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Functions of the human frontoparietal attention network: Evidence from neuroimaging.人类额顶叶注意网络的功能:来自神经影像学的证据。
Curr Opin Behav Sci. 2015 Feb;1:32-39. doi: 10.1016/j.cobeha.2014.08.003. Epub 2014 Aug 30.
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Neural correlates of spatial and nonspatial attention determined using intracranial electroencephalographic signals in humans.利用人类颅内脑电图信号确定空间和非空间注意力的神经关联。
Hum Brain Mapp. 2016 Aug;37(8):3041-54. doi: 10.1002/hbm.23225. Epub 2016 Apr 29.
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Assessing Granger Causality in Electrophysiological Data: Removing the Adverse Effects of Common Signals via Bipolar Derivations.评估电生理数据中的格兰杰因果关系:通过双极导联消除共同信号的不利影响。
Front Syst Neurosci. 2016 Jan 20;9:189. doi: 10.3389/fnsys.2015.00189. eCollection 2015.
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A Tutorial Review of Functional Connectivity Analysis Methods and Their Interpretational Pitfalls.功能连接性分析方法及其解释误区的教程式综述
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Inferior-frontal cortex phase synchronizes with the temporal-parietal junction prior to successful change detection.在成功进行变化检测之前,额下回相位与颞顶联合区同步。
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The roles of cortical oscillations in sustained attention.皮层振荡在持续注意中的作用。
Trends Cogn Sci. 2015 Apr;19(4):188-95. doi: 10.1016/j.tics.2015.02.004. Epub 2015 Mar 9.
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Occipitoparietal alpha-band responses to the graded allocation of top-down spatial attention.枕顶叶α波对自上而下空间注意的分级分配的反应。
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Frequency-specific mechanism links human brain networks for spatial attention.频率特异性机制连接人类大脑空间注意网络。
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Dorsal and ventral attention systems: distinct neural circuits but collaborative roles.背侧和腹侧注意系统:不同的神经回路但协作作用。
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利用人类颅内脑电图信号研究空间注意与非空间注意的θ相干性差异。

Differences in theta coherence between spatial and nonspatial attention using intracranial electroencephalographic signals in humans.

机构信息

Department of Biomedical Engineering, Hanyang University, Seoul, Korea.

Department of neurology, Seongnam Center of Senior Health, Seongnam, Gyeonggi-do, Korea.

出版信息

Hum Brain Mapp. 2019 Jun 1;40(8):2336-2346. doi: 10.1002/hbm.24526. Epub 2019 Jan 15.

DOI:10.1002/hbm.24526
PMID:30648326
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6865857/
Abstract

A number of previous studies revealed the importance of the frontoparietal network for attention and preparatory top-down control. Here, we investigated the theta (7-9 Hz) coherence of the right frontoparietal networks to explore the differences in connectivity changes for the right frontoparietal regions during spatial attention (i.e., attention to a specific location rather than a specific feature) and nonspatial attention (i.e., attention to a specific feature rather than a specific location) tasks. The theta coherence in both tasks was primarily maintained at a preparatory state, decreases after stimulus onset, and recovers to the level of the preparatory state after the response time. However, the theta coherence of the frontoparietal network during spatial attention was immediately maintained after cue-onset, whereas for the case of nonspatial attention, it was immediately decreased after cue-onset. In addition, the connectivity of the right frontoparietal network, including the middle frontal gyrus and superior parietal lobe, were significantly higher for spatial attention rather than for nonspatial attention, suggesting that the dorsal parts of right frontoparietal network are more engaged in spatial-specific attention from the preparatory state. These findings also suggest that these two attention systems involve the use of different regional connectivity patterns, not only in the cognitive state, but in the preparatory state as well.

摘要

先前的一些研究揭示了额顶网络对于注意力和预备性自上而下控制的重要性。在这里,我们研究了右额顶网络的θ(7-9 Hz)相干性,以探讨在空间注意(即关注特定位置而不是特定特征)和非空间注意(即关注特定特征而不是特定位置)任务中,右额顶区域的连通性变化差异。在这两个任务中,θ相干性主要保持在预备状态,在刺激开始后下降,并在反应时间后恢复到预备状态的水平。然而,在空间注意任务中,额顶网络的θ相干性在提示出现后立即保持,而在非空间注意的情况下,它在提示出现后立即下降。此外,右额顶网络的连通性,包括额中回和顶上回,对于空间注意明显高于非空间注意,这表明右侧额顶网络的背侧部分在预备状态下更专注于空间特异性注意。这些发现还表明,这两个注意系统不仅在认知状态下,而且在预备状态下,都涉及使用不同的区域连通模式。