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Featured ArticleBehavioral/Systems/Cognitive

Subcortical Modulation of Attention Counters Change Blindness

James Cavanaugh and Robert H. Wurtz
Journal of Neuroscience 15 December 2004, 24 (50) 11236-11243; https://doi.org/10.1523/JNEUROSCI.3724-04.2004
James Cavanaugh
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Robert H. Wurtz
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Article Information

DOI 
https://doi.org/10.1523/JNEUROSCI.3724-04.2004
PubMed 
15601929
Published By 
Society for Neuroscience
History 
  • Received September 8, 2004
  • Revision received October 21, 2004
  • Accepted October 22, 2004
  • First published December 15, 2004.
  • Version of record published December 15, 2004.
Copyright & Usage 
Copyright © 2004 Society for Neuroscience 0270-6474/04/2411236-08.00/0

Author Information

  1. James Cavanaugh and
  2. Robert H. Wurtz
  1. Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20817
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Author contributions

Disclosures

    • Received September 8, 2004.
    • Revision received October 21, 2004.
    • Accepted October 22, 2004.
  • We thank Mitchell Smith, Nick Nichols, and Tom Ruffner for assistance with the experiments. We also thank our colleagues in the Laboratory for Sensorimotor Research at the National Eye Institute for helpful discussions and valuable comments.

  • Correspondence should be addressed to James Cavanaugh, Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Building 49, Room 2A50, Bethesda, MD 20817. E-mail: jrc{at}lsr.nei.nih.gov.

  • Copyright © 2004 Society for Neuroscience 0270-6474/04/2411236-08$15.00/0

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Total104748841466
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The Journal of Neuroscience: 24 (50)
Journal of Neuroscience
Vol. 24, Issue 50
15 Dec 2004
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Subcortical Modulation of Attention Counters Change Blindness
James Cavanaugh, Robert H. Wurtz
Journal of Neuroscience 15 December 2004, 24 (50) 11236-11243; DOI: 10.1523/JNEUROSCI.3724-04.2004

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Subcortical Modulation of Attention Counters Change Blindness
James Cavanaugh, Robert H. Wurtz
Journal of Neuroscience 15 December 2004, 24 (50) 11236-11243; DOI: 10.1523/JNEUROSCI.3724-04.2004
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  • Generation of Intensity Selectivity by Differential Synaptic Tuning: Fast-Saturating Excitation But Slow-Saturating Inhibition
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