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Directed Functional Brain Connectivity Based on EEG Source Imaging: Methodology and Application to Temporal Lobe Epilepsy

机译:基于EEG源成像的定向功能性大脑连通性:方法和在颞叶癫痫中的应用

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Objective: The importance of functional brain connectivity to study physiological and pathological brain activity has been widely recognized. Here, we aimed to 1) review a methodological pipeline to investigate directed functional connectivity between brain regions using source signals derived from high-density EEG; 2) elaborate on some methodological challenges; and 3) apply this pipeline to temporal lobe epilepsy (TLE) patients and healthy controls to investigate directed functional connectivity differences in the theta and beta frequency bands during EEG epochs without visible pathological activity. Methods: The methodological pipeline includes: EEG acquisition and preprocessing, electrical-source imaging (ESI) using individual head models and distributed inverse solutions, parcellation of the gray matter in regions of interest, fixation of the dipole orientation for each region, computation of the spectral power in the source space, and directed functional connectivity estimation using Granger-causal modeling. We specifically analyzed how the signal-to-noise ratio (SNR) changes using different approaches for the dipole orientation fixation. We applied this pipeline to 20 left TLE patients, 20 right TLE patients, and 20 healthy controls. Results: Projecting each dipole to the predominant dipole orientation leads to a threefold SNR increase as compared to the norm of the dipoles. By comparing connectivity in TLE versus controls, we found significant frequency-specific outflow differences in physiologically plausible regions. Conclusion: The results suggest that directed functional connectivity derived from ESI can help better understand frequency-specific resting-state network alterations underlying focal epilepsy. Significance: EEG-based directed functional connectivity could contribute to the search of new biomarkers of this disorder.
机译:目的:功能性大脑连通性对于研究生理和病理性大脑活动的重要性已得到广泛认可。在这里,我们的目的是:1)回顾使用来自高密度脑电图的源信号研究大脑区域之间定向功能连通性的方法流程; 2)详细阐述一些方法上的挑战;和3)将此管道应用于颞叶癫痫(TLE)患者和健康对照者,以研究在无明显病理活动的EEG时期,θ和β频段的定向功能连接差异。方法:方法线包括:脑电图采集和预处理,使用单个头部模型和分布式逆解的电源成像(ESI),感兴趣区域中的灰质分解,每个区域的偶极子方向固定,计算源空间中的频谱功率,以及使用格兰杰因果模型进行定向功能连通性估计。我们专门分析了使用不同方法进行偶极子定位的信噪比(SNR)的变化。我们将此管道应用于20位左TLE患者,20位右TLE患者和20位健康对照。结果:将每个偶极子投射到主要偶极子定向会导致信噪比与偶极子范数相比增加三倍。通过比较TLE和对照组的连通性,我们发现了在生理上合理的区域内特定频率的显着流出差异。结论:结果表明,源自ESI的定向功能连接性可以帮助更好地了解局灶性癫痫发作背后特定频率的静止状态网络改变。意义:基于脑电图的定向功能连接性可能有助于寻找该疾病的新生物标志物。

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