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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >The Effect of Connectivity on EEG Rhythms, Power Spectral Density and Coherence Among Coupled Neural Populations: Analysis With a Neural Mass Model
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The Effect of Connectivity on EEG Rhythms, Power Spectral Density and Coherence Among Coupled Neural Populations: Analysis With a Neural Mass Model

机译:连通性对耦合神经群体中脑电节律,功率谱密度和相干性的影响:神经质量模型的分析

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摘要

In the present work, a neural mass model consisting of four interconnected neural groups (pyramidal neurons, excitatory interneurons, inhibitory interneurons with slow synaptic kinetics, and inhibitory interneurons with fast synaptic kinetics) is used to investigate the mechanisms which cause the appearance of multiple rhythms in EEG spectra, and to assess how these rhythms can be affected by connectivity among different populations. In particular, we analyze a circuit, composed of three interconnected populations, each with a different synaptic kinetics (hence, with a different intrinsic rhythm). Results demonstrate that a single population can exhibit many different simultaneous rhythms, provided that some of these come from external sources (for instance, from remote regions). Analysis of coherence, and of the position of peaks in power spectral density, reveals important information on the possible connections among populations, especially useful to follow temporal changes in connectivity. Subsequently, the model is validated by comparing the power spectral density simulated in one population with that computed in the controlateral cingulated cortex (a region involved in motion preparation) during a right foot movement task in four normal subjects. The model is able to simulate real spectra quite well with only moderate parameter changes within the subject. In perspective, the results may be of value for a deeper comprehension of mechanism causing EEGs rhythms, for the study of brain connectivity and for the test of neurophysiological hypotheses.
机译:在目前的工作中,由四个相互连接的神经组(金字塔神经元,兴奋性中间神经元,具有缓慢突触动力学的抑制性中间神经元和具有快速突触动力学的抑制性中间神经元)组成的神经质量模型用于研究引起多种节律出现的机制。在脑电图谱中进行评估,并评估这些节奏如何受到不同人群之间的连通性的影响。特别是,我们分析了一个电路,该电路由三个相互关联的种群组成,每个种群具有不同的突触动力学(因此,具有不同的内在节奏)。结果表明,单个种群可以表现出许多不同的同时节律,但前提是其中一些来自外部来源(例如,来自偏远地区)。对相干性以及功率谱密度中峰值位置的分析揭示了有关总体之间可能存在的联系的重要信息,这对于跟踪连通性的时间变化特别有用。随后,通过在四个正常受试者的右脚运动任务中,将一个群体中模拟的功率谱密度与在控制侧扣带回皮层(参与运动准备的区域)中计算的功率谱密度进行比较,从而验证模型。该模型仅在对象内部进行适度的参数更改即可很好地模拟真实光谱。从角度上讲,该结果对于更深入地理解引起脑电图节律的机制,研究大脑的连通性以及检验神经生理学假设可能具有价值。

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