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关系复杂性在数字归纳推理过程中调节前额叶皮层的活动:一项功能磁共振成像研究。

Relational complexity modulates activity in the prefrontal cortex during numerical inductive reasoning: an fMRI study.

作者信息

Feng Xiao, Peng Li, Chang-Quan Long, Yi Lei, Hong Li

机构信息

Department of Teacher Education, Shanxi Normal University, Linfen 041004, China; Key laboratory for Cognition and Personality of Ministry of Education, Southwest University, Chongqing 400715, China.

Research Centre for Brain Function and Psychological Science, Shenzhen University, Shenzhen 518060, China.

出版信息

Biol Psychol. 2014 Sep;101:61-8. doi: 10.1016/j.biopsycho.2014.06.005. Epub 2014 Jul 1.

Abstract

Most previous studies investigating relational reasoning have used visuo-spatial materials. This fMRI study aimed to determine how relational complexity affects brain activity during inductive reasoning, using numerical materials. Three numerical relational levels of the number series completion task were adopted for use: 0-relational (e.g., "23 23 23"), 1-relational ("32 30 28") and 2-relational ("12 13 15") problems. The fMRI results revealed that the bilateral dorsolateral prefrontal cortex (DLPFC) showed enhanced activity associated with relational complexity. Bilateral inferior parietal lobule (IPL) activity was greater during the 1- and 2-relational level problems than during the 0-relational level problems. In addition, the left fronto-polar cortex (FPC) showed selective activity during the 2-relational level problems. The bilateral DLPFC may be involved in the process of hypothesis generation, whereas the bilateral IPL may be sensitive to calculation demands. Moreover, the sensitivity of the left FPC to the multiple relational problems may be related to the integration of numerical relations. The present study extends our knowledge of the prefrontal activity pattern underlying numerical relational processing.

摘要

以往大多数研究关系推理的实验都使用视觉空间材料。本功能磁共振成像(fMRI)研究旨在利用数字材料确定关系复杂性如何影响归纳推理过程中的大脑活动。数字序列完成任务采用了三个数字关系水平:0关系(例如,“23 23 23”)、1关系(“32 30 28”)和2关系(“12 13 15”)问题。fMRI结果显示,双侧背外侧前额叶皮层(DLPFC)表现出与关系复杂性相关的活动增强。在1关系和2关系水平问题中,双侧顶下小叶(IPL)的活动比0关系水平问题时更活跃。此外,左额极皮层(FPC)在2关系水平问题中表现出选择性活动。双侧DLPFC可能参与假设生成过程,而双侧IPL可能对计算需求敏感。此外,左FPC对多个关系问题的敏感性可能与数字关系的整合有关。本研究扩展了我们对数字关系处理背后前额叶活动模式的认识。

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