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在额顶叶注意力网络中发现的空间方向性。

Spatial Directionality Found in Frontal-Parietal Attentional Networks.

作者信息

Hossain Gahangir, Myers Mark H, Kozma Robert

机构信息

Electrical Engineering and Computer Science, Texas A&M University-Kingsville, Kingsville, TX, USA.

Anatomy and Neurobiology, University of Tennessee Health Science Center, Memphis, TN, USA.

出版信息

Neurosci J. 2018 Aug 30;2018:7879895. doi: 10.1155/2018/7879895. eCollection 2018.

Abstract

Research in last few years on neurophysiology focused on several areas across the cortex during cognitive processing to determine the dominant direction of electrical activity. However, information about the frequency and direction of episodic synchronization related to higher cognitive functions remain unclear. Our aim was to determine whether neural oscillations carry perceptual information as spatial patterns across the cortex, which could be found in the scalp EEG of human subjects while being engaged in visual sensory stimulation. Magnitude squared coherence of neural activity during task states that "finger movement with Eyes Open (EO) or Eyes Wandering (EW)" among all electrode combinations has the smallest standard deviation and variations. Additionally, the highest coherence among the electrode pairs occurred between alpha (8-12 Hz) and beta (12-16 Hz) ranges. Our results indicate that alpha rhythms seem to be regulated during activities when an individual is focused on a given task. Beta activity, which has also been implicated in cognitive processing to neural oscillations, is seen in our work as a manner to integrate external stimuli to higher cognitive activation. We have found spatial network organization which served to classify the EEG epochs in time with respect to the stimuli class. Our findings suggest that cortical neural signaling utilizes alpha-beta phase coupling during cognitive processing states, where beta activity has been implicated in shifting cognitive states. Our approach has found frontoparietal attentional mechanisms in shifting brain states which could provide new insights into understanding the global cerebral dynamics of intentional activity and reflect how the brain allocates resources during tasking and cognitive processing states.

摘要

过去几年,神经生理学研究聚焦于认知过程中整个皮层的几个区域,以确定电活动的主导方向。然而,与更高认知功能相关的情景同步的频率和方向信息仍不明确。我们的目的是确定神经振荡是否作为跨皮层的空间模式携带感知信息,这可以在人类受试者进行视觉感觉刺激时的头皮脑电图中找到。在“睁眼(EO)或眼球漫游(EW)时的手指运动”等任务状态下,所有电极组合之间神经活动的幅度平方相干性具有最小的标准差和变化。此外,电极对之间的最高相干性出现在α(8 - 12赫兹)和β(12 - 16赫兹)频段之间。我们的结果表明,当个体专注于给定任务时,α节律似乎在活动期间受到调节。β活动也与神经振荡的认知处理有关,在我们的研究中,它被视为一种将外部刺激整合到更高认知激活的方式。我们发现了空间网络组织,该组织用于根据刺激类别及时对脑电图时段进行分类。我们的研究结果表明,在认知处理状态下,皮层神经信号利用α - β相位耦合,其中β活动与认知状态的转变有关。我们的方法在大脑状态转换中发现了额顶叶注意机制,这可能为理解有意活动的全球脑动力学提供新的见解,并反映大脑在任务执行和认知处理状态下如何分配资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa9c/6136485/647ffb7e0efc/NEUROSCIENCE2018-7879895.001.jpg

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