首页> 外文会议>International Conference on Independent Component Analysis and Signal Separation >Top-Down Versus Bottom-Up Processing in the Human Brain: Distinct Directional Influences Revealed by Integrating SOBI and Granger Causality
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Top-Down Versus Bottom-Up Processing in the Human Brain: Distinct Directional Influences Revealed by Integrating SOBI and Granger Causality

机译:自上而下与人类大脑的自下而上的处理:通过整合Sobi和Granger因果关系揭示了独特的定向影响

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Top-down and bottom-up processing are two distinct yet highly interactive modes of neuronal activity underlying normal and abnormal human cognition. Here we characterize the dynamic processes that contribute to these two modes of cognitive operation. We used a blind source separation algorithm called second-order blind identification (SOBI [1]) to extract from high-density scalp EEG (128 channels) two components that index neuronal activity in two distinct local networks: one in the occipital lobe and one in the frontal lobe. We then applied Granger causality analysis to the SOBI-recovered neuronal signals from these two local networks to characterize feed-forward and feedback influences between them. With three repeated observations made at least one week apart, we show that feed-forward influence is dominated by alpha while feedback influence is dominated by theta band activity and that this direction-selective dominance pattern is jointly modulated by situational familiarity and demand for visual processing.
机译:自上而下和自下而上的处理是正常和异常的人类认知潜在的两个神经元活动模式。在这里,我们表征了有助于这两种认知操作模式的动态过程。我们使用称为二阶盲识别(SOBI [1])的盲源分离算法,以从高密度头皮EEG(128通道)中提取两个分别在两个不同的本地网络中的神经元活动:一个在枕骨叶中的一个在额叶。然后,我们将Granger因果关系分析应用于来自这两个本地网络的Sobi恢复的神经元信号,以表征它们之间的前馈和反馈影响。通过三个重复的观察分开,我们表明前馈影响由α主导,而反馈影响由Theta带活动主导,并且这种方向选择性优势模式通过态度熟悉和对视觉处理的需求共同调制。

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