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关系推理和符号距离效应的神经关联:顶叶皮层的参与。

Neural correlates of relational reasoning and the symbolic distance effect: involvement of parietal cortex.

机构信息

Wales Institute of Cognitive Neuroscience, School of Psychology, Cardiff University, Park Place, Cardiff, CF103AT Wales, UK.

出版信息

Neuroscience. 2010 Jun 16;168(1):138-48. doi: 10.1016/j.neuroscience.2010.03.052. Epub 2010 Apr 3.

Abstract

A novel, five-term relational reasoning paradigm was employed during functional magnetic resonance imaging to investigate neural correlates of the symbolic distance effect (SDE). Prior to scanning, participants learned a series of more-than (E>D>C>B>A) or less-than (A<B<C<D<E) ordered premise pairs. During scanning, inferential tests presented the premise pairs, adjacent, mutually entailed tasks (e.g., DA) and nonadjacent one-step (A<C, B<D, C<E, C>A, D>B and E>C) and two-step (A<D, B<E, D>A and E>B) combinatorial entailed tasks. In terms of brain activation, the SDE was identified in the inferior frontal cortex, dorsolateral prefrontal cortex, and bilateral parietal cortex with a graded activation pattern from adjacent to one-step and two-step relations. We suggest that this captures the behavioural SDE of increased accuracy and decreased reaction time from adjacent to two-step relations. One-step relations involving endpoints A or E resulted in greater parietal activation compared to one-step relations without endpoints. Novel contrasts found enhanced activation in right parietal and prefrontal cortices during mutually entailed tasks only for participants who had learned all less-than relations. Increased parietal activation was found for one-step tasks that were inconsistent with prior training. Overall, the findings demonstrate a crucial role for parietal cortex during relational reasoning with a spatially ordered array.

摘要

采用一种新颖的五条件关系推理范式,结合功能磁共振成像,研究了符号距离效应(SDE)的神经关联。在扫描之前,参与者学习了一系列有序的大于(E>D>C>B>A)或小于(A<B<C<D<E)前提对。在扫描过程中,推理测试呈现了前提对、相邻的、蕴涵的任务(例如,D<E 和 B>A)以及非相邻的一步(A<C、B<D、C<E、C>A、D>B 和 E>C)和两步(A<D、B<E、D>A 和 E>B)组合蕴涵任务。就大脑激活而言,SDE 被确定为在额下回、背外侧前额叶皮质和双侧顶叶皮质,其激活模式从相邻关系到一步和两步关系呈梯度变化。我们认为,这反映了从相邻关系到两步关系的准确性提高和反应时间减少的行为 SDE。涉及端点 A 或 E 的一步关系与没有端点的一步关系相比,导致更大的顶叶激活。对于那些学习了所有小于关系的参与者,只有在相互蕴涵的任务中才会发现右顶叶和前额叶皮质的增强激活。对于与先前训练不一致的一步任务,发现顶叶激活增加。总的来说,这些发现表明顶叶皮层在具有空间有序排列的关系推理中起着至关重要的作用。

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