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  1. (1 other version)Breaking continuous flash suppression: competing for consciousness on the pre-semantic battlefield.Surya Gayet, Stefan Van der Stigchel & Chris L. E. Paffen - 2014 - Frontiers in Psychology 5.
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  • The influence of anxiety on the initial selection of emotional faces presented in binocular rivalry.Katie L. H. Gray, Wendy J. Adams & Matthew Garner - 2009 - Cognition 113 (1):105-110.
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  • Multistable phenomena: Changing views in perception.David A. Leopold & Nikos K. Logothetis - 1999 - Trends in Cognitive Sciences 3 (7):254-264.
    Traditional explanations of multistable visual phenomena (e.g. ambiguous figures, perceptual rivalry) suggest that the basis for spontaneous reversals in perception lies in antagonistic connectivity within the visual system. In this review, we suggest an alternative, albeit speculative, explanation for visual multistability – that spontaneous alternations reflect responses to active, programmed events initiated by brain areas that integrate sensory and non-sensory information to coordinate a diversity of behaviors. Much evidence suggests that perceptual reversals are themselves more closely related to the expression (...)
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  • Primary visual cortex and visual awareness.Frank Tong - 2003 - Nature Reviews Neuroscience 4 (3):219-229.
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  • Category Selectivity of Human Visual Cortex in Perception of Rubin Face–Vase Illusion.Xiaogang Wang, Na Sang, Lei Hao, Yong Zhang, Taiyong Bi & Jiang Qiu - 2017 - Frontiers in Psychology 8.
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  • Predictive coding explains binocular rivalry: an epistemological review.Jakob Hohwy, Andreas Roepstorff & Karl Friston - 2008 - Cognition 108 (3):687-701.
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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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  • Binocular rivalry and the cerebral hemispheres, with a note on the correlates and constitution of visual consciousness.S. M. Miller - 2001 - Brain and Mind 2 (1):119-49.
    In addressing thescientific study of consciousness, Crick and Koch state, It is probable that at any moment some active neuronal processes in your head correlate with consciousness, while others do not: what is the difference between them? (1998, p. 97). Evidence from electrophysiological and brain-imaging studies of binocular rivalry supports the premise of this statement and answers to some extent, the question posed. I discuss these recent developments and outline the rationale and experimental evidence for the interhemispheric switch hypothesis of (...)
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  • Single units and conscious vision.Nikos K. Logothetis - 1998 - Philosophical Transactions of the Royal Society of London Series B-Biological Sciences 353:1801-1818.
    Logothetis, N.K.: Single units and conscious vision. Philosophical Transactions of the Royal Society of London Series B-Biological Sciences 353, 1801-1818 (1998) Abstract.
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  • Temporal binding, binocular rivalry, and consciousness.Andreas K. Engel, Pascal Fries, Peter König, Michael Brecht & Wolf Singer - 1999 - Consciousness and Cognition 8 (2):128-51.
    Cognitive functions like perception, memory, language, or consciousness are based on highly parallel and distributed information processing by the brain. One of the major unresolved questions is how information can be integrated and how coherent representational states can be established in the distributed neuronal systems subserving these functions. It has been suggested that this so-called ''binding problem'' may be solved in the temporal domain. The hypothesis is that synchronization of neuronal discharges can serve for the integration of distributed neurons into (...)
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  • Ambiguous Figures – What Happens in the Brain When Perception Changes But Not the Stimulus.Jürgen Kornmeier & Michael Bach - 2012 - Frontiers in Human Neuroscience 6.
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  • On the relationship between interocular suppression in the primary visual cortex and binocular rivalry.Sengpiel Frank, Bonhoeffer Tobias, C. B. Freeman Tobe & Blakemore Colin - 2001 - Brain and Mind 2 (1):39-54.
    Both classical psychophysical work and recentfunctional imaging studies have suggested acritical role for the primary visual cortex(V1) in resolving the perceptual ambiguitiesexperienced during binocular rivalry. Here weexamine, by means of single-cell recordings andoptical imaging of intrinsic signals, thespatial characteristics of suppression elicitedby rival stimuli in cat V1. We find that the interocular suppression field of V1 neuronsis centred on the same position in space and isslightly larger (by a factor of 1.3) than theminimum response field, measured through thesame eye. Suppression (...)
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  • Scene congruency biases Binocular Rivalry.Liad Mudrik, Leon Y. Deouell & Dominique Lamy - 2011 - Consciousness and Cognition 20 (3):756-767.
    Contextual regularities, that is, objects’ tendency to appear with certain other objects, facilitate the processing of visual scenes and confer contextually incongruent objects with a special attentional status. This study was aimed at investigating the mechanisms underlying this attentional advantage using Binocular Rivalry . In two experiments, congruent and incongruent images were pitted against each other, yielding a version of BR in which two objects rival within a given scene. Incongruent objects predominated in awareness longer than congruent ones. This effect (...)
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  • Mountains and valleys: Binocular rivalry and the flow of experience.Diego Cosmelli & Evan Thompson - 2007 - Consciousness and Cognition 16 (3):623-641.
