Seeing the invisible: The scope and limits of unconscious processing in binocular rivalry
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[1] B. Ross. The Psychology of Learning and Motivation: Advances in Research and Theory , 2010 .
[2] Nilli Lavie,et al. The Role of Perceptual Load in Object Recognition , 2009, Journal of experimental psychology. Human perception and performance.
[3] Zhicheng Lin. Unconscious inference and conscious representation: Why primary visual cortex (V1) is directly involved in visual awareness , 2008, Behavioral and Brain Sciences.
[4] R. Blake,et al. PSYCHOLOGICAL SCIENCE Research Article Voluntary Action Influences Visual Competition , 2022 .
[5] R. Blake,et al. Fearful expressions gain preferential access to awareness during continuous flash suppression. , 2007, Emotion.
[6] Kathleen A. Hansen,et al. Topographic Organization in and near Human Visual Area V4 , 2007, The Journal of Neuroscience.
[7] Zhicheng Lin,et al. fMRI Adaptation: Stimulus Specific or Processing Load Specific? , 2007, The Journal of Neuroscience.
[8] Ralph D Freeman,et al. Spatial frequency-specific contrast adaptation originates in the primary visual cortex. , 2007, Journal of neurophysiology.
[9] S. Dehaene,et al. Levels of processing during non-conscious perception: a critical review of visual masking , 2007, Philosophical Transactions of the Royal Society B: Biological Sciences.
[10] Sheng He,et al. Processing of Invisible Stimuli: Advantage of Upright Faces and Recognizable Words in Overcoming Interocular Suppression , 2007, Psychological science.
[11] B. Bahrami,et al. Attentional Load Modulates Responses of Human Primary Visual Cortex to Invisible Stimuli , 2007, Current Biology.
[12] C. Koch,et al. Attention and consciousness: two distinct brain processes , 2007, Trends in Cognitive Sciences.
[13] P. Azzopardi,et al. Evaluation of a 'bias-free' measure of awareness. , 2007, Spatial vision.
[14] Frans A. J. Verstraten,et al. The Scope and Limits of Top-Down Attention in Unconscious Visual Processing , 2006, Current Biology.
[15] Fang Fang,et al. A gender- and sexual orientation-dependent spatial attentional effect of invisible images , 2006, Proceedings of the National Academy of Sciences.
[16] R. Blake,et al. Neural bases of binocular rivalry , 2006, Trends in Cognitive Sciences.
[17] Sheng He,et al. Cortical Responses to Invisible Faces: Dissociating Subsystems for Facial-Information Processing , 2006, Current Biology.
[18] Randolph Blake,et al. Depth of interocular suppression associated with continuous flash suppression, flash suppression, and binocular rivalry. , 2006, Journal of vision.
[19] David Melcher,et al. Subthreshold features of visual objects: Unseen but not unbound , 2006, Vision Research.
[20] S. Dehaene,et al. Nonconscious semantic processing of emotional words modulates conscious access. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[21] G. Boynton,et al. Adaptation: from single cells to BOLD signals , 2006, Trends in Neurosciences.
[22] J. Changeux,et al. Opinion TRENDS in Cognitive Sciences Vol.10 No.5 May 2006 Conscious, preconscious, and subliminal processing: a testable taxonomy , 2022 .
[23] Randolph Blake,et al. Strength of early visual adaptation depends on visual awareness , 2006 .
[24] Luiz Pessoa,et al. Target visibility and visual awareness modulate amygdala responses to fearful faces. , 2006, Cerebral cortex.
[25] Markus Kiefer,et al. Attentional Modulation of Unconscious Automatic Processes: Evidence from Event-related Potentials in a Masked Priming Paradigm , 2006, Journal of Cognitive Neuroscience.
[26] S. Yantis,et al. Selective visual attention and perceptual coherence , 2006, Trends in Cognitive Sciences.
[27] K. Grill-Spector,et al. Repetition and the brain: neural models of stimulus-specific effects , 2006, Trends in Cognitive Sciences.
[28] Robert A. Frazor,et al. Independence of luminance and contrast in natural scenes and in the early visual system , 2005, Nature Neuroscience.
[29] Sabine Kastner,et al. Neural correlates of binocular rivalry in the human lateral geniculate nucleus , 2005, Nature Neuroscience.
[30] R. Deichmann,et al. Eye-specific effects of binocular rivalry in the human lateral geniculate nucleus , 2005, Nature.
