Prior Expectations Bias Sensory Representations in Visual Cortex

Perception is strongly influenced by expectations. Accordingly, perception has sometimes been cast as a process of inference, whereby sensory inputs are combined with prior knowledge. However, despite a wealth of behavioral literature supporting an account of perception as probabilistic inference, t...

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Bibliographic Details
Published inThe Journal of neuroscience Vol. 33; no. 41; pp. 16275 - 16284
Main Authors Kok, Peter, Brouwer, Gijs Joost, van Gerven, Marcel A.J., de Lange, Floris P.
Format Journal Article
LanguageEnglish
Published United States Society for Neuroscience 09.10.2013
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Summary:Perception is strongly influenced by expectations. Accordingly, perception has sometimes been cast as a process of inference, whereby sensory inputs are combined with prior knowledge. However, despite a wealth of behavioral literature supporting an account of perception as probabilistic inference, the neural mechanisms underlying this process remain largely unknown. One important question is whether top-down expectation biases stimulus representations in early sensory cortex, i.e., whether the integration of prior knowledge and bottom-up inputs is already observable at the earliest levels of sensory processing. Alternatively, early sensory processing may be unaffected by top-down expectations, and integration of prior knowledge and bottom-up input may take place in downstream association areas that are proposed to be involved in perceptual decision-making. Here, we implicitly manipulated human subjects' prior expectations about visual motion stimuli, and probed the effects on both perception and sensory representations in visual cortex. To this end, we measured neural activity noninvasively using functional magnetic resonance imaging, and applied a forward modeling approach to reconstruct the motion direction of the perceived stimuli from the signal in visual cortex. Our results show that top-down expectations bias representations in visual cortex, demonstrating that the integration of prior information and sensory input is reflected at the earliest stages of sensory processing.
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Author contributions: P.K. and F.P.d.L. designed research; P.K. performed research; P.K., G.J.B., and M.A.J.v.G. analyzed data; P.K., G.J.B., M.A.J.v.G., and F.P.d.L. wrote the paper.
ISSN:0270-6474
1529-2401
1529-2401
DOI:10.1523/JNEUROSCI.0742-13.2013