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前额皮质中关系推理的层次结构。

A hierarchy for relational reasoning in the prefrontal cortex.

机构信息

Center for Brain Health, The University of Texas at Dallas, USA.

出版信息

Cortex. 2011 May;47(5):588-97. doi: 10.1016/j.cortex.2010.04.008. Epub 2010 May 27.

Abstract

The human brain possesses a unique capacity to reason about abstract relationships among items in our environment. The neural organization of reasoning abilities has remained elusive. Two approaches toward investigating human reasoning have involved studying visuo-spatial reasoning abilities and studying analogical reasoning. These approaches have both revealed anterior prefrontal cortex (PFC) involvement, but no prior studies have jointly investigated these two forms of reasoning to understand any potential convergence of activation within the PFC. Using fMRI, we tested the extent to which these two forms of reasoning (visuo-spatial and analogical) overlap in PFC activation. We conducted a visuo-spatial reasoning task that required processing multiple changes across three abstract pictures. This task activated a progressively anterior series of PFC regions when multiple relations had to be integrated. We also conducted a four-term analogy task in a stage-wise manner and compared results from this task to semantic and perceptual control conditions that did not require integrating relations across the problems. We found greater activation for analogical reasoning in the series of PFC regions that were sequentially involved in the visuo-spatial reasoning task. These findings indicate that stages of neural processing overlap for different domains within human reasoning. The pattern of differences across the analogy task suggests a hierarchical organization for relational reasoning across domains in which posterior frontal cortex is active across concrete reasoning tasks, while progressively more anterior regions are recruited to process increasingly abstract representations in reasoning.

摘要

人类大脑具有推理环境中项目之间抽象关系的独特能力。推理能力的神经组织仍然难以捉摸。两种研究人类推理的方法涉及研究视空间推理能力和类比推理。这两种方法都揭示了额前皮质(PFC)的参与,但以前没有研究同时研究这两种推理形式,以了解 PFC 内激活的任何潜在收敛。使用 fMRI,我们测试了这两种推理形式(视空间和类比)在 PFC 激活中的重叠程度。我们进行了一项视空间推理任务,要求在三张抽象图片上处理多个变化。当必须整合多个关系时,这个任务会激活一系列逐渐靠前的 PFC 区域。我们还以分阶段的方式进行了四项类比任务,并将结果与不需要整合问题之间关系的语义和感知控制条件进行了比较。我们发现类比推理在视空间推理任务中依次涉及的一系列 PFC 区域中具有更高的激活。这些发现表明,不同领域的人类推理的神经处理阶段存在重叠。类比任务中的差异模式表明,关系推理在不同领域具有层次组织,其中后额叶皮质在具体推理任务中活跃,而越来越多的前区域被招募来处理推理中越来越抽象的表示。

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