[31] R. Blake,et al. The Interaction between Binocular Rivalry and Negative Afterimages , 2005, Current Biology.
[32] Mark H. Johnson. Subcortical face processing , 2005, Nature Reviews Neuroscience.
[33] F. Fang,et al. Cortical responses to invisible objects in the human dorsal and ventral pathways , 2005, Nature Neuroscience.
[34] C. Koch,et al. Continuous flash suppression reduces negative afterimages , 2005, Nature Neuroscience.
[35] Randolph Blake,et al. Psychophysical magic: rendering the visible ‘invisible’ , 2005, Trends in Cognitive Sciences.
[36] Leslie G. Ungerleider,et al. Visual awareness and the detection of fearful faces. , 2005, Emotion.
[37] Stanislas Dehaene,et al. Subliminal Convergence of Kanji and Kana Words: Further Evidence for Functional Parcellation of the Posterior Temporal Cortex in Visual Word Perception , 2005, Journal of Cognitive Neuroscience.
[38] S. Dehaene,et al. A direct intracranial record of emotions evoked by subliminal words. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[39] L. Pessoa. To what extent are emotional visual stimuli processed without attention and awareness? , 2005, Current Opinion in Neurobiology.
[40] N. Block. Two neural correlates of consciousness , 2005, Trends in Cognitive Sciences.
[41] N. Lavie. Distracted and confused?: Selective attention under load , 2005, Trends in Cognitive Sciences.
[42] Christof Koch,et al. Face Adaptation Depends on Seeing the Face , 2005, Neuron.
[43] 宁北芳,et al. 疟原虫var基因转换速率变化导致抗原变异[英]/Paul H, Robert P, Christodoulou Z, et al//Proc Natl Acad Sci U S A , 2005 .
[44] Randolph Blake,et al. Traveling waves of activity in primary visual cortex during binocular rivalry , 2005, Nature Neuroscience.
[45] Sabine Kastner,et al. Visual attention as a multilevel selection process , 2004, Cognitive, affective & behavioral neuroscience.
[46] Helen L Jamison,et al. Morphology and the internal structure of words. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[47] Lawrence C. Sincich,et al. Bypassing V1: a direct geniculate input to area MT , 2004, Nature Neuroscience.
[48] K. Forster,et al. Forty-five years after Broadbent (1958): still no identification without attention. , 2004, Psychological review.
[49] Fang Fang,et al. Strong influence of test patterns on the perception of motion aftereffect and position. , 2004, Journal of vision.
[50] S. Shipp. The brain circuitry of attention , 2004, Trends in Cognitive Sciences.
[51] J B Poline,et al. Letter Binding and Invariant Recognition of Masked Words , 2004, Psychological science.
[52] Brian N. Pasley,et al. Subcortical Discrimination of Unperceived Objects during Binocular Rivalry , 2004, Neuron.
[53] P. Lennie,et al. Profound Contrast Adaptation Early in the Visual Pathway , 2004, Neuron.
[54] Adam P. Morris,et al. Amygdala Responses to Fearful and Happy Facial Expressions under Conditions of Binocular Suppression , 2004, The Journal of Neuroscience.
[55] Reza Rajimehr,et al. Unconscious Orientation Processing , 2004, Neuron.
[56] Colin Blakemore,et al. Interactions between orientations in human vision , 1973, Experimental Brain Research.
[57] Sabine Kastner,et al. Functional imaging of the human lateral geniculate nucleus and pulvinar. , 2004, Journal of neurophysiology.
[58] J. Gibson,et al. ADAPTATION , AFTEREFFECT AND CONTRAST IN THE PERCEPTION OF TILTED LINES , 2004 .
[59] David Alais,et al. Increasing depth of binocular rivalry suppression along two visual pathways , 2003, Vision Research.
[60] A. Anderson,et al. Neural Correlates of the Automatic Processing of Threat Facial Signals , 2022 .
[61] R. Dolan,et al. Distinct spatial frequency sensitivities for processing faces and emotional expressions , 2003, Nature Neuroscience.
[62] F. McGlone,et al. The role of spatial attention in the processing of facial expression: An ERP study of rapid brain responses to six basic emotions , 2003, Cognitive, affective & behavioral neuroscience.
[63] M. Eimer,et al. The processing of emotional facial expression is gated by spatial attention: evidence from event-related brain potentials. , 2003, Brain research. Cognitive brain research.
