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Donders is dead: cortical traveling waves and the limits of mental chronometry in cognitive neuroscience

机译:Donders死了:皮质行波和认知神经科学中的心理测年法的局限性

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An assumption nearly all researchers in cognitive neuroscience tacitly adhere to is that of space-time separability. Historically, it forms the basis of Donders' difference method, and to date, it underwrites all difference imaging and trial-averaging of cortical activity, including the customary techniques for analyzing fMRI and EEG/MEG data. We describe the assumption and how it licenses common methods in cognitive neuroscience; in particular, we show how it plays out in signal differencing and averaging, and how it misleads us into seeing the brain as a set of static activity sources. In fact, rather than being static, the domains of cortical activity change from moment to moment: Recent research has suggested the importance of traveling waves of activation in the cortex. Traveling waves have been described at a range of different spatial scales in the cortex; they explain a large proportion of the variance in phase measurements of EEG, MEG and ECoG, and are important for understanding cortical function. Critically, traveling waves are not space-time separable. Their prominence suggests that the correct frame of reference for analyzing cortical activity is the dynamical trajectory of the system, rather than the time and space coordinates of measurements. We illustrate what the failure of space-time separability implies for cortical activation, and what consequences this should have for cognitive neuroscience.
机译:几乎所有认知神经科学研究人员都默认遵循时空可分离性这一假设。从历史上看,它构成了Donders差异法的基础,迄今为止,它承保了所有差异成像和皮层活动的试验平均,包括用于分析fMRI和EEG / MEG数据的常规技术。我们描述了这种假设以及它如何许可认知神经科学中的常见方法。特别是,我们展示了它如何在信号差分和平均中发挥作用,以及如何误导我们将大脑视为一组静态活动源。实际上,皮层活动的范围不是一成不变的,而是随时间变化的:最近的研究表明,皮层激活行波的重要性。在皮层的一系列不同空间尺度上已经描述了行波。他们解释了脑电图,脑电图和脑电图的相位测量中很大一部分方差,对于理解皮层功能非常重要。至关重要的是,行波不是时空可分离的。他们的突出表明,分析皮层活动的正确参考系是系统的动态轨迹,而不是测量的时间和空间坐标。我们说明了时空可分离性的失败对皮层激活的暗示,以及这对认知神经科学的后果。

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