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Varieties of semantic cognition revealed through simultaneous decomposition of intrinsic brain connectivity and behaviour

机译:语义认知品种通过同时分解内在脑连接和行为揭示

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Abstract Contemporary theories assume that semantic cognition emerges from a neural architecture in which different component processes are combined to produce aspects of conceptual thought and behaviour. In addition to the state-level, momentary variation in brain connectivity, individuals may also differ in their propensity to generate particular configurations of such components, and these trait-level differences may relate to individual differences in semantic cognition. We tested this view by exploring how variation in intrinsic brain functional connectivity between semantic nodes in fMRI was related to performance on a battery of semantic tasks in 154 healthy participants. Through simultaneous decomposition of brain functional connectivity and semantic task performance, we identified distinct components of semantic cognition at rest. In a subsequent validation step, these data-driven components demonstrated explanatory power for neural responses in an fMRI-based semantic localiser task and variation in self-generated thoughts during the resting-state scan. Our findings showed that good performance on harder semantic tasks was associated with relative segregation at rest between frontal brain regions implicated in controlled semantic retrieval and the default mode network. Poor performance on easier tasks was linked to greater coupling between the same frontal regions and the anterior temporal lobe; a pattern associated with deliberate, verbal thematic thoughts at rest. We also identified components that related to qualities of semantic cognition: relatively good performance on pictorial semantic tasks was associated with greater separation of angular gyrus from frontal control sites and greater integration with posterior cingulate and anterior temporal cortex. In contrast, good speech production was linked to the separation of angular gyrus, posterior cingulate and temporal lobe regions. Together these data show that quantitative and qualitative variation in semantic cognition across individuals emerges from variations in the interaction of nodes within distinct functional brain networks. Highlights ? Brain connectivity at rest is related to performance in semantic tasks. ? Interactions between semantic nodes describe varieties of semantic cognition. ? Identified patterns explain brain activity in an fMRI task and thoughts at rest. ? Results support the component process account of semantic cognition.
机译:摘要当代理论假设是从神经结构中出现的语义认知,其中不同的组件过程被组合以产生概念思想和行为的方面。除了状态级,脑连接的瞬时变化外,个体也可以倾向于产生这种组件的特定配置的倾向,并且这些特征差异可能与语义认知的个体差异有关。我们通过探索FMRI中的语义节点之间的内在大脑功能连接的变化与154个健康参与者的语义任务电池的性能有关,测试了这个视图。通过同时分解脑功能连通性和语义任务性能,我们确定了休息时的语义认知的不同组成部分。在随后的验证步骤中,这些数据驱动的组件在基于FMRI的语义本地化学机构任务中展示了神经响应的解释性,并且在静止状态扫描期间自我产生的思想的变化。我们的调查结果表明,在涉及受控语义检索和默认模式网络中涉及的正脑区域之间的相对隔离与静止的相对偏析有关。更容易任务的性能不佳与相同的正面区域和前颞叶之间的更大耦合;与刻意,口头专题思想相关的模式。我们还确定了与语义认知品质相关的组成部分:图像语义任务的表现相对良好,与来自正面控制位点的角度回气的更大分离相关,以及与后筒和前型时颞皮质的更大集成。相比之下,良好的语音产量与角度转象的分离有关,后铰链和颞叶区域。这些数据集中表明,各个人的语义认知的定量和定性变化从不同的功能性脑网络中的节点相互作用的变化出现。强调 ?休息的大脑连接与语义任务中的性能有关。还是语义节点之间的相互作用描述了语义认知品种。还是确定的模式在FMRI任务和休息中的思想中解释了大脑活动。还是结果支持语义认知的组件过程帐户。

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