[64] D. Zald. The human amygdala and the emotional evaluation of sensory stimuli , 2003, Brain Research Reviews.
[65] V. Lamme. Why visual attention and awareness are different , 2003, Trends in Cognitive Sciences.
[66] Alvaro Pascual-Leone,et al. Repetitive transcranial magnetic stimulation of human area MT/V5 disrupts perception and storage of the motion aftereffect , 2002, Neuropsychologia.
[67] Leslie G. Ungerleider,et al. Attentional control of the processing of neural and emotional stimuli. , 2002, Brain research. Cognitive brain research.
[68] M. Pinsk,et al. Attention modulates responses in the human lateral geniculate nucleus , 2002, Nature Neuroscience.
[69] D. Amaral,et al. Some observations on cortical inputs to the macaque monkey amygdala: An anterograde tracing study , 2002, The Journal of comparative neurology.
[70] Leslie G. Ungerleider,et al. Neural processing of emotional faces requires attention , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[71] P. Perona,et al. Rapid natural scene categorization in the near absence of attention , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[72] M. Corbetta,et al. Control of goal-directed and stimulus-driven attention in the brain , 2002, Nature Reviews Neuroscience.
[73] Stefan Wiens,et al. Unawareness is more than a chance event: comment on Lovibond and Shanks (2002). , 2002, Journal of experimental psychology. Animal behavior processes.
[74] D. Shanks,et al. The role of awareness in Pavlovian conditioning: empirical evidence and theoretical implications. , 2002, Journal of experimental psychology. Animal behavior processes.
[75] D. Heeger,et al. Neuronal Basis of the Motion Aftereffect Reconsidered , 2001, Neuron.
[76] A. Noë,et al. A sensorimotor account of vision and visual consciousness. , 2001, The Behavioral and brain sciences.
[77] H. Pashler,et al. Confidence and Accuracy of Near-Threshold Discrimination Responses , 2001, Consciousness and Cognition.
[78] J. Fadili,et al. The neural representation of nouns and verbs: PET studies. , 2001, Brain : a journal of neurology.
[79] J B Poline,et al. Cerebral mechanisms of word masking and unconscious repetition priming , 2001, Nature Neuroscience.
[80] L. Weiskrantz,et al. Differential extrageniculostriate and amygdala responses to presentation of emotional faces in a cortically blind field. , 2001, Brain : a journal of neurology.
[81] Sheng He,et al. Orientation-selective adaptation and tilt after-effect from invisible patterns , 2001, Nature.
[82] A. Anderson,et al. Lesions of the human amygdala impair enhanced perception of emotionally salient events , 2001, Nature.
[83] Stephen A. Engel,et al. Interocular rivalry revealed in the human cortical blind-spot representation , 2001, Nature.
[84] Rainer Goebel,et al. Sustained extrastriate cortical activation without visual awareness revealed by fMRI studies of hemianopic patients , 2001, Vision Research.
[85] R. Dolan,et al. Effects of Attention and Emotion on Face Processing in the Human Brain An Event-Related fMRI Study , 2001, Neuron.
[86] Martin J. McKeown,et al. When Do Epileptic Seizures Really Begin? , 2001, Neuron.
[87] R. Blake. © 2001 Kluwer Academic Publishers. Printed in the Netherlands. 5 A Primer on Binocular Rivalry, Including Current Controversies , 2000 .
[88] J. Eastwood,et al. Perception without awareness: perspectives from cognitive psychology , 2001, Cognition.
[89] T. S. Lee,et al. Dynamics of subjective contour formation in the early visual cortex. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[90] Patrick Cavanagh,et al. Early binding of feature pairs for visual perception , 2001, Nature Neuroscience.
[91] David M. Rothwarf,et al. Afterimage of Perceptually Filled-in Surface , 2001 .
[92] D. Heeger,et al. Neuronal activity in human primary visual cortex correlates with perception during binocular rivalry , 2000, Nature Neuroscience.
[93] N. Kanwisher,et al. Visual attention: Insights from brain imaging , 2000, Nature Reviews Neuroscience.
[94] V. Lamme,et al. The distinct modes of vision offered by feedforward and recurrent processing , 2000, Trends in Neurosciences.
[95] Alex Martin,et al. Representation of Manipulable Man-Made Objects in the Dorsal Stream , 2000, NeuroImage.
