Modeling the auditory scene: predictive regularity representations and perceptual objects
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[1] Shaul Hochstein,et al. Momentary Fluctuations in Allocation of Attention: Cross-modal Effects of Visual Task Load on Auditory Discrimination , 2010, Journal of Cognitive Neuroscience.
[2] I. Winkler,et al. Deviance detection in congruent audiovisual speech: Evidence for implicit integrated audiovisual memory representations , 2009, Biological Psychology.
[3] Karl J. Friston,et al. Cortical circuits for perceptual inference , 2009, Neural Networks.
[4] C. Summerfield,et al. Expectation (and attention) in visual cognition , 2009, Trends in Cognitive Sciences.
[5] I. Winkler,et al. I Heard That Coming: Event-Related Potential Evidence for Stimulus-Driven Prediction in the Auditory System , 2009, The Journal of Neuroscience.
[6] M. Malmierca,et al. Stimulus-Specific Adaptation in the Inferior Colliculus of the Anesthetized Rat , 2009, The Journal of Neuroscience.
[7] Karl J. Friston,et al. The mismatch negativity: A review of underlying mechanisms , 2009, Clinical Neurophysiology.
[8] J. Rauschecker,et al. Brain Activation during Anticipation of Sound Sequences , 2009, The Journal of Neuroscience.
[9] Gábor P. Háden,et al. Newborn infants detect the beat in music , 2009, Proceedings of the National Academy of Sciences.
[10] E. Sussman,et al. Neural representations of auditory input accommodate to the context in a dynamically changing acoustic environment , 2009, The European journal of neuroscience.
[11] E. Schröger,et al. Suppression of the auditory N1 event-related potential component with unpredictable self-initiated tones: evidence for internal forward models with dynamic stimulation. , 2008, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[12] D. Pressnitzer,et al. Perceptual Organization of Sound Begins in the Auditory Periphery , 2008, Current Biology.
[13] Erich Schröger,et al. Rapid extraction of auditory feature contingencies , 2008, NeuroImage.
[14] R. Näätänen,et al. The mismatch negativity (MMN) in basic research of central auditory processing: A review , 2007, Clinical Neurophysiology.
[15] R. Näätänen,et al. Preperceptual human number sense for sequential sounds, as revealed by mismatch negativity brain response? , 2007, Cerebral cortex.
[16] I. