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Concept Representation Reflects Multimodal Abstraction: A Framework for Embodied Semantics

机译:概念表示反映了多模式抽象:体现语义的框架

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Recent research indicates that sensory and motor cortical areas play a significant role in the neural representation of concepts. However, little is known about the overall architecture of this representational system, including the role played by higher level areas that integrate different types of sensory and motor information. The present study addressed this issue by investigating the simultaneous contributions of multiple sensory-motor modalities to semantic word processing. With a multivariate fMRI design, we examined activation associated with 5 sensory-motor attributes—color, shape, visual motion, sound, and manipulation—for 900 words. Regions responsive to each attribute were identified using independent ratings of the attributes' relevance to the meaning of each word. The results indicate that these aspects of conceptual knowledge are encoded in multimodal and higher level unimodal areas involved in processing the corresponding types of information during perception and action, in agreement with embodied theories of semantics. They also reveal a hierarchical system of abstracted sensory-motor representations incorporating a major division between object interaction and object perception processes.
机译:最近的研究表明,感官和电机皮质区域在概念神经表征中发挥着重要作用。然而,关于该代表性系统的整体架构知之甚少,包括通过集成不同类型的感官和电机信息的更高级别区域扮演的作用。本研究通过调查多个感官电机模式对语义文字处理的同时贡献来解决了这个问题。通过多变量FMRI设计,我们检查了与5个感官电机属性 - 颜色,形状,视觉运动,声音和操纵相关的激活 - 900字。响应每个属性的区域使用与每个单词的含义相关的属性的与属性的独立额定值进行识别。结果表明,概念知识的这些方面是在涉及在感知和行动期间处理相应类型的信息的多模式和更高水平的单峰面积编码,同时与所体现的语义理论一致。他们还揭示了包含在物体交互和对象感知过程之间的主要划分的抽象感觉电动机表示的分层系统。

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