[96] Sheng He,et al. Visible binocular beats from invisible monocular stimuli during binocular rivalry , 2000, Current Biology.
[97] K. Grill-Spector,et al. The dynamics of object-selective activation correlate with recognition performance in humans , 2000, Nature Neuroscience.
[98] Joseph E LeDoux. Emotion Circuits in the Brain , 2000 .
[99] L Weiskrantz,et al. Non-conscious recognition of affect in the absence of striate cortex. , 1999, Neuroreport.
[100] Jonathan Grainger,et al. Unconscious semantic priming from pictures , 1999, Cognition.
[101] Jonathan D. Cohen,et al. Role of locus coeruleus in attention and behavioral flexibility , 1999, Biological Psychiatry.
[102] Frans A. J. Verstraten,et al. Motion transparency: making models of motion perception transparent , 1999, Trends in Cognitive Sciences.
[103] Lawrence Weiskrantz,et al. Consciousness Lost and Found: A Neuropsychological Exploration , 1999 .
[104] J. Wolfe,et al. The Psychophysical Evidence for a Binding Problem in Human Vision , 1999, Neuron.
[105] A. Treisman. Solutions to the Binding Problem Progress through Controversy and Convergence , 1999, Neuron.
[106] E. Rolls,et al. The Neurophysiology of Backward Visual Masking: Information Analysis , 1999, Journal of Cognitive Neuroscience.
[107] Randolph Blake,et al. Perceptual Priming by Invisible Motion , 1999 .
[108] R. Dolan,et al. A subcortical pathway to the right amygdala mediating "unseen" fear. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[109] Ravi S. Menon,et al. Recovery of fMRI activation in motion area MT following storage of the motion aftereffect. , 1999, Journal of neurophysiology.
[110] E. Halgren,et al. Location of human face‐selective cortex with respect to retinotopic areas , 1999, Human brain mapping.
[111] K Ugurbil,et al. Human primary visual cortex and lateral geniculate nucleus activation during visual imagery , 1998, Neuroreport.
[112] E. R. Cohen,et al. Close correlation between activity in brain area MT/V5 and the perception of a visual motion aftereffect , 1998, Current Biology.
[113] Frans A. J. Verstraten,et al. The Motion Aftereffect:A Modern Perspective , 1998 .
[114] K. Nakayama,et al. Binocular Rivalry and Visual Awareness in Human Extrastriate Cortex , 1998, Neuron.
[115] Melvyn A. Goodale,et al. Probing Unconscious Visual Processing with the McCollough Effect , 1998, Consciousness and Cognition.
[116] C. B. Cave,et al. Binocular Rivalry Disrupts Visual Priming , 1998 .
[117] M. Farah,et al. What is "special" about face perception? , 1998, Psychological review.
[118] S. Edelman,et al. Cue-Invariant Activation in Object-Related Areas of the Human Occipital Lobe , 1998, Neuron.
[119] G. Rees,et al. Neural correlates of perceptual rivalry in the human brain. , 1998, Science.
[120] R. Dolan,et al. Conscious and unconscious emotional learning in the human amygdala , 1998, Nature.
[121] Frans A. J. Verstraten,et al. The motion aftereffect , 1998, Trends in Cognitive Sciences.
[122] A. Dale,et al. Functional-Anatomic Correlates of Object Priming in Humans Revealed by Rapid Presentation Event-Related fMRI , 1998, Neuron.
[123] S. Rauch,et al. Masked Presentations of Emotional Facial Expressions Modulate Amygdala Activity without Explicit Knowledge , 1998, The Journal of Neuroscience.
[124] N. Wade. A natural history of vision , 1998 .
[125] Randolph Blake,et al. Binocular Rivalry and Motion Perception , 1998, Journal of Cognitive Neuroscience.
[126] R. Blake. What Can Be “Perceived” in the Absence of Visual Awareness? , 1997 .
[127] R. Wurtz,et al. Monkey posterior parietal cortex neurons antidromically activated from superior colliculus. , 1997, Journal of neurophysiology.
[128] Keiji Tanaka. Mechanisms of visual object recognition: monkey and human studies , 1997, Current Opinion in Neurobiology.
[129] N. Kanwisher,et al. The Fusiform Face Area: A Module in Human Extrastriate Cortex Specialized for Face Perception , 1997, The Journal of Neuroscience.
