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1 - 10 of 10 search results for `visual cortex Nature Neuroscience` |u:www.abg.psychol.cam.ac.uk
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  2. Adaptive shape coding for perceptual decisions in the human brain.

    https://www.abg.psychol.cam.ac.uk/system/files/documents/kourtziwelchman2015.pdf
    Nature Neuroscience,8, 686–691. Jagadeesh, B., Chelazzi, L., Mishkin, M., & Desimone,R. ... Nature Neuroscience,10, 685–686. Wilson, H. R., & Wilkinson, F. (2014). Configuralpooling in the ventral pathway.
  3. Visual learning for perceptual and categorical decisions in the human …

    https://www.abg.psychol.cam.ac.uk/system/files/documents/kourtzi2010.pdf
    2001). An adaptive coding model of neural function in prefrontal cortex.Nature Reviews Neuroscience, 2(11), 820–829. ... 2008). Choice, uncertainty and value in prefrontaland cingulate cortex. Nature Neuroscience, 11(4), 389–397.
  4. S0952523813000436.indd

    https://www.abg.psychol.cam.ac.uk/system/files/documents/welchmankourtzi2013.pdf
    229. SPECIAL ISSUE. Linking Hypotheses in Visual Neuroscience: A Tribute to Davida Teller. ... 2008 ). ( C ) The pattern of decoding accuracies across visual cortex for correlated and anticorrelated disparity stimuli.
  5. The integration of motion and disparity cues to depth ...

    https://www.abg.psychol.cam.ac.uk/system/files/documents/banprestonmeesonwelchmann2012.pdf
    3D shape perception fromcombined depth cues in human visual cortex. Nature Neuroscience. ... 2005; 8:820–827. 46. Tjan BS, Lestou V, Kourtzi Z. Uncertainty and invariance in the human visual cortex.
  6. JCN00489 621..634

    https://www.abg.psychol.cam.ac.uk/system/files/documents/lestoulamhumpreyskourtzihumphreys2014.pdf
    Gottlieb, J. P., Kusunoki, M., & Goldberg, M. E. (1998). Therepresentation of visual salience in monkey parietal cortex.Nature, 391, 481–484. ... Two hierarchically organizedneural systems for object information in human visual cortex.Nature
  7. fMRI Activity in Posterior Parietal Cortex Relates to the Perceptual…

    https://www.abg.psychol.cam.ac.uk/system/files/documents/pattenwelchman2015.pdf
    across regions of the visual cortex. ... Interpreting results from other regions of interestResponses in the primary visual cortex did not exceed the shuffling distribution for either task(Fig 4) and this is consistent with the notion that
  8. doi:10.1016/j.visres.2005.02.007

    https://www.abg.psychol.cam.ac.uk/system/files/documents/moutoussiskeliriskourtzilogothetis2005.pdf
    Visual competition. Nature. Reviews Neuroscience, 3, 13–21. Braddick, O. J., OBrien, J. ... and the visual responses of neurons in macaque MT. Visual. Neuroscience, 13, 87–100.
  9. jcn21415 2899..2912

    https://www.abg.psychol.cam.ac.uk/system/files/documents/mayhewlistorrartsvetanovkourtzi2010.pdf
    It has previously been sug-gested that sensory information about visual categories is. ... 2908 Journal of Cognitive Neuroscience Volume 22, Number 12. combined with motor responses to form associations andrepresentations of meaningful categories in
  10. Revision 2, June 2001

    https://www.abg.psychol.cam.ac.uk/system/files/documents/thorntonkourtzi2002.pdf
    motion was explored by manipulating the nature of the initial or “prime” image. ... 1987;1993) has argued that the visual system might seek to maintain precise.
  11. jcn20021 324..341

    https://www.abg.psychol.cam.ac.uk/system/files/documents/lestoupollickkourtzi2008.pdf
    Finally, we investigated the process-ing of actions in the primary visual cortex ( V1) that isthe first stage of analysis of visual input. ... superior parietal lobules (IPL, SPL), and (C) the superior temporal sulcus (STS), area hMT+/ V5, and the

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