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  1. Quality Space Model of Temporal Perception.Michal Klincewicz - 2010 - Lecture Notes in Computer Science 6789 (Multidisciplinary Aspects of Tim):230-245.
    Quality Space Theory is a holistic model of qualitative states. On this view, individual mental qualities are defined by their locations in a space of relations, which reflects a similar space of relations among perceptible properties. This paper offers an extension of Quality Space Theory to temporal perception. Unconscious segmentation of events, the involvement of early sensory areas, and asymmetries of dominance in multi-modal perception of time are presented as evidence for the view.
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  • Bandpass characteristics of high-frequency sensitivity and visual experience in blindsight.Doerthe Seifert, Christine Falter, Hans Strasburger & Mark A. Elliott - 2010 - Consciousness and Cognition 19 (1):144-151.
    Patient RP suffers a unilateral right homonymous quadrant anopia but demonstrates better than chance discrimination for stimuli presented in the blind field at temporal frequencies between 33 and 47 Hz . Examination of her reports of visual experience during blind-field discrimination suggests a more complex picture in which experiences particular to correct discrimination are not found at low-mid-gamma frequencies, but are significantly more likely than average at a lower frequency at which blindsight is not observed. We believe that visual experience (...)
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  • Neural correlates of consciousness in humans.Geraint Rees, G. Kreiman & Christof Koch - 2002 - Nature Reviews Neuroscience 3 (4):261-270.
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  • The case for characterising type-2 blindsight as a genuinely visual phenomenon.Robert Foley - 2015 - Consciousness and Cognition 32:56-67.
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  • Sidestepping the semantics of “consciousness”.Michael V. Antony - 2004 - Behavioral and Brain Sciences 27 (2):289-290.
    Block explains the conflation of phenomenal consciousness and access consciousness by appeal to the ambiguity of the term “consciousness.” However, the nature of ambiguity is not at all clear, and the thesis that “consciousness” is ambiguous between phenomenal consciousness and access consciousness is far from obvious. Moreover, the conflation can be explained without supposing that the term is ambiguous. Block's argument can thus be strengthened by avoiding controversial issues in the semantics of “consciousness.”.
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  • From affective blindsight to emotional consciousness.Alessia Celeghin, Beatrice de Gelder & Marco Tamietto - 2015 - Consciousness and Cognition 36:414-425.
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  • Why is “blindsight” blind? A new perspective on primary visual cortex, recurrent activity and visual awareness.Juha Silvanto - 2015 - Consciousness and Cognition 32:15-32.
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  • Extrastriate visual cortex reorganizes despite sequential bilateral occipital stroke: implications for vision recovery.Amy Brodtmann, Aina Puce, David Darby & Geoffrey Donnan - 2015 - Frontiers in Human Neuroscience 9.
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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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  • Non-conscious recognition of emotional body language.Beatrice de Gelder & Nouchine Hadjikhani - 2006 - Neuroreport 17 (6):583-586.
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  • Low-level phenomenal vision despite unilateral destruction of primary visual cortex.Petra Stoerig & Erhardt Barth - 2001 - Consciousness and Cognition 10 (4):574-587.
    GY, an extensively studied human hemianope, is aware of salient visual events in his cortically blind field but does not call this ''vision.'' To learn whether he has low-level conscious visual sensations or whether instead he has gained conscious knowledge about, or access to, visual information that does not produce a conscious phenomenal sensation, we attempted to image process a stimulus s presented to the impaired field so that when the transformed stimulus T(s) was presented to the normal hemifield it (...)
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  • Facial blindsight.Marco Solcà, Adrian G. Guggisberg, Armin Schnider & Béatrice Leemann - 2015 - Frontiers in Human Neuroscience 9.
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  • Using brain stimulation to disentangle neural correlates of conscious vision.Tom A. de Graaf & Alexander T. Sack - 2014 - Frontiers in Psychology 5:105252.
    Research into the neural correlates of consciousness (NCCs) has blossomed, due to the advent of new and increasingly sophisticated brain research tools. Neuroimaging has uncovered a variety of brain processes that relate to conscious perception, obtained in a range of experimental paradigms. But methods such as functional magnetic resonance imaging or electroencephalography do not always afford inference on the functional role these brain processes play in conscious vision. Such empirical NCCs could reflect neural prerequisites, neural consequences, or neural substrates of (...)
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  • Primary visual cortex and visual awareness.Frank Tong - 2003 - Nature Reviews Neuroscience 4 (3):219-229.
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