Using sparse semantic embeddings learned from multimodal text and image data to model human conceptual knowledge

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Abstract

Distributional models provide a convenient way to model semantics using dense embedding spaces derived from unsupervised learning algorithms. However, the dimensions of dense embedding spaces are not designed to resemble human semantic knowledge. Moreover, embeddings are often built from a single source of information (typically text data), even though neurocognitive research suggests that semantics is deeply linked to both language and perception. In this paper, we combine multimodal information from both text and image-based representations derived from state-of-the-art distributional models to produce sparse, interpretable vectors using Joint Non-Negative Sparse Embedding. Through in-depth analyses comparing these sparse models to human-derived behavioural and neuroimaging data, we demonstrate their ability to predict interpretable linguistic descriptions of human ground-truth semantic knowledge.

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APA

Derby, S., Miller, P., Murphy, B., & Devereux, B. (2018). Using sparse semantic embeddings learned from multimodal text and image data to model human conceptual knowledge. In CoNLL 2018 - 22nd Conference on Computational Natural Language Learning, Proceedings (pp. 260–270). Association for Computational Linguistics (ACL). https://doi.org/10.18653/v1/k18-1026

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