AI Article Synopsis

  • Predictive mechanisms are crucial for interacting with our environment and help manage delays in neural signal processing.
  • The study explored how we anticipate outcomes from multisensory actions, using fMRI to observe brain activity during various auditory and visual stimulus conditions.
  • Findings reveal that action-related predictions lead to reduced brain activity in sensory areas, particularly in the left cerebellum, supporting the idea of multisensory predictive mechanisms.

Article Abstract

Predictive mechanisms are essential to successfully interact with the environment and to compensate for delays in the transmission of neural signals. However, whether and how we predict multisensory action outcomes remains largely unknown. Here we investigated the existence of multisensory predictive mechanisms in a context where actions have outcomes in different modalities. During fMRI data acquisition auditory, visual and auditory-visual stimuli were presented in active and passive conditions. In the active condition, a self-initiated button press elicited the stimuli with variable short delays (0-417ms) between action and outcome, and participants had to detect the presence of a delay for auditory or visual outcome (task modality). In the passive condition, stimuli appeared automatically, and participants had to detect the number of stimulus modalities (unimodal/bimodal). For action consequences compared to identical but unpredictable control stimuli we observed suppression of the blood oxygen level depended (BOLD) response in a broad network including bilateral auditory and visual cortices. This effect was independent of task modality or stimulus modality and strongest for trials where no delay was detected (undetected

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5218407PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0169131PLOS

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