[130] David L. Sheinberg,et al. The role of temporal cortical areas in perceptual organization. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[131] S. Nishida,et al. Contrast Dependencies of Two Types of Motion Aftereffect , 1997, Vision Research.
[132] Joseph E LeDoux,et al. Stimulus generalization of fear responses: effects of auditory cortex lesions in a computational model and in rats. , 1997, Cerebral cortex.
[133] P. McCormick. Orienting attention without awareness. , 1997, Journal of experimental psychology. Human perception and performance.
[134] P. Cavanagh,et al. Attentional resolution and the locus of visual awareness , 1996, Nature.
[135] A. Treisman. The binding problem , 1996, Current Opinion in Neurobiology.
[136] N. Logothetis,et al. Activity changes in early visual cortex reflect monkeys' percepts during binocular rivalry , 1996, Nature.
[137] Patrick Cavanagh,et al. Attentional resolution and the locus of awareness , 1996 .
[138] Keiji Tanaka,et al. Inferotemporal cortex and object vision. , 1996, Annual review of neuroscience.
[139] R. Malach,et al. Object-related activity revealed by functional magnetic resonance imaging in human occipital cortex. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[140] N. Lavie. Perceptual load as a necessary condition for selective attention. , 1995, Journal of experimental psychology. Human perception and performance.
[141] C. Koch,et al. Are we aware of neural activity in primary visual cortex? , 1995, Nature.
[142] A. Dale,et al. Visual motion aftereffect in human cortical area MT revealed by functional magnetic resonance imaging , 1995, Nature.
[143] R A Andersen,et al. Transparent motion perception as detection of unbalanced motion signals. I. Psychophysics , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[144] M. Posner. Attention: the mechanisms of consciousness. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[145] P Wenderoth,et al. Psychophysical evidence for area V2 involvement in the reduction of subjective contour tilt aftereffects by binocular rivalry , 1994, Visual Neuroscience.
[146] George L. Gerstein,et al. Feature-linked synchronization of thalamic relay cell firing induced by feedback from the visual cortex , 1994, Nature.
[147] Frans A. J. Verstraten,et al. Movement aftereffect of bi-vectorial transparent motion , 1994, Vision Research.
[148] R. Blake,et al. Visually guided attention is neutralized when informative cues are visible but unperceived , 1993, Vision Research.
[149] F. Bloom,et al. Modulation of early sensory processing in human auditory cortex during auditory selective attention. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[150] D. Alais,et al. Reduction of a pattern-induced motion aftereffect by binocular rivalry suggests the involvement of extrastriate mechanisms , 1993, Visual Neuroscience.
[151] John H. R. Maunsell,et al. How parallel are the primate visual pathways? , 1993, Annual review of neuroscience.
[152] R. Bornstein,et al. Perception without Awareness: Cognitive, Clinical and Social Perspectives , 1993 .
[153] Joseph E LeDoux,et al. Equipotentiality of thalamo-amygdala and thalamo-cortico-amygdala circuits in auditory fear conditioning , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[154] A. Mikami,et al. Activity of single neurons in the monkey amygdala during performance of a visual discrimination task. , 1992, Journal of neurophysiology.
[155] S. Petersen,et al. The pulvinar and visual salience , 1992, Trends in Neurosciences.
[156] M. Goodale,et al. Separate visual pathways for perception and action , 1992, Trends in Neurosciences.
[157] Eyal M. Reingold,et al. Measuring unconscious perceptual processes , 1992 .
[158] John P. Aggleton,et al. The amygdala: Neurobiological aspects of emotion, memory, and mental dysfunction. , 1992 .
[159] Shepard Siegel,et al. Pairings in Learning and Perception: Pavlovian Conditioning and Contingent Aftereffects , 1992 .
[160] K L Shapiro,et al. Temporary suppression of visual processing in an RSVP task: an attentional blink? . , 1992, Journal of experimental psychology. Human perception and performance.
[161] Leslie G. Ungerleider,et al. Lesions of inferior temporal area TE in infant monkeys alter cortico-amygdalar projections. , 1991, Neuroreport.
[162] R. Desimone,et al. A neural mechanism for working and recognition memory in inferior temporal cortex. , 1991, Science.
[163] Avishai Henik,et al. Extrageniculate Contributions to Reflex Visual Orienting in Normal Humans: A Temporal Hemifield Advantage , 1991, Journal of Cognitive Neuroscience.
