Expectation (and attention) in visual cognition
暂无分享,去创建一个
[1] W. James,et al. The Principles of Psychology. , 1983 .
[2] Roger Ratcliff,et al. A Theory of Memory Retrieval. , 1978 .
[3] J. Pearce,et al. A model for Pavlovian learning: Variations in the effectiveness of conditioned but not of unconditioned stimuli. , 1980 .
[4] M. Posner,et al. Attention and the detection of signals. , 1980, Journal of experimental psychology.
[5] Stephen Grossberg,et al. Nonlinear neural networks: Principles, mechanisms, and architectures , 1988, Neural Networks.
[6] H. Spitzer,et al. Increased attention enhances both behavioral and neuronal performance. , 1988, Science.
[7] S. Yantis,et al. Abrupt visual onsets and selective attention: voluntary versus automatic allocation. , 1990, Journal of experimental psychology. Human perception and performance.
[8] John Duncan,et al. A neural basis for visual search in inferior temporal cortex , 1993, Nature.
[9] K. Nakayama,et al. Priming of pop-out: I. Role of features , 1994, Memory & cognition.
[10] U Polat,et al. Spatial interactions in human vision: from near to far via experience-dependent cascades of connections. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[11] R. Desimone,et al. Parallel neuronal mechanisms for short-term memory. , 1994, Science.
[12] B. C. Motter,et al. Neural correlates of feature selective memory and pop-out in extrastriate area V4 , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[13] A R McIntosh,et al. Functional brain maps of retrieval mode and recovery of episodic information , 1995, Neuroreport.
[14] N. P. Bichot,et al. Visual feature selectivity in frontal eye fields induced by experience in mature macaques , 1996, Nature.
[15] S. Thorpe,et al. Speed of processing in the human visual system , 1996, Nature.
[16] Tsotsos. Limited Capacity of Any Realizable Perceptual System Is a Sufficient Reason for Attentive Behavior , 1997, Consciousness and cognition.
[17] R. Desimone,et al. Responses of Neurons in Inferior Temporal Cortex during Memory- Guided Visual Search , 1998 .
[18] Nancy Kanwisher,et al. A cortical representation of the local visual environment , 1998, Nature.
[19] Marisa Carrasco,et al. Attention improves or impairs visual performance by enhancing spatial resolution , 1998, Nature.
[20] J. M. Hupé,et al. Cortical feedback improves discrimination between figure and background by V1, V2 and V3 neurons , 1998, Nature.
[21] M. Chun,et al. Contextual Cueing: Implicit Learning and Memory of Visual Context Guides Spatial Attention , 1998, Cognitive Psychology.
[22] J. Henderson,et al. High-level scene perception. , 1999, Annual review of psychology.
[23] Stefan Treue,et al. Feature-based attention influences motion processing gain in macaque visual cortex , 1999, Nature.
[24] D. V. von Cramon,et al. Combining electrophysiological and hemodynamic measures of the auditory oddball. , 1999, Psychophysiology.
[25] Leslie G. Ungerleider,et al. Increased Activity in Human Visual Cortex during Directed Attention in the Absence of Visual Stimulation , 1999, Neuron.
[26] T. Yoshiura,et al. Functional MRI study of auditory and visual oddball tasks. , 1999, Neuroreport.
[27] A. Borst. Seeing smells: imaging olfactory learning in bees , 1999, Nature Neuroscience.
[28] P. Lennie,et al. Rapid adaptation in visual cortex to the structure of images. , 1999, Science.
[29] J. Gore,et al. A Stimulus-Driven Approach to Object Identity and Location Processing in the Human Brain , 2000, Neuron.
[30] A. Dickinson,et al. Neuronal coding of prediction errors. , 2000, Annual review of neuroscience.
[31] F. Craik,et al. The effect of divided attention on memory for items and their context. , 2000, Canadian journal of experimental psychology = Revue canadienne de psychologie experimentale.
[32] R. Aslin,et al. PSYCHOLOGICAL SCIENCE Research Article UNSUPERVISED STATISTICAL LEARNING OF HIGHER-ORDER SPATIAL STRUCTURES FROM VISUAL SCENES , 2022 .
[33] T. M. Darcey,et al. Responses of Human Auditory Association Cortex to the Omission of an Expected Acoustic Event , 2001, NeuroImage.
[34] M. Bar,et al. Cortical Mechanisms Specific to Explicit Visual Object Recognition , 2001, Neuron.
[35] M. Chun,et al. Selective attention modulates implicit learning , 2001, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[36] M. Corbetta,et al. Control of goal-directed and stimulus-driven attention in the brain , 2002, Nature Reviews Neuroscience.
[37] István Czigler,et al. Memory-based detection of task-irrelevant visual changes. , 2002, Psychophysiology.
