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Cortical networks for rotational uncertainty effect in mental rotation task by partial directed coherence analysis of EEG

机译:EEG部分定向相干性分析的精神旋转任务中的旋转不确定性效应的皮质网络

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Partial directed coherence (PDC) as a frequency-domain representation of Granger casuality (GC) could detect both strength and direction of cortical interactions by multivari-ate autoregressive (MVAR) model of electroencephalography (EEG). In the present study, we investigate the underlying neural networks mechanisms of “rotational uncertainty effect” during mental rotation (MR) task by PDC analysis of multichannel EEG signals before and after the visual stimuli presented, we found that (i) temporally the “rotational uncertainty effect” involved an activated network before the visual stimuli presented, which could also affect the cognitive process of MR later; (ii) the causality functional connectivity network indicated that the bi-directional frontal ⇀↽ parietal networks played critical roles in maintaining the readiness during the MR task. These findings suggest that functional networks of un-cued preparation before visual stimuli presented are worth to be paid more attention. And these networks provide crucial casuality information to understand the neural mechanism for “rotational uncertainty effect” in MR task.
机译:如格兰杰因果(GC)的频域表示可以通过同时检测强度和皮质相互作用的方向局部定向的一致性(PDC)multivari-吃脑电图的自回归(MVAR)模型(EEG)。在本研究中,我们调查了在视觉刺激之前和之后的Multichannel EEG信号的PDC分析期间“旋转不确定性效应”的潜在神经网络机制在视觉刺激之前和之后,我们发现(i)暂时“旋转”不确定性效果“在呈现的视觉刺激之前涉及激活的网络,这也可能影响先生先生的认知过程; (ii)因果关系功能连接网络表明,双向正面⇀↽个子网在先生任务期间维护准备的关键作用。这些研究结果表明,在视觉刺激之前,在呈现的无效准备的功能网络值得更加关注。这些网络提供了重要的伤亡信息,以了解先生任务中“旋转不确定性效应”的神经机制。

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