: Dual Coding Theories (DCT) suggest that meaning is represented in the brain by a double code: a language-derived code in the Anterior Temporal Lobe (ATL) and a sensory-derived code in perceptual and motor regions. Concrete concepts should activate both codes, while abstract ones rely solely on the linguistic code. To test these hypotheses, the present magnetoencephalography (MEG) experiment had participants judge whether visually presented words relate to the senses while we recorded brain responses to abstract and concrete semantic components obtained from 65 independently rated semantic features. Results evidenced early involvement of anterior-temporal and inferior-frontal brain areas in both abstract and concrete semantic information encoding. At later stages, occipital and occipito-temporal regions showed greater responses to concrete compared to abstract features. The present findings suggest that the concreteness of words is processed first with a transmodal/linguistic code, housed in frontotemporal brain systems, and only after with an imagistic/sensorimotor code in perceptual regions.

Spatiotemporal dynamics of abstract and concrete semantic representations / Vignali, Lorenzo; Xu, Yangwen; Turini, Jacopo; Collignon, Olivier; Crepaldi, Davide; Bottini, Roberto. - In: BRAIN AND LANGUAGE. - ISSN 1090-2155. - 243:(2023), p. 105298. [10.1016/j.bandl.2023.105298]

Spatiotemporal dynamics of abstract and concrete semantic representations

Vignali, Lorenzo;Xu, Yangwen;Collignon, Olivier;Bottini, Roberto
2023-01-01

Abstract

: Dual Coding Theories (DCT) suggest that meaning is represented in the brain by a double code: a language-derived code in the Anterior Temporal Lobe (ATL) and a sensory-derived code in perceptual and motor regions. Concrete concepts should activate both codes, while abstract ones rely solely on the linguistic code. To test these hypotheses, the present magnetoencephalography (MEG) experiment had participants judge whether visually presented words relate to the senses while we recorded brain responses to abstract and concrete semantic components obtained from 65 independently rated semantic features. Results evidenced early involvement of anterior-temporal and inferior-frontal brain areas in both abstract and concrete semantic information encoding. At later stages, occipital and occipito-temporal regions showed greater responses to concrete compared to abstract features. The present findings suggest that the concreteness of words is processed first with a transmodal/linguistic code, housed in frontotemporal brain systems, and only after with an imagistic/sensorimotor code in perceptual regions.
2023
Vignali, Lorenzo; Xu, Yangwen; Turini, Jacopo; Collignon, Olivier; Crepaldi, Davide; Bottini, Roberto
Spatiotemporal dynamics of abstract and concrete semantic representations / Vignali, Lorenzo; Xu, Yangwen; Turini, Jacopo; Collignon, Olivier; Crepaldi, Davide; Bottini, Roberto. - In: BRAIN AND LANGUAGE. - ISSN 1090-2155. - 243:(2023), p. 105298. [10.1016/j.bandl.2023.105298]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/391669
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