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The Network Architecture of Cortical Processing in Visuo-spatial Reasoning

机译:视觉空间推理中皮层处理的网络架构

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摘要

Reasoning processes have been closely associated with prefrontal cortex (PFC), but specifically emerge from interactions among networks of brain regions. Yet it remains a challenge to integrate these brain-wide interactions in identifying the flow of processing emerging from sensory brain regions to abstract processing regions, particularly within PFC. Functional magnetic resonance imaging data were collected while participants performed a visuo-spatial reasoning task. We found increasing involvement of occipital and parietal regions together with caudal-rostral recruitment of PFC as stimulus dimensions increased. Brain-wide connectivity analysis revealed that interactions between primary visual and parietal regions predominantly influenced activity in frontal lobes. Caudal-to-rostral influences were found within left-PFC. Right-PFC showed evidence of rostral-to-caudal connectivity in addition to relatively independent influences from occipito-parietal cortices. In the context of hierarchical views of PFC organization, our results suggest that a caudal-to-rostral flow of processing may emerge within PFC in reasoning tasks with minimal top-down deductive requirements.
机译:推理过程与前额叶皮层(PFC)密切相关,但具体是通过大脑区域网络之间的相互作用而出现的。然而,在识别从感觉性大脑区域到抽象处理区域(特别是在PFC内)出现的处理流程时,整合这些全脑交互仍然是一项挑战。在参与者执行视觉空间推理任务时收集功能性磁共振成像数据。我们发现随着刺激范围的增加,枕叶和顶叶区域的参与度越来越高,PFC的尾-尾部募集也越来越多。全脑的连通性分析表明,主要视觉区域和顶叶区域之间的相互作用主要影响额叶的活动。在左侧PFC内发现了从尾到尾的影响。右PFC除了枕骨顶皮质的相对独立的影响外,还显示出鼻端到尾端的连通性。在PFC组织的分层视图的背景下,我们的结果表明,在以最小的自上而下的演绎要求进行推理的任务中,PFC内可能会出现从尾到尾的加工流。

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