弥合语言意义的认知表征与形式结构之间的鸿沟。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Prakash Mondal
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引用次数: 0

摘要

本文旨在说明,尽管认知/概念表征和语言意义的形式逻辑结构在本体论上显然不同,在形式或特征上也有差异,但它们的属性可以相互转换、重铸、转化,从而结合在一起。认知/概念表征最终植根于感觉-运动系统,而语言意义的形式逻辑结构则是脱离现实世界、独立于现实世界的抽象概念。本文勾勒了如何将认知/概念语义学中以认知/概念结构为基础的语言意义表征与形式语义学中以形式逻辑结构为基础的语言意义表征统一起来的基础。具体做法是根据语言意义的形式逻辑结构重铸认知/概念表征,并根据认知/概念表征重新编码语言意义的形式逻辑结构。然后,这两种在表征上等同的语义表征将与神经元网络和动力学中的一系列跨层次衍生相关联。关于将语言意义的认知/概念表征与形式逻辑结构统一起来的一般性讨论是在认知科学理论化的大背景下进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bridging the Chasm Between Cognitive Representations and Formal Structures of Linguistic Meanings

This paper aims to show that properties of cognitive/conceptual representations and formal-logical structures of linguistic meaning can be inter-translated, recast, transformed into one another, and so united together, even though cognitive/conceptual representations and formal-logical structures of linguistic meaning are apparently distinct in ontology and divergent in their form or character. While cognitive/conceptual representations are ultimately rooted in sensory-motor systems, formal-logical structures of linguistic meaning are abstractions detached from and independent of the actualized world. This paper sketches out the foundations of how representations of linguistic meaning in terms of cognitive/conceptual structures in Cognitive/Conceptual Semantics can be unified with those in terms of formal-logical structures in Formal Semantics. This is done by recasting cognitive/conceptual representations in terms of formal-logical structures of linguistic meaning and re-encoding formal-logical structures of linguistic meaning in terms of cognitive/conceptual representations. Then, these two types of semantic representations, thus shown representationally equivalent, will be related to a series of derivations across levels in neuronal networks and dynamics. The general discussion on unifying cognitive/conceptual representations of linguistic meaning with formal-logical structures is contextualized within the broader context of theorizing in cognitive science.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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