Language Tasks and the Network Control Role of the Left Inferior Frontal Gyrus

判决 额下回 可控性 计算机科学 网络可控性 背景(考古学) CTB公司 选择(遗传算法) 任务(项目管理) 心理学 认知心理学 认知 磁刺激 人工智能 神经科学 数学 经济 古生物学 中间性中心性 管理 组合数学 生物 中心性 初级运动皮层 应用数学 刺激
作者
John D. Medaglia,Denise Y. Harvey,Apoorva Kelkar,Jared P. Zimmerman,Joely A. Mass,Danielle S. Bassett,Roy H. Hamilton
出处
期刊:ENeuro [Society for Neuroscience]
卷期号:8 (5): ENEURO.0382-20.2021 被引量:3
标识
DOI:10.1523/eneuro.0382-20.2021
摘要

Abstract

Recent work has combined cognitive neuroscience and control theory to make predictions about cognitive control functions. Here, we test a link between whole-brain theories of semantics and the role of the left inferior frontal gyrus (LIFG) in controlled language performance using network control theory (NCT), a branch of systems engineering. Specifically, we examined whether two properties of node controllability, boundary and modal controllability, were linked to semantic selection and retrieval on sentence completion and verb generation tasks. We tested whether the controllability of the left IFG moderated language selection and retrieval costs and the effects of continuous θ burst stimulation (cTBS), an inhibitory form of transcranial magnetic stimulation (TMS) on behavior in 41 human subjects (25 active, 16 sham). We predicted that boundary controllability, a measure of the theoretical ability of a node to integrate and segregate brain networks, would be linked to word selection in the contextually-rich sentence completion task. In contrast, we expected that modal controllability, a measure of the theoretical ability of a node to drive the brain into specifically hard-to-reach states, would be linked to retrieval on the low-context verb generation task. Boundary controllability was linked to selection and to the ability of TMS to reduce response latencies on the sentence completion task. In contrast, modal controllability was not linked to performance on the tasks or TMS effects. Overall, our results suggest a link between the network integrating role of the LIFG and selection and the overall semantic demands of sentence completion.
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