Literature DB >> 25662715

NMDA Receptor Antagonist Ketamine Distorts Object Recognition by Reducing Feedback to Early Visual Cortex.

Anouk M van Loon1, Johannes J Fahrenfort2, Bauke van der Velde3, Philipp B Lirk4, Nienke C C Vulink5, Markus W Hollmann4, H Steven Scholte6, Victor A F Lamme6.   

Abstract

It is a well-established fact that top-down processes influence neural representations in lower-level visual areas. Electrophysiological recordings in monkeys as well as theoretical models suggest that these top-down processes depend on NMDA receptor functioning. However, this underlying neural mechanism has not been tested in humans. We used fMRI multivoxel pattern analysis to compare the neural representations of ambiguous Mooney images before and after they were recognized with their unambiguous grayscale version. Additionally, we administered ketamine, an NMDA receptor antagonist, to interfere with this process. Our results demonstrate that after recognition, the pattern of brain activation elicited by a Mooney image is more similar to that of its easily recognizable grayscale version than to the pattern evoked by the identical Mooney image before recognition. Moreover, recognition of Mooney images decreased mean response; however, neural representations of separate images became more dissimilar. So from the neural perspective, unrecognizable Mooney images all "look the same", whereas recognized Mooneys look different. We observed these effects in posterior fusiform part of lateral occipital cortex and in early visual cortex. Ketamine distorted these effects of recognition, but in early visual cortex only. This suggests that top-down processes from higher- to lower-level visual areas might operate via an NMDA pathway.
© The Author 2015. Published by Oxford University Press. All rights reserved. For Permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  MVPA; Mooney; fMRI; object; perception; top-down

Mesh:

Substances:

Year:  2015        PMID: 25662715     DOI: 10.1093/cercor/bhv018

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  19 in total

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4.  Gaining knowledge mediates changes in perception (without differences in attention): A case for perceptual learning.

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5.  Competitive Frontoparietal Interactions Mediate Implicit Inferences.

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6.  A Gradient of Sharpening Effects by Perceptual Prior across the Human Cortical Hierarchy.

Authors:  Carlos González-García; Biyu J He
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7.  One-trial perceptual learning in the absence of conscious remembering and independent of the medial temporal lobe.

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8.  Effects of meaningfulness on perception: Alpha-band oscillations carry perceptual expectations and influence early visual responses.

Authors:  Jason Samaha; Bastien Boutonnet; Bradley R Postle; Gary Lupyan
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9.  Acute ketamine dysregulates task-related gamma-band oscillations in thalamo-cortical circuits in schizophrenia.

Authors:  Tineke Grent-'t-Jong; Davide Rivolta; Joachim Gross; Ruchika Gajwani; Stephen M Lawrie; Matthias Schwannauer; Tonio Heidegger; Michael Wibral; Wolf Singer; Andreas Sauer; Bertram Scheller; Peter J Uhlhaas
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10.  Content-specific activity in frontoparietal and default-mode networks during prior-guided visual perception.

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Journal:  Elife       Date:  2018-07-31       Impact factor: 8.140

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