[164] Jeff F. Miller. The flanker compatibility effect as a function of visual angle, attentional focus, visual transients, and perceptual load: A search for boundary conditions , 1991, Perception & psychophysics.
[165] Leslie G. Ungerleider,et al. Connections of inferior temporal areas TE and TEO with medial temporal- lobe structures in infant and adult monkeys , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[166] Neil A. Macmillan,et al. Detection Theory: A User's Guide , 1991 .
[167] P. Goldman-Rakic,et al. Preface: Cerebral Cortex Has Come of Age , 1991 .
[168] D. J. Felleman,et al. Distributed hierarchical processing in the primate cerebral cortex. , 1991, Cerebral cortex.
[169] R. Blake,et al. The neural site of binocular rivalry relative to the analysis of motion in the human visual system , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[170] J. C. Johnston,et al. On the locus of visual selection: evidence from focused attention tasks , 1990 .
[171] J. C. Johnston,et al. On the locus of visual selection: evidence from focused attention tasks. , 1990, Journal of experimental psychology. Human perception and performance.
[172] K. Nakayama,et al. Subjective contours, tilt aftereffects, and visual cortical organization , 1989, Vision Research.
[173] N. Graham. Visual Pattern Analyzers , 1989 .
[174] D. C. Van Essen,et al. Concurrent processing streams in monkey visual cortex , 1988, Trends in Neurosciences.
[175] D. Hubel,et al. Segregation of form, color, movement, and depth: anatomy, physiology, and perception. , 1988, Science.
[176] P Wenderoth,et al. Possible Neural Substrates for Orientation Analysis and Perception , 1987, Perception.
[177] M. Yukie,et al. Amygdalofugal and amygdalopetal connections with modality‐specific visual cortical areas in macaques (macaca fuscata, M. mulatta, and M. fascicularis) , 1987, The Journal of comparative neurology.
[178] Daniel Holender,et al. Semantic activation without conscious identification in dichotic listening, parafoveal vision, and visual masking: A survey and appraisal , 1986, Behavioral and Brain Sciences.
[179] G. Blasdel,et al. Intrinsic connections of macaque striate cortex: afferent and efferent connections of lamina 4C , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[180] I. Ohzawa,et al. Contrast gain control in the cat's visual system. , 1985, Journal of neurophysiology.
[181] M. Bravo,et al. Binocular rivalry suppression interferes with phase adaptation , 1985, Perception & psychophysics.
[182] D. Bouwhuis,et al. Attention and performance X : control of language processes , 1986 .
[183] M. Deschenes,et al. The thalamus as a neuronal oscillator , 1984, Brain Research Reviews.
[184] A. Cowey,et al. Retinal ganglion cells that project to the dorsal lateral geniculate nucleus in the macaque monkey , 1984, Neuroscience.
[185] J W McClurkin,et al. Visual cortical input alters spatial tuning in monkey lateral geniculate nucleus cells. , 1984, The Journal of physiology.
[186] J. Duncan. Selective attention and the organization of visual information. , 1984, Journal of experimental psychology. General.
[187] C. Enroth-Cugell,et al. Chapter 9 Visual adaptation and retinal gain controls , 1984 .
[188] M. Posner,et al. Components of visual orienting , 1984 .
[189] S. Yantis,et al. Abrupt visual onsets and selective attention: evidence from visual search. , 1984, Journal of experimental psychology. Human perception and performance.
[190] R. Blake,et al. Binocular rivalry and semantic processing: out of sight, out of mind. , 1983, Journal of experimental psychology. Human perception and performance.
[191] D. G. Albrecht,et al. Spatial frequency selectivity of cells in macaque visual cortex , 1982, Vision Research.
[192] D. Burr,et al. Functional implications of cross-orientation inhibition of cortical visual cells. I. Neurophysiological evidence , 1982, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[193] R. Mansfield,et al. Analysis of visual behavior , 1982 .
[194] Leslie G. Ungerleider. Two cortical visual systems , 1982 .
[195] R. P. O'Shea,et al. Interocular transfer of the motion after-effect is not reduced by binocular rivalry , 1981, Vision Research.
[196] R. Blake,et al. A novel illusion of bars made from triangles. , 1981, Science.
[197] Svein Magnussen,et al. Linear summation of tilt illusion and tilt aftereffect , 1980, Vision Research.
