类型的功能相互作用。使用模拟高密度(hd-)EEG 数据,我们证明,虽然 wPLI 对呈现线性和非线性相互依赖混合的耦合具有高灵敏度,但只有 wSMI 可以检测纯粹的非线性相互作用动态。此外,我们通过在 12 名健康成年人的清醒和深度(N3-)睡眠期间的 hd-EEG 记录中计算 wPLI 和 wSMI 连接来评估这些差异对真实实验数据的潜在影响,清醒和深度(N3-)睡眠的意识水平不同。与基于模拟的发现一致,该分析表明,这两种方法对两个警觉状态下大脑连接变化的敏感性不同。我们的结果表明,wPLI 和 wSMI 的联合使用可能是研究生理和病理条件下意识功能基础的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec9f/6586889/71c2ff06fb22/41598_2019_45289_Fig1_HTML.jpg

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