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  1. Type-based associations in grapheme-color synaesthesia revealed by response time distribution analyses.Jun Saiki, Ayako Yoshioka & Hiroki Yamamoto - 2011 - Consciousness and Cognition 20 (4):1548-1557.
    Determining the nature of binding in grapheme-color synaesthesia has consequences for understanding the neural basis of synaesthesia and visual awareness in general. We evaluated type- and token-based letter-color binding using a synaesthetic version of the object-reviewing paradigm. Although mean response times failed to reveal any significant differences between synaesthetes and control participants, RT analyses with ex-Gaussian distributions revealed that the response facilitation in the synaesthesia group reflected type representations exclusively, while response facilitation in the control group, who learned letter-color associations, (...)
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  • Neural Correlates of Color-Selective Metacontrast in Human Early Retinotopic Areas.Kiyohiro Maeda, Hiroki Yamamoto, Masaki Fukunaga, Masahior Umeda, Chuzo Tanaka & Yoshimichi Ejima - 2010 - Journal of Neurophysiology 104:2291-2301.
    Metacontrast is a visual illusion in which the visibility of a target stimulus is virtually lost when immediately followed by a nonoverlapping mask stimulus. For a colored target, metacontrast is color-selective, with target visibility markedly reduced when the mask and target are the same color, but only slightly reduced when the colors differ. This study investigated neural correlates of color-selective metacontrast for cone-opponent red and green stimuli in the human V1, V2, and V3 using functional magnetic resonance imaging. Neural activity (...)
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  • Binocular rivalry and visual awareness in human extrastriate cortex.Frank Tong, K. Nakayama, J. T. Vaughan & Nancy Kanwisher - 1998 - Neuron 21:753-59.
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  • Neural correlates of perceptual rivalry in the human brain.E. D. Lumer, K. J. Friston & Geraint Rees - 1998 - Science 280 (5371):1930-1934.
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  • Activity changes in early visual cortex reflect monkeys' percepts during binocular rivalry.David A. Leopold & Nikos K. Logothetis - 1996 - Nature 379 (6565):549-553.
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  • Neuronal correlates of subjective visual perception.Nikos K. Logothetis & Jeffrey D. Schall - 1989 - Science 245:761-63.
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  • Neural correlates of the contents of visual awareness in humans.Geraint Rees - 2008 - In Jon Driver, Patrick Haggard & Tim Shallice (eds.), Mental Processes in the Human Brain. Oxford University Press.
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  • Continuous flash suppression reduces negative afterimages.Naotsugu Tsuchiya & Christof Koch - 2005 - Nature Neuroscience 8 (8):1096-1101.
    Illusions that produce perceptual suppression despite constant retinal input are used to manipulate visual consciousness. Here we report on a powerful variant of existing techniques, Continuous Flash Suppression. Distinct images flashed successively around 10 Hz into one eye reliably suppress an image presented to the other eye. Compared to binocular rivalry, the duration of perceptual suppression increased more than 10-fold. Using this tool we show that the strength of the negative afterimage of an adaptor was reduced by half when it (...)
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  • Visual awareness.Stephen E. Palmer - 2002 - In Daniel Levitin (ed.), Foundations of Cognitive Psychology: Core Readings. MIT Press. pp. 3--23.
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  • Predicting the stream of consciousness from activity in human visual cortex.John-Dylan Haynes & Geraint Rees - 2005 - Current Biology 15 (14):1301-7.
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  • Eye-specific effects of binocular rivalry in the human lateral geniculate nucleus.J. D. Haynes, R. Deichmann & G. Rees - 2005 - Nature 438 (7069):496-9.
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