[198] L A Riggs,et al. Visual aftereffects derived from inspection of orthogonally moving patterns. , 1980, Science.
[199] S Magnussen,et al. Adapting to two orientations: disinhibition in a visual aftereffect. , 1980, Science.
[200] M. Posner,et al. Orienting of Attention* , 1980, The Quarterly journal of experimental psychology.
[201] J. Frisby. Seeing: Illusion, Brain and Mind , 1979 .
[202] L. Riggs,et al. Binocular interactions during establishment of McCollough effects , 1978, Vision Research.
[203] N. Wade,et al. The influence of colour and contour rivalry on the magnitude of the tilt after-effect , 1978, Vision Research.
[204] P. Schiller,et al. Functional specificity of lateral geniculate nucleus laminae of the rhesus monkey. , 1978, Journal of neurophysiology.
[205] R. Shiffrin,et al. Controlled and automatic human information processing: I , 1977 .
[206] Walter Schneider,et al. Controlled and Automatic Human Information Processing: 1. Detection, Search, and Attention. , 1977 .
[207] R. Fox,et al. Effect of binocular rivalry suppression on the motion aftereffect , 1975, Vision Research.
[208] R. Blake,et al. Binocular rivalry suppression: insensitive to spatial frequency and orientation change. , 1974, Vision research.
[209] ROBERT FOX,et al. Adaptation to invisible gratings and the site of binocular rivalry suppression , 1974, Nature.
[210] M. Erdelyi. A new look at the new look: perceptual defense and vigilance. , 1974, Psychological review.
[211] David Ingle,et al. Evolutionary perspectives on the function of the optic tectum. , 1973, Brain, behavior and evolution.
[212] L. Maffei,et al. The visual cortex as a spatial frequency analyser. , 1973, Vision research.
[213] Easton Ta. On the normal use of reflexes. , 1972 .
[214] R. Fox,et al. Independence between binocular rivalry suppression duration and magnitude of suppression. , 1972, Journal of experimental psychology.
[215] C. Blakemore,et al. The orientation specificity of two visual after‐effects , 1971, The Journal of physiology.
[216] C. Blakemore,et al. Lateral Inhibition between Orientation Detectors in the Human Visual System , 1970, Nature.
[217] R. Fox,et al. Increment detection thresholds during binocular rivalry suppression , 1970 .
[218] C. Blakemore,et al. Size Adaptation: A New Aftereffect , 1969, Science.
[219] C Blakemore,et al. On the existence of neurones in the human visual system selectively sensitive to the orientation and size of retinal images , 1969, The Journal of physiology.
[220] R. Fox,et al. Detection of motion during binocular rivalry suppression. , 1968, Journal of experimental psychology.
[221] D. Hubel,et al. Receptive fields and functional architecture of monkey striate cortex , 1968, The Journal of physiology.
[222] W. Cobb,et al. Cerebral Potentials evoked by Pattern Reversal and their Suppression in Visual Rivalry , 1967, Nature.
[223] K. M. Banreti-Fuchs. Perception without awareness. , 1967, Acta psychologica.
[224] D. M. Green,et al. Signal detection theory and psychophysics , 1966 .
[225] C. McCollough. Color Adaptation of Edge-Detectors in the Human Visual System , 1965, Science.
[226] R. Lansing. Electroencephalographic Correlates of Binocular Rivalry in Man , 1964, Science.
[227] M C FLOM,et al. VISUAL RESOLUTION AND CONTOUR INTERACTION. , 1963, Journal of the Optical Society of America.
[228] D. Hubel,et al. Receptive fields, binocular interaction and functional architecture in the cat's visual cortex , 1962, The Journal of physiology.
[229] C. Eriksen,et al. Discrimination and learning without awareness: a methodological survey and evaluation. , 1960, Psychological review.
[230] D. Hubel. Single unit activity in lateral geniculate body and optic tract of unrestrained cats , 1960, The Journal of physiology.
[231] K. J. W. CRAIK,et al. Origin of Visual After-images , 1940, Nature.
[232] J. Gibson. Adaptation, after-effect, and contrast in the perception of tilted lines. II. Simultaneous contrast and the areal restriction of the after-effect. , 1937 .
[233] J. Gibson,et al. Adaptation, after-effect and contrast in the perception of tilted lines. I. Quantitative studies , 1937 .
[234] R. Addams. LI. An account of a peculiar optical phænomenon seen after having looked at a moving body , 1834 .