Inferior parietal cortex represents relational structures for explicit transitive inference

Author:

Xu Biman123,Wu Jing123,Xiao Haoyun123,Münte Thomas F45,Ye Zheng12

Affiliation:

1. Institute of Neuroscience , Center for Excellence in Brain Science and Intelligence Technology, , Yueyang Road 320, Shanghai 200031 , China

2. Chinese Academy of Sciences , Center for Excellence in Brain Science and Intelligence Technology, , Yueyang Road 320, Shanghai 200031 , China

3. University of Chinese Academy of Sciences , Yanqihu East Road 1, Beijing 101408 , China

4. Center for Brain , Behavior & Metabolism, , Ratzeburger Allee 160, Lübeck 23562 , Germany

5. University of Lübeck , Behavior & Metabolism, , Ratzeburger Allee 160, Lübeck 23562 , Germany

Abstract

Abstract The human brain is distinguished by its ability to perform explicit logical reasoning like transitive inference. This study investigated the functional role of the inferior parietal cortex in transitive inference with functional MRI. Participants viewed premises describing abstract relations among items. They accurately recalled the relationship between old pairs of items, effectively inferred the relationship between new pairs of items, and discriminated between true and false relationships for new pairs. First, the inferior parietal cortex, but not the hippocampus or lateral prefrontal cortex, was associated with transitive inference. The inferior parietal activity and functional connectivity were modulated by inference (new versus old pairs) and discrimination (true versus false pairs). Moreover, the new/old and true/false pairs were decodable from the inferior parietal representation. Second, the inferior parietal cortex represented an integrated relational structure (ordered and directed series). The inferior parietal activity was modulated by serial position (larger end versus center pairs). The inferior parietal representation was modulated by symbolic distance (adjacent versus distant pairs) and direction (preceding versus following pairs). It suggests that the inferior parietal cortex may flexibly integrate observed relations into a relational structure and use the relational structure to infer unobserved relations and discriminate between true and false relations.

Funder

STI2030 Major Projects

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

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