Visual working memory as visual attention sustained internally over time
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[1] Julie D. Golomb,et al. A taxonomy of external and internal attention. , 2011, Annual review of psychology.
[2] E. Vogel,et al. Quantity, not quality: the relationship between fluid intelligence and working memory capacity , 2010, Psychonomic bulletin & review.
[3] J. Theeuwes,et al. Interactions between working memory, attention and eye movements. , 2009, Acta psychologica.
[4] M. Chun,et al. Selecting and perceiving multiple visual objects , 2009, Trends in Cognitive Sciences.
[5] F. Tong,et al. Decoding reveals the contents of visual working memory in early visual areas , 2009, Nature.
[6] Edward F. Ester,et al. PSYCHOLOGICAL SCIENCE Research Article Stimulus-Specific Delay Activity in Human Primary Visual Cortex , 2022 .
[7] R. Marois,et al. Attentive tracking disrupts feature binding in visual working memory , 2009, Visual cognition.
[8] Julie D. Golomb,et al. The Native Coordinate System of Spatial Attention Is Retinotopic , 2008, The Journal of Neuroscience.
[9] Marvin M. Chun,et al. When a Thought Equals a Look: Refreshing Enhances Perceptual Memory , 2008, Journal of Cognitive Neuroscience.
[10] S. Luck,et al. Discrete fixed-resolution representations in visual working memory , 2008, Nature.
[11] E. Vogel,et al. Perceptual expertise enhances the resolution but not the number of representations in working memory , 2008, Psychonomic bulletin & review.
[12] Ashleigh M. Richard,et al. Understanding the function of visual short-term memory: transsaccadic memory, object correspondence, and gaze correction. , 2008, Journal of experimental psychology. General.
[13] M. D’Esposito. Working memory. , 2008, Handbook of clinical neurology.
[14] T. Klingberg,et al. Prefrontal cortex and basal ganglia control access to working memory , 2008, Nature Neuroscience.
[15] M. Chun,et al. Concurrent working memory load can facilitate selective attention: evidence for specialized load. , 2007, Journal of experimental psychology. Human perception and performance.
[16] A. Nobre,et al. Attentional modulation of object representations in working memory. , 2007, Cerebral cortex.
[17] Marcia K. Johnson,et al. A brief thought can modulate activity in extrastriate visual areas: Top-down effects of refreshing just-seen visual stimuli , 2007, NeuroImage.
[18] E. Vogel,et al. PSYCHOLOGICAL SCIENCE Research Article Visual Working Memory Represents a Fixed Number of Items Regardless of Complexity , 2022 .
[19] Steven J. Luck,et al. Visual short term memory , 2007, Scholarpedia.
[20] G. Woodman,et al. Do the contents of visual working memory automatically influence attentional selection during visual search? , 2007, Journal of experimental psychology. Human perception and performance.
[21] D. Heeger,et al. Sustained Activity in Topographic Areas of Human Posterior Parietal Cortex during Memory-Guided Saccades , 2006, The Journal of Neuroscience.
[22] E. Vogel,et al. Interactions between attention and working memory , 2006, Neuroscience.
[23] M. Chun,et al. Dissociable neural mechanisms supporting visual short-term memory for objects , 2006, Nature.
[24] Katherine M. Armstrong,et al. Visual and oculomotor selection: links, causes and implications for spatial attention , 2006, Trends in Cognitive Sciences.
[25] R. Marois,et al. Visual Short-Term Memory Load Suppresses Temporo-Parietal Junction Activity and Induces Inattentional Blindness , 2005, Psychological science.
[26] Maro G. Machizawa,et al. Neural measures reveal individual differences in controlling access to working memory , 2005, Nature.
[27] Marvin M Chun,et al. Concurrent working memory load can reduce distraction. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[28] Jeffrey W. Cooney,et al. Top-down suppression deficit underlies working memory impairment in normal aging , 2005, Nature Neuroscience.
[29] G. Humphreys,et al. Early, involuntary top-down guidance of attention from working memory. , 2005, Journal of experimental psychology. Human perception and performance.
[30] Maro G. Machizawa,et al. Neural activity predicts individual differences in visual working memory capacity , 2004, Nature.
[31] J. Jay Todd,et al. Capacity limit of visual short-term memory in human posterior parietal cortex , 2004, Nature.
[32] Min-Shik Kim,et al. The role of spatial working memory in visual search efficiency , 2004, Psychonomic bulletin & review.
[33] G. Woodman,et al. Visual search is slowed when visuospatial working memory is occupied , 2004, Psychonomic bulletin & review.
[34] P. Cavanagh,et al. The Capacity of Visual Short-Term Memory is Set Both by Visual Information Load and by Number of Objects , 2004, Psychological science.
[35] Yaoda Xu,et al. Encoding color and shape from different parts of an object in visual short-term memory , 2002, Perception & psychophysics.
[36] Yuhong V. Jiang,et al. Is visual short-term memory object based? Rejection of the “strong-object” hypothesis , 2002, Perception & psychophysics.
[37] Yaoda Xu,et al. Limitations of object-based feature encoding in visual short-term memory. , 2002, Journal of experimental psychology. Human perception and performance.
[38] A. Treisman,et al. Binding in short-term visual memory. , 2002, Journal of experimental psychology. General.
[39] M. Corbetta,et al. Control of goal-directed and stimulus-driven attention in the brain , 2002, Nature Reviews Neuroscience.
[40] G. Woodman,et al. Visual Search Remains Efficient when Visual Working Memory is Full , 2001, Psychological science.
[41] J. Jonides,et al. Overlapping mechanisms of attention and spatial working memory , 2001, Trends in Cognitive Sciences.
[42] N. Cowan. The magical number 4 in short-term memory: A reconsideration of mental storage capacity , 2001, Behavioral and Brain Sciences.
[43] P. Downing,et al. Interactions Between Visual Working Memory and Selective Attention , 2000, Psychological science.
[44] A. Baddeley. The episodic buffer: a new component of working memory? , 2000, Trends in Cognitive Sciences.
[45] Nancy Kanwisher,et al. fMRI evidence for objects as the units of attentional selection , 1999, Nature.
[46] J. Jonides,et al. Storage and executive processes in the frontal lobes. , 1999, Science.
[47] J. Jonides,et al. Rehearsal in spatial working memory. , 1998, Journal of experimental psychology. Human perception and performance.
[48] Edward K. Vogel,et al. The capacity of visual working memory for features and conjunctions , 1997, Nature.
[49] M. Farah,et al. Does visual attention select objects or locations? , 1994, Journal of experimental psychology. General.
[50] R. Rafal,et al. Shifting visual attention between objects and locations: evidence from normal and parietal lesion subjects. , 1994, Journal of experimental psychology. General.
[51] M M Smyth,et al. Interference in immediate spatial memory , 1994, Memory & cognition.
[52] D. Navon. Resources—a theoretical soup stone? , 1984 .
[53] J. Duncan. Selective attention and the organization of visual information. , 1984, Journal of experimental psychology. General.
[54] A. Treisman,et al. A feature-integration theory of attention , 1980, Cognitive Psychology.
[55] Daniel G Bobrow,et al. On data-limited and resource-limited processes , 1975, Cognitive Psychology.
[56] D. Kahneman,et al. Attention and Effort , 1973 .