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  1. The Reverse Hierarchy Theory of Visual Perceptual Learning.Merav Ahissar & Shaul Hochstein - 2004 - Trends in Cognitive Sciences 8 (10):457-464.
    Perceptual learning can be defined as practice-induced improvement in the ability to perform specific perceptual tasks. We previously proposed the Reverse Hierarchy Theory as a unifying concept that links behavioral findings of visual learning with physiological and anatomical data. Essentially, it asserts that learning is a top-down guided process, which begins at high-level areas of the visual system, and when these do not suffice, progresses backwards to the input levels, which have a better signal-to-noise ratio. This simple concept has proved (...)
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  • Towards a true neural stance on consciousness.Victor A. F. Lamme - 2006 - Trends in Cognitive Sciences 10 (11):494-501.
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  • Feedback contributions to visual awareness in human occipital cortex.Tony Ro, Bruno Breitmeyer, Philip Burton, Neel S. Singhal & David Lane - 2003 - Current Biology 13 (12):1038-1041.
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  • Competition for consciousness among visual events: The psychophysics of reentrant visual processes.Vincent Di Lollo, James T. Enns & Ronald A. Rensink - 2000 - Journal Of Experimental Psychology-General 129 (4):481-507.
    Advances in neuroscience implicate reentrant signaling as the predominant form of communication between brain areas. This principle was used in a series of masking experiments that defy explanation by feed-forward theories. The masking occurs when a brief display of target plus mask is continued with the mask alone. Two masking processes were found: an early process affected by physical factors such as adapting luminance and a later process affected by attentional factors such as set size. This later process is called (...)
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  • Neural mechanisms of visual awareness: A linking proposition. [REVIEW]Victor A. F. Lamme - 2001 - Brain and Mind 1 (3):385-406.
    Recent developments in psychology and neuroscience suggest away to link the mental phenomenon of visual awareness with specific neural processes. Here, it is argued that the feed-forward activation of cells in any area of the brain is not sufficient to generate awareness, but that recurrent processing, mediated by horizontal and feedback connections is necessary. In linking awareness with its neural mechanisms it is furthermore important to dissociate phenomenal awareness from visual attention or decision processes.
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  • Primary visual cortex and visual awareness.Frank Tong - 2003 - Nature Reviews Neuroscience 4 (3):219-229.
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  • ERPLAB: an open-source toolbox for the analysis of event-related potentials.Javier Lopez-Calderon & Steven J. Luck - 2014 - Frontiers in Human Neuroscience 8.
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  • Transcranial magnetic stimulation of early visual cortex interferes with subjective visual awareness and objective forced-choice performance.Mika Koivisto, Henry Railo & Niina Salminen-Vaparanta - 2011 - Consciousness and Cognition 20 (2):288-298.
    In order to study whether there exist a period of activity in the human early visual cortex that contributes exclusively to visual awareness, we applied transcranial magnetic stimulation over the early visual cortex and measured subjective visual awareness during visual forced-choice symbol or orientation discrimination tasks. TMS produced one dip in awareness 60–120 ms after stimulus onset, while forced-choice orientation discrimination was suppressed between 60 and 90 ms and symbol discrimination between 60 and 120 ms. Thus, a time window specific (...)
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  • Quantitative theories of metacontrast masking.Gregory Francis - 2000 - Psychological Review 107 (4):768-785.
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  • Cortical dynamics of lateral inhibition: Metacontrast masking.Gregory Francis - 1997 - Psychological Review 104 (3):572-594.
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  • Increased gamma-band synchrony precedes switching of conscious perceptual objects in binocular rivalry.Sam M. Doesburg, Keiichi Kitajo & Lawrence M. Ward - 2005 - Neuroreport 16 (11):1139-1142.
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  • A comparison of masking by visual and transcranial magnetic stimulation: implications for the study of conscious and unconscious visual processing.Bruno G. Breitmeyer, Tony Ro & Haluk Ogmen - 2004 - Consciousness and Cognition 13 (4):829-843.
    Visual stimuli as well as transcranial magnetic stimulation can be used: to suppress the visibility of a target and to recover the visibility of a target that has been suppressed by another mask. Both types of stimulation thus provide useful methods for studying the microgenesis of object perception. We first review evidence of similarities between the processes by which a TMS mask and a visual mask can either suppress the visibility of targets or recover such suppressed visibility. However, we then (...)
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