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Unveiling the dynamic interplay between the hub- and spoke-components of the brains semantic system and its impact on human behaviour

机译:揭示大脑语义系统中枢和轮辐组件之间的动态相互作用及其对人类行为的影响

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摘要

The neural architecture of semantic knowledge comprises two key structures: (i) A set of widely dispersed regions, located adjacent to the sensorimotor cortices, serve as spokes that represent various modality-specific and context-dependent contents. (ii) The anterior-temporal lobe (ATL) serves as a hub that computes the nonlinear mappings required to transform modality-specific information into pan-modality, multifaceted concepts. Little is understood regarding whether neural dynamics between the hub and spokes might flexibly alter depending on the nature of a concept and how it impinges upon behaviour. Using fMRI, we demonstrate for the first time that the ATL serves as a ‘pivot’ which dynamically forms flexible long-range networks with cortical modules specialised for different domains (in the present case, the knowledge about actions and places). In two experiments, we manipulated semantic congruity and asked participants to recognise visually presented items. In Experiment 1 (dual-object displays), the ATL increased its functional coupling with the bilateral frontoparietal action-sensitive system when the objects formed a pair that permitted semantically meaningful action. In Experiment 2 (objects embedded in a scene), the ATL augmented its coupling with the retrosplenial cortex of the place-sensitive system when the objects and scene formed a semantically coherent ensemble. Causative connectivity revealed that, while communication between the hub and spokes was bidirectional, the hub's directional impact on spokes dwarfed the strength of the inverse spoke-to-hub connectivity. Furthermore, the size of behavioural congruity effects co-varied with the strength of neural coupling between the ATL hub and action- / place-related spokes, evident both at the within-individual level (the behavioural fluctuation across scanning runs) and between-individual level (the behavioural variation of between participants). Together, these findings have important implications for understanding the machinery that links neural dynamics with semantic cognition.
机译:语义知识的神经体系结构包括两个关键结构:(i)一组广泛分布的区域,位于感觉运动皮层附近,用作代表各种模态特定和上下文相关内容的辐条。 (ii)前颞叶(ATL)充当枢纽,计算将特定于模态的信息转换为泛模态,多方面概念所需的非线性映射。对于轮毂和轮辐之间的神经动力学是否会根据概念的性质及其对行为的影响灵活地变化,人们对此知之甚少。我们使用fMRI首次展示了ATL作为“枢纽”,它利用专门针对不同领域的皮层模块动态形成了灵活的远程网络(在当前情况下,是关于动作和位置的知识)。在两个实验中,我们操纵了语义一致性,并要求参与者识别视觉呈现的项目。在实验1(双对象显示)中,当对象形成允许语义上有意义的动作的一对时,ATL增强了其与双侧额顶额叶动作敏感系统的功能耦合。在实验2(将对象嵌入场景中)中,当对象和场景形成语义上一致的集合时,ATL增强了与位置敏感系统的后脾皮质的耦合。因果连通性表明,尽管集线器和辐条之间的通信是双向的,但集线器对辐条的定向影响使反向辐条到集线器连接的强度相形见war。此外,行为一致性影响的大小与ATL枢纽和动作/位置相关的辐条之间的神经耦合强度有关,在个体内部(扫描运行过程中的行为波动)和个体之间均很明显水平(参与者之间的行为差​​异)。总之,这些发现对于理解将神经动力学与语义认知联系起来的机制具有重要意义。

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