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A Generalized Framework for Quantifying the Dynamics of EEG Event-Related Desynchronization

机译:用于量化与脑电事件相关的失步动力学的通用框架

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Brains were built by evolution to react swiftly to environmental challenges. Thus, sensory stimuli must be processed ad hoc, i.e., independent—to a large extent—from the momentary brain state incidentally prevailing during stimulus occurrence. Accordingly, computational neuroscience strives to model the robust processing of stimuli in the presence of dynamical cortical states. A pivotal feature of ongoing brain activity is the regional predominance of EEG eigenrhythms, such as the occipital alpha or the pericentral mu rhythm, both peaking spectrally at 10 Hz. Here, we establish a novel generalized concept to measure event-related desynchronization (ERD), which allows one to model neural oscillatory dynamics also in the presence of dynamical cortical states. Specifically, we demonstrate that a somatosensory stimulus causes a stereotypic sequence of first an ERD and then an ensuing amplitude overshoot (event-related synchronization), which at a dynamical cortical state becomes evident only if the natural relaxation dynamics of unperturbed EEG rhythms is utilized as reference dynamics. Moreover, this computational approach also encompasses the more general notion of a “conditional ERD,” through which candidate explanatory variables can be scrutinized with regard to their possible impact on a particular oscillatory dynamics under study. Thus, the generalized ERD represents a powerful novel analysis tool for extending our understanding of inter-trial variability of evoked responses and therefore the robust processing of environmental stimuli.
机译:大脑是通过进化而建立的,可以快速应对环境挑战。因此,感觉刺激必须被临时处理,即在很大程度上独立于刺激发生期间偶然占主导的瞬时脑状态。因此,计算神经科学致力于在存在动态皮质状态的情况下对刺激的鲁棒处理进行建模。持续进行的大脑活动的关键特征是脑电图本征的区域优势,例如枕叶α或中央周围的心律,两者均在10 Hz处达到频谱峰值。在这里,我们建立了一种新颖的广义概念来测量事件相关的失步(ERD),这使人们能够在动态皮质状态下对神经振荡动力学进行建模。具体而言,我们证明,体感刺激首先导致ERD,然后产生振幅超调(事件相关的同步)的定型序列,只有在动态皮层状态下,只有使用不受干扰的EEG节奏的自然松弛动力学作为时,这种现象才会明显参考动态。此外,这种计算方法还包含“条件ERD”的更一般概念,通过该概念,可以对候选解释变量对所研究的特定振荡动力学的可能影响进行审查。因此,广义的ERD代表了强大的新颖分析工具,可扩展我们对诱发反应的试验间变异性的理解,从而扩展了对环境刺激的鲁棒处理。

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