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  1. Are There Unconscious Perceptual Processes?Berit Brogaard - 2011 - Consciousness and Cognition 20 (2):449-63.
    Blindsight and vision for action seem to be exemplars of unconscious visual processes. However, researchers have recently argued that blindsight is not really a kind of uncon- scious vision but is rather severely degraded conscious vision. Morten Overgaard and col- leagues have recently developed new methods for measuring the visibility of visual stimuli. Studies using these methods show that reported clarity of visual stimuli correlates with accuracy in both normal individuals and blindsight patients. Vision for action has also come under (...)
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  • The riddoch syndrome: Insights into the neurobiology of conscious vision.Semir Zeki & D. H. Ffytche - 1998 - Brain 121:25-45.
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  • Is blindsight like normal, near-threshold vision?Paul Azzopardi & Alan Cowey - 1997 - Proceedings of the National Academy of Sciences Usa 94 (25):14190-14194.
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  • Consciousness and modality: On the possible preserved visual consciousness in blindsight subjects.Morten Overgaard & Thor Grünbaum - 2011 - Consciousness and Cognition 20 (4):1855-1859.
    In a recent paper, Brogaard presents counter-arguments to the conclusions of an experiment with blindsight subject GR. She argues that contrary to the apparent findings that GR’s preserved visual abilities relate to degraded visual experiences, she is in fact fully unconscious of the stimuli she correctly identifies. In this paper, we present arguments and evidence why Brogaard’s argument does not succeed in its purpose. We suggest that not only is relevant empirical evidence in opposition to Brogaard’s argument, her argument misconstrues (...)
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  • Cortical color blindness is not ''blindsight for color''.Charles A. Heywood, Robert W. Kentridge & Alan Cowey - 1998 - Consciousness and Cognition 7 (3):410-423.
    Cortical color blindness, or cerebral achromatopsia, has been likened by some authors to ''blindsight'' for color or an instance of ''covert'' processing of color. Recently, it has been shown that, although such patients are unable to identify or discriminate hue differences, they nevertheless show a striking ability to process wavelength differences, which can result in preserved sensitivity to chromatic contrast and motion in equiluminant displays. Moreover, visually evoked cortical potentials can still be elicited in response to chromatic stimuli. We suggest (...)
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