具体性
计算机科学
默认模式网络
语义记忆
功能磁共振成像
编码
自然语言处理
抽象
语义学(计算机科学)
人工智能
认知科学
认知心理学
心理学
神经科学
认知
生物
基因
哲学
生物化学
程序设计语言
认识论
作者
Yizhen Zhang,Kuan Han,Robert M. Worth,Zhongming Liu
标识
DOI:10.1038/s41467-020-15804-w
摘要
Abstract In the brain, the semantic system is thought to store concepts. However, little is known about how it connects different concepts and infers semantic relations. To address this question, we collected hours of functional magnetic resonance imaging data from human subjects listening to natural stories. We developed a predictive model of the voxel-wise response and further applied it to thousands of new words. Our results suggest that both semantic categories and relations are represented by spatially overlapping cortical patterns, instead of anatomically segregated regions. Semantic relations that reflect conceptual progression from concreteness to abstractness are represented by cortical patterns of activation in the default mode network and deactivation in the frontoparietal attention network. We conclude that the human brain uses distributed networks to encode not only concepts but also relationships between concepts. In particular, the default mode network plays a central role in semantic processing for abstraction of concepts.
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