The impact of orienting attention in fast task-irrelevant perceptual learning
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[1] Aaron R. Seitz,et al. Implicit training of nonnative speech stimuli. , 2012, Journal of experimental psychology. General.
[2] Scott Sinnett,et al. Conditions of directed attention inhibit recognition performance for explicitly presented target-aligned irrelevant stimuli. , 2011, Acta psychologica.
[3] Yuhong V Jiang,et al. The role of timing in the attentional boost effect , 2011, Attention, perception & psychophysics.
[4] Aaron R. Seitz,et al. Unattended exposure to components of speech sounds yields same benefits as explicit auditory training , 2010, Cognition.
[5] Yuhong V. Jiang,et al. The Attentional Boost Effect: Transient increases in attention to one task enhance performance in a second task , 2010, Cognition.
[6] Scott O. Murray,et al. Enhanced Memory for Scenes Presented at Behaviorally Relevant Points in Time , 2010, PLoS biology.
[7] Takeo Watanabe,et al. Perceptual learning rules based on reinforcers and attention , 2010, Trends in Cognitive Sciences.
[8] Takeo Watanabe,et al. When attention interrupts learning: Inhibitory effects of attention on TIPL , 2009, Vision Research.
[9] Aaron R. Seitz,et al. The phenomenon of task-irrelevant perceptual learning , 2009, Vision Research.
[10] Aaron R. Seitz,et al. Implicit learning of non‐native speech stimuli. , 2009 .
[11] Aaron R. Seitz,et al. Rewards Evoke Learning of Unconsciously Processed Visual Stimuli in Adult Humans , 2009, Neuron.
[12] A. Kingstone,et al. Rethinking attentional development: reflexive and volitional orienting in children and adults. , 2009, Developmental science.
[13] Aaron R. Seitz,et al. Is Task-Irrelevant Learning Really Task-Irrelevant? , 2008, PloS one.
[14] Aaron R. Seitz,et al. Task-irrelevant learning occurs only when the irrelevant feature is weak , 2008, Current Biology.
[15] Mitsuo Kawato,et al. Effect of spatial distance to the task stimulus on task-irrelevant perceptual learning of static Gabors. , 2007, Journal of vision.
[16] B. Gillam,et al. Stereomotion perception for a monocularly camouflaged stimulus. , 2007, Journal of vision.
[17] Johan Wagemans,et al. Texture and object motion in slant discrimination: failure of reliability-based weighting of cues may be evidence for strong fusion. , 2007, Journal of vision.
[18] Aaron R. Seitz,et al. A common framework for perceptual learning , 2007, Current Opinion in Neurobiology.
[19] Steven R. Holloway,et al. Perceptual Learning of Motion Leads to Faster Flicker Perception , 2006, PloS one.
[20] Yuka Sasaki,et al. Greater Disruption Due to Failure of Inhibitory Control on an Ambiguous Distractor , 2022 .
[21] Aaron R. Seitz,et al. Requirement for high-level processing in subliminal learning , 2005, Current Biology.
[22] Aaron R. Seitz,et al. A unified model for perceptual learning , 2005, Trends in Cognitive Sciences.
[23] Steven R. Holloway,et al. Visual experience can substantially alter critical flicker fusion thresholds , 2005, Human psychopharmacology.
[24] Malcolm W. Brown,et al. Cholinergic Neurotransmission Is Essential for Perirhinal Cortical Plasticity and Recognition Memory , 2003, Neuron.
[25] Aaron R. Seitz,et al. Psychophysics: Is subliminal learning really passive? , 2003, Nature.
[26] M. Posner,et al. Assessing the molecular genetics of attention networks , 2002, BMC Neuroscience.
[27] José E. Náñez,et al. Greater plasticity in lower-level than higher-level visual motion processing in a passive perceptual learning task , 2002, Nature Neuroscience.
[28] D. Gaffan,et al. Unilateral lesions of the cholinergic basal forebrain and fornix in one hemisphere and inferior temporal cortex in the opposite hemisphere produce severe learning impairments in rhesus monkeys. , 2002, Cerebral cortex.
[29] J. Tipples. Eye gaze is not unique: Automatic orienting in response to uninformative arrows , 2002, Psychonomic bulletin & review.
[30] Bruce D. McCandliss,et al. Testing the Efficiency and Independence of Attentional Networks , 2002, Journal of Cognitive Neuroscience.
[31] Takeo Watanabe,et al. Perceptual learning without perception , 2001, Nature.
[32] G. Orban,et al. Practising orientation identification improves orientation coding in V1 neurons , 2001, Nature.
[33] M. Merzenich,et al. Cortical remodelling induced by activity of ventral tegmental dopamine neurons , 2001, Nature.
[34] T. Robbins,et al. Distinct Changes in Cortical Acetylcholine and Noradrenaline Efflux during Contingent and Noncontingent Performance of a Visual Attentional Task , 2001, The Journal of Neuroscience.
[35] Antonio Torralba,et al. Modeling the Shape of the Scene: A Holistic Representation of the Spatial Envelope , 2001, International Journal of Computer Vision.
[36] M. Davidson,et al. Local infusion of scopolamine into intraparietal cortex slows covert orienting in rhesus monkeys. , 2000, Journal of neurophysiology.
[37] R. Marrocco,et al. Alteration of brain noradrenergic activity in rhesus monkeys affects the alerting component of covert orienting , 1997, Psychopharmacology.
[38] C. Frith,et al. A fronto-parietal network for rapid visual information processing: a PET study of sustained attention and working memory , 1996, Neuropsychologia.
[39] F. Gage,et al. Essential role of neocortical acetylcholine in spatial memory , 1995, Nature.
[40] Richard T. Marrocco,et al. Arousal systems , 1994, Current Opinion in Neurobiology.
[41] S. Hochstein,et al. Attentional control of early perceptual learning. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[42] H. Pashler,et al. Improvement in line orientation discrimination is retinally local but dependent on cognitive set , 1992, Perception & psychophysics.
[43] S. Juliano,et al. Cholinergic depletion prevents expansion of topographic maps in somatosensory cortex. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[44] Neil A. Macmillan,et al. Detection Theory: A User's Guide , 1991 .
[45] Eleni L. Vlahou,et al. "Implicit training of nonnative speech stimuli": Correction to Vlahou et al. (2011). , 2012 .
[46] D H Brainard,et al. The Psychophysics Toolbox. , 1997, Spatial vision.
[47] D G Pelli,et al. The VideoToolbox software for visual psychophysics: transforming numbers into movies. , 1997, Spatial vision.
[48] M. Posner,et al. The attention system of the human brain. , 1990, Annual review of neuroscience.