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No Evidence that Predictions and Attention Modulate the First Feedforward Sweep of Cortical Information Processing

  • Josipa Alilović
  • , Bart Timmermans
  • , Leon C Reteig
  • , Simon van Gaal
  • , Heleen A Slagter

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Predictive coding models propose that predictions (stimulus likelihood) reduce sensory signals as early as primary visual cortex (V1), and that attention (stimulus relevance) can modulate these effects. Indeed, both prediction and attention have been shown to modulate V1 activity, albeit with fMRI, which has low temporal resolution. This leaves it unclear whether these effects reflect a modulation of the first feedforward sweep of visual information processing and/or later, feedback-related activity. In two experiments, we used electroencephalography and orthogonally manipulated spatial predictions and attention to address this issue. Although clear top-down biases were found, as reflected in pre-stimulus alpha-band activity, we found no evidence for top-down effects on the earliest visual cortical processing stage (<80 ms post-stimulus), as indexed by the amplitude of the C1 event-related potential component and multivariate pattern analyses. These findings indicate that initial visual afferent activity may be impenetrable to top-down influences by spatial prediction and attention.

Original languageEnglish
Article numberbhz038
Pages (from-to)2261-2278
Number of pages18
JournalCerebral Cortex
Volume29
Issue number5
Early online date16 Mar 2019
DOIs
Publication statusPublished - May 2019

Bibliographical note

© The Author(s) 2019. Published by Oxford University Press.

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