Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/33262
Appears in Collections:Psychology Journal Articles
Peer Review Status: Refereed
Title: Early visual and auditory processing rely on modality-specific attentional resources
Author(s): Keitel, Christian
Maess, Burkhard
Schröger, Erich
Müller, Matthias M.
Contact Email: christian.keitel@stir.ac.uk
Keywords: MEG
Attentional resource
EEG
Intermodal attention
Steady-state response
Issue Date: 15-Apr-2013
Date Deposited: 8-Sep-2021
Citation: Keitel C, Maess B, Schröger E & Müller MM (2013) Early visual and auditory processing rely on modality-specific attentional resources. NeuroImage, 70, pp. 240-249. https://doi.org/10.1016/j.neuroimage.2012.12.046
Abstract: Many everyday situations require focusing on visual or auditory information while ignoring the other modality. Previous findings suggest an attentional mechanism that operates between sensory modalities and governs such states. To date, evidence is equivocal as to whether this ‘intermodal’ attention relies on a distribution of resources either common or specific to sensory modalities. We provide new insights by investigating consequences of a shift from simultaneous (‘bimodal’) attention to vision and audition to unimodal selective attention. Concurrently presented visual and auditory stimulus streams were frequency-tagged to elicit steady-state responses (SSRs) recorded simultaneously in electro- and magnetoencephalograms (EEG/MEG). After the shift, decreased amplitudes of the SSR corresponding to the unattended sensory stream indicated reduced processing. We did not observe an amplitude increase of the SSR corresponding to the attended sensory stream. These findings are incompatible with a common-resources account. A redistribution of attentional resources between vision and audition would result in simultaneous processing gain in the attended sensory modality and reduction in the unattended sensory modality. Our results favor a modality-specific-resources account, which allows for independent modulation of early cortical processing in each sensory modality.
DOI Link: 10.1016/j.neuroimage.2012.12.046
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