4.5 Review

Neural Oscillations Orchestrate Multisensory Processing

Journal

NEUROSCIENTIST
Volume 24, Issue 6, Pages 609-626

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/1073858418755352

Keywords

multisensory integration; crossmodal; audiovisual; top-down; bottom-up; attention; functional connectivity; electrophysiology

Funding

  1. German Research Foundation [DFG: SE1859/3-1, SE1859/4-1, KE1828/2-1, KE1828/4-1]
  2. European Union [ERC-2010-StG-20091209]

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At any given moment, we receive input through our different sensory systems, and this information needs to be processed and integrated. Multisensory processing requires the coordinated activity of distinct cortical areas. Key mechanisms implicated in these processes include local neural oscillations and functional connectivity between distant cortical areas. Evidence is now emerging that neural oscillations in distinct frequency bands reflect different mechanisms of multisensory processing. Moreover, studies suggest that aberrant neural oscillations contribute to multisensory processing deficits in clinical populations, such as schizophrenia. In this article, we review recent literature on the neural mechanisms underlying multisensory processing, focusing on neural oscillations. We derive a framework that summarizes findings on (1) stimulus-driven multisensory processing, (2) the influence of top-down information on multisensory processing, and (3) the role of predictions for the formation of multisensory perception. We propose that different frequency band oscillations subserve complementary mechanisms of multisensory processing. These processes can act in parallel and are essential for multisensory processing.

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