Dynamic functional connectivity in verbal cognitive control and word reading

IF 4.7 2区 医学 Q1 NEUROIMAGING NeuroImage Pub Date : 2024-09-23 DOI:10.1016/j.neuroimage.2024.120863
Kazuki Sakakura , Matthew Brennan , Masaki Sonoda , Takumi Mitsuhashi , Aimee F Luat , Neena I Marupudi , Sandeep Sood , Eishi Asano
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Abstract

Cognitive control processes enable the suppression of automatic behaviors and the initiation of appropriate responses. The Stroop color naming task serves as a benchmark paradigm for understanding the neurobiological model of verbal cognitive control. Previous research indicates a predominant engagement of the prefrontal and premotor cortex during the Stroop task compared to reading. We aim to further this understanding by creating a dynamic atlas of task-preferential modulations of functional connectivity through white matter. Patients undertook word-reading and Stroop tasks during intracranial EEG recording. We quantified task-related high-gamma amplitude modulations at 547 nonepileptic electrode sites, and a mixed model analysis identified regions and timeframes where these amplitudes differed between tasks. We then visualized white matter pathways with task-preferential functional connectivity enhancements at given moments. Word reading, compared to the Stroop task, exhibited enhanced functional connectivity in inter- and intra-hemispheric white matter pathways from the left occipital-temporal region 350–600 ms before response, including the posterior callosal fibers as well as the left vertical occipital, inferior longitudinal, inferior fronto-occipital, and arcuate fasciculi. The Stroop task showed enhanced functional connectivity in the pathways from the left middle-frontal pre-central gyri, involving the left frontal u-fibers and anterior callosal fibers. Automatic word reading largely utilizes the left occipital-temporal cortices and associated white matter tracts. Verbal cognitive control predominantly involves the left middle frontal and precentral gyri and its connected pathways. Our dynamic tractography atlases may serve as a novel resource providing insights into the unique neural dynamics and pathways of automatic reading and verbal cognitive control.
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言语认知控制和单词阅读的动态功能连接
认知控制过程能够抑制自动行为,并启动适当的反应。Stroop 颜色命名任务是了解言语认知控制神经生物学模型的基准范例。以往的研究表明,与阅读相比,Stroop 任务中前额叶和前运动皮层的参与度更高。我们的目的是通过创建白质功能连接的任务偏好调节动态图谱,进一步加深对这一问题的理解。患者在进行颅内脑电图记录时,会执行单词阅读和 Stroop 任务。我们对 547 个非癫痫电极位点上与任务相关的高伽马振幅调制进行了量化,并通过混合模型分析确定了这些振幅在不同任务间存在差异的区域和时间段。然后,我们对在特定时刻具有任务偏好功能连接增强的白质通路进行了可视化。与 Stroop 任务相比,单词阅读在反应前 350-600 毫秒显示出左枕颞区半球间和半球内白质通路的功能连接增强,包括后胼胝体纤维以及左垂直枕、下纵、下前枕和弓状筋膜。Stroop任务显示,来自左侧中额叶前中央回的通路的功能连接性增强,涉及左侧额叶u纤维和前胼胝体纤维。自动文字阅读主要利用了左枕颞皮层和相关的白质束。言语认知控制主要涉及左侧额叶中部和前中央回及其连接的通路。我们的动态束成像图谱可以作为一种新的资源,让人们深入了解自动阅读和言语认知控制的独特神经动态和路径。
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来源期刊
NeuroImage
NeuroImage 医学-核医学
CiteScore
11.30
自引率
10.50%
发文量
809
审稿时长
63 days
期刊介绍: NeuroImage, a Journal of Brain Function provides a vehicle for communicating important advances in acquiring, analyzing, and modelling neuroimaging data and in applying these techniques to the study of structure-function and brain-behavior relationships. Though the emphasis is on the macroscopic level of human brain organization, meso-and microscopic neuroimaging across all species will be considered if informative for understanding the aforementioned relationships.
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