Many studies have revealed that attention operates across different sensory modalities, to facilitate the selection of relevant information in the multimodal situations of every-day life. Cross-modal links have been observed either when attention is directed voluntarily (endogenous) or involuntarily (exogenous). The neural basis of cross-modal attention presents a significant challenge to cognitive neuroscience. Here, we used a neural network model to elucidate the neural correlates of visual-tactile interactions in exogenous and endogenous attention. The model includes two unimodal (visual and tactile) areas connected with a bimodal area in each hemisphere and a competition between the two hemispheres. The model is able to explain cross-modal facilitation both in exogenous and endogenous attention, ascribing it to an advantaged activation of the bimodal area on the attended side (via a top-down or bottom-up biasing), with concomitant inhibition towards the opposite side. The model suggests that a competitive/cooperative interaction with biased competition may mediate both forms of cross-modal attention.

Magosso E, Serino A, di Pellegrino G, Ursino M. (2010). Crossmodal links between vision and touch in spatial attention: a computational modelling study. COMPUTATIONAL INTELLIGENCE AND NEUROSCIENCE, 2010, 1-13 [10.1155/2010/304941].

Crossmodal links between vision and touch in spatial attention: a computational modelling study.

MAGOSSO, ELISA;SERINO, ANDREA;DI PELLEGRINO, GIUSEPPE;URSINO, MAURO
2010

Abstract

Many studies have revealed that attention operates across different sensory modalities, to facilitate the selection of relevant information in the multimodal situations of every-day life. Cross-modal links have been observed either when attention is directed voluntarily (endogenous) or involuntarily (exogenous). The neural basis of cross-modal attention presents a significant challenge to cognitive neuroscience. Here, we used a neural network model to elucidate the neural correlates of visual-tactile interactions in exogenous and endogenous attention. The model includes two unimodal (visual and tactile) areas connected with a bimodal area in each hemisphere and a competition between the two hemispheres. The model is able to explain cross-modal facilitation both in exogenous and endogenous attention, ascribing it to an advantaged activation of the bimodal area on the attended side (via a top-down or bottom-up biasing), with concomitant inhibition towards the opposite side. The model suggests that a competitive/cooperative interaction with biased competition may mediate both forms of cross-modal attention.
2010
Magosso E, Serino A, di Pellegrino G, Ursino M. (2010). Crossmodal links between vision and touch in spatial attention: a computational modelling study. COMPUTATIONAL INTELLIGENCE AND NEUROSCIENCE, 2010, 1-13 [10.1155/2010/304941].
Magosso E; Serino A; di Pellegrino G; Ursino M.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/78832
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