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A Connectionist Approach to Embodied Conceptual Metaphor

机译:体现主义概念隐喻的连接主义方法

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摘要

A growing body of data has been gathered in support of the view that the mind is embodied and that cognition is grounded in sensory-motor processes. Some researchers have gone so far as to claim that this paradigm poses a serious challenge to central tenets of cognitive science, including the widely held view that the mind can be analyzed in terms of abstract computational principles. On the other hand, computational approaches to the study of mind have led to the development of specific models that help researchers understand complex cognitive processes at a level of detail that theories of embodied cognition (EC) have sometimes lacked. Here we make the case that connectionist architectures in particular can illuminate many surprising results from the EC literature. These models can learn the statistical structure in their environments, providing an ideal framework for understanding how simple sensory-motor mechanisms could give rise to higher-level cognitive behavior over the course of learning. Crucially, they form overlapping, distributed representations, which have exactly the properties required by many embodied accounts of cognition. We illustrate this idea by extending an existing connectionist model of semantic cognition in order to simulate findings from the embodied conceptual metaphor literature. Specifically, we explore how the abstract domain of time may be structured by concrete experience with space (including experience with culturally specific spatial and linguistic cues). We suggest that both EC researchers and connectionist modelers can benefit from an integrated approach to understanding these models and the empirical findings they seek to explain.
机译:越来越多的数据已经收集起来,以支持这样的观点,即:思维是肉身的体现,而认知是基于感觉运动过程的。一些研究人员甚至宣称这种范式对认知科学的中心原则提出了严峻的挑战,其中包括广泛认为可以用抽象计算原理来分析思维的观点。另一方面,用于思维研究的计算方法导致特定模型的发展,这些模型可以帮助研究人员以有时缺乏内在认知理论(EC)的详细程度来理解复杂的认知过程。在这里,我们假设连接主义体系结构可以阐明EC文献中的许多令人惊讶的结果。这些模型可以学习其环境中的统计结构,为了解简单的感觉运动机制如何在学习过程中引起更高水平的认知行为提供了理想的框架。至关重要的是,它们形成了重叠的分布式表示形式,这些表示形式恰好具有许多具体体现的认知要求的属性。我们通过扩展现有的语义认知的连接主义模型来说明此想法,以便模拟所体现的概念隐喻文献的发现。具体来说,我们探索如何通过对空间的具体体验(包括对文化特定的空间和语言线索的体验)来构造时间的抽象领域。我们建议,EC研究人员和连接主义建模人员都可以从集成的方法中受益,以了解这些模型以及他们试图解释的经验发现。

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