[38] Paul Schrater,et al. Shape perception reduces activity in human primary visual cortex , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[39] J. Bullier,et al. Reaching beyond the classical receptive field of V1 neurons: horizontal or feedback axons? , 2003, Journal of Physiology-Paris.
[40] M. Bar,et al. Cortical Analysis of Visual Context , 2003, Neuron.
[41] P. H. Schiller,et al. State dependent activity in monkey visual cortex , 2004, Experimental Brain Research.
[42] M. Bar. Visual objects in context , 2004, Nature Reviews Neuroscience.
[43] Rajesh P. N. Rao,et al. CHAPTER 91 – Probabilistic Models of Attention Based on Iconic Representations and Predictive Coding , 2005 .
[44] Teemu Rinne,et al. Superior temporal and inferior frontal cortices are activated by infrequent sound duration decrements: an fMRI study , 2005, NeuroImage.
[45] D. Vernon,et al. Event-Related Brain Potential Correlates of Human Auditory Sensory Memory-Trace Formation , 2005, The Journal of Neuroscience.
[46] P. Tiesinga. Stimulus Competition by Inhibitory Interference , 2004, Neural Computation.
[47] Karl J. Friston,et al. A theory of cortical responses , 2005, Philosophical Transactions of the Royal Society B: Biological Sciences.
[48] Raymond J. Dolan,et al. Information theory, novelty and hippocampal responses: unpredicted or unpredictable? , 2005, Neural Networks.
[49] Rajesh P. N. Rao,et al. Neurobiology of Attention , 2005 .
[50] E. Rolls,et al. Neurodynamics of biased competition and cooperation for attention: a model with spiking neurons. , 2005, Journal of neurophysiology.
[51] J. Maunsell,et al. Effects of spatial attention on contrast response functions in macaque area V4. , 2006, Journal of neurophysiology.
[52] K. Grill-Spector,et al. Repetition and the brain: neural models of stimulus-specific effects , 2006, Trends in Cognitive Sciences.
[53] E. Halgren,et al. Top-down facilitation of visual recognition. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[54] A. Nobre,et al. Orienting Attention Based on Long-Term Memory Experience , 2006, Neuron.
[55] John H. R. Maunsell,et al. Feature-based attention in visual cortex , 2006, Trends in Neurosciences.
[56] Paul H. E. Tiesinga. Stimulus competition by inhibitory interference , 2006, Neurocomputing.
[57] Jennifer A. Mangels,et al. Predictive Codes for Forthcoming Perception in the Frontal Cortex , 2006, Science.
[58] M. Bar,et al. Top-down facilitation of visual object recognition: object-based and context-based contributions. , 2006, Progress in brain research.
[59] M. Chun,et al. Interactions between attention and memory , 2007, Current Opinion in Neurobiology.
[60] R. Näätänen,et al. The mismatch negativity (MMN) in basic research of central auditory processing: A review , 2007, Clinical Neurophysiology.
[61] T. Baldeweg. ERP Repetition Effects and Mismatch Negativity Generation A Predictive Coding Perspective , 2007 .
[62] Timothy Edward John Behrens,et al. Contrasting roles for cingulate and orbitofrontal cortex in decisions and social behaviour , 2007, Trends in Cognitive Sciences.
[63] M. Bar,et al. Magnocellular Projections as the Trigger of Top-Down Facilitation in Recognition , 2007, The Journal of Neuroscience.
[64] J. Gold,et al. The neural basis of decision making. , 2007, Annual review of neuroscience.
[65] Nick Donnelly,et al. Nontarget objects can influence perceptual processes during object recognition , 2007, Psychonomic bulletin & review.
[66] Jude F. Mitchell,et al. Differential Attention-Dependent Response Modulation across Cell Classes in Macaque Visual Area V4 , 2007, Neuron.
[67] W. Geisler. Visual perception and the statistical properties of natural scenes. , 2008, Annual review of psychology.
[68] Michael W. Spratling. Predictive coding as a model of biased competition in visual attention , 2008, Vision Research.
[69] Michael J. Constantino,et al. Neural repetition suppression reflects fulfilled perceptual expectations , 2008 .
[70] C. Summerfield,et al. A Neural Representation of Prior Information during Perceptual Inference , 2008, Neuron.
[71] L. Stone,et al. Effects of Prior Information and Reward on Oculomotor and Perceptual Choices , 2008, The Journal of Neuroscience.
[72] Karl J. Friston,et al. Dynamic causal modeling for EEG and MEG , 2009, Human brain mapping.
[73] Michael W. Spratling. Reconciling Predictive Coding and Biased Competition Models of Cortical Function , 2008, Frontiers Comput. Neurosci..
[74] D. Heeger,et al. The Normalization Model of Attention , 2009, Neuron.
[75] G. Boynton. A framework for describing the effects of attention on visual responses , 2009, Vision Research.
[76] Karl J. Friston,et al. A Dual Role for Prediction Error in Associative Learning , 2008, Cerebral cortex.