Literature DB >> 24920640

Orientation decoding in human visual cortex: new insights from an unbiased perspective.

Thomas A Carlson1.   

Abstract

The development of multivariate pattern analysis or brain "decoding" methods has substantially altered the field of fMRI research. Although these methods are highly sensitive to whether or not decodable information exists, the information they discover and make use of for decoding is often concealed within complex patterns of activation. This opacity of interpretation is embodied in influential studies showing that the orientation of visual gratings can be decoded from brain activity in human visual cortex with fMRI. Although these studies provided a compelling demonstration of the power of these methods, their findings were somewhat mysterious as the scanning resolution was insufficient to resolve orientation columns, i.e., orientation information should not have been accessible. Two theories have been put forth to account for this result, the hyperacuity account and the biased map account, both of which assume that small biases in fMRI voxels are the source of decodable information. In the present study, we use Hubel and Wiesel's (1972) classic ice-cube model of visual cortex to show that the orientation of gratings can be decoded from an unbiased representation. In our analysis, we identify patterns of activity elicited by the edges of the stimulus as the source of the decodable information. Furthermore, these activation patterns masquerade as a radial bias, a key element of the biased map account. This classic model thus sheds new light on the mystery behind orientation decoding by unveiling a new source of decodable information.
Copyright © 2014 the authors 0270-6474/14/348373-11$15.00/0.

Entities:  

Keywords:  fMRI decoding; hyperacuity; multivariate pattern analysis; orientation columns; visual cortex

Mesh:

Substances:

Year:  2014        PMID: 24920640      PMCID: PMC6608237          DOI: 10.1523/JNEUROSCI.0548-14.2014

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  17 in total

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6.  Radial bias is not necessary for orientation decoding.

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