    Binocular rivalry provides a useful situation for studying the relation between the temporal flow of conscious experience and the temporal dynamics of neural activity. After proposing a phenomenological framework for understanding temporal aspects of consciousness, we review experimental research on multistable perception and binocular rivalry, singling out various methodological, theoretical, and empirical aspects of this research relevant to studying the flow of experience. We then review an experimental study from our group explicitly concerned with relating the temporal dynamics of rivalrous (...)
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  • Competing theories of binocular rivalry: A possible resolution. [REVIEW]Frank Tong - 2001 - Brain and Mind 2 (1):55-83.
    The neural basis of binocular rivalry has beenthe subject of vigorous debate. Do discrepantmonocular patterns rival for awareness becauseof neural competition among patternrepresentations or monocular channels? In thisarticle, I briefly review psychophysical andneurophysiological evidence pertaining to boththeories and discuss important new neuroimagingdata which reveal that rivalry is fullyresolved in monocular visual cortex. These newfindings strongly suggest that interocularcompetition mediates binocular rivalry and thatV1 plays an important role in the selection ofconscious visual information. They furthersuggest that rivalry is not a unitaryphenomenon. (...)
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  • Neural bases of binocular rivalry.Frank Tong, Ming Meng & Randolph Blake - 2006 - Trends in Cognitive Sciences 10 (11):502-511.
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  • InFoRM (Indicate-Follow-Replay-Me): A novel method to measure perceptual multistability dynamics using continuous data tracking and validated estimates of visual introspection.Jan Skerswetat & Peter J. Bex - 2023 - Consciousness and Cognition 107 (C):103437.
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  • Unconscious retinotopic motion processing affects non-retinotopic motion perception.Marc M. Lauffs, Oh-Hyeon Choung, Haluk Öğmen & Michael H. Herzog - 2018 - Consciousness and Cognition 62 (C):135-147.
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  • Top-down influences on ambiguous perception: the role of stable and transient states of the observer.Lisa Scocchia, Matteo Valsecchi & Jochen Triesch - 2014 - Frontiers in Human Neuroscience 8.
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  • The level of attention: Mediating between the stimulus and perception.Jeremy Wolfe - 2003 - In Laurence Harris & Michael Jenkin (eds.), Levels of Perception: A Festschrift for Ian Howard. Springer Verlag.
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  • Perceptual size discrimination requires awareness and late visual areas: A continuous flash suppression and interocular transfer study.Hayden J. Peel, Joshua A. Sherman, Irene Sperandio, Robin Laycock & Philippe A. Chouinard - 2019 - Consciousness and Cognition 67 (C):77-85.
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  • Aging into Perceptual Control: A Dynamic Causal Modeling for fMRI Study of Bistable Perception.Ehsan Dowlati, Sarah E. Adams, Alexandra B. Stiles & Rosalyn J. Moran - 2016 - Frontiers in Human Neuroscience 10.
    Aging is accompanied by stereotyped changes in functional brain activations, for example a cortical shift in activity patterns from posterior to anterior regions is one hallmark revealed by functional magnetic resonance imaging (fMRI) of aging cognition. Whether these neuronal effects of aging could potentially contribute to an amelioration of or resistance to the cognitive symptoms associated with psychopathology remains to be explored. We used a visual illusion paradigm to address whether aging affects the cortical control of perceptual beliefs and biases. (...)
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  • Acute Alcohol Drinking Promotes Piecemeal Percepts during Binocular Rivalry.Dingcai Cao, Xiaohua Zhuang, Para Kang, Sang W. Hong & Andrea C. King - 2016 - Frontiers in Psychology 7.
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  • Brain Mechanisms of Visual Awareness: Using Perceptual Ambiguity to Investigate the Neural Basis of Image Segmentation and Grouping.David A. Leopold - 1997 - Dissertation, Baylor College of Medicine
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  • Invisible social grouping facilitates the recognition of individual faces.Zhenjie Xu, Hui Chen & Yingying Wang - 2023 - Consciousness and Cognition 113 (C):103556.
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  • Voluntary and Involuntary Attention in Bistable Visual Perception: A MEG Study.Parth Chholak, Vladimir A. Maksimenko, Alexander E. Hramov & Alexander N. Pisarchik - 2020 - Frontiers in Human Neuroscience 14.
    In this study, voluntary and involuntary visual attention focused on different interpretations of a bistable image, were investigated using magnetoencephalography. A Necker cube with sinusoidally modulated pixels' intensity in the front and rear faces with frequencies 6.67 Hz and 8.57 Hz, respectively, was presented to 12 healthy volunteers, who interpreted the cube as either left- or right-oriented. The tags of these frequencies and their second harmonics were identified in the average Fourier spectra of the MEG data recorded from the visual (...)
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  • (1 other version)Visual Attention.Jeremy Wolfe - 2000 - In K.K. De Valois (ed.), Seeing. Academic Press. pp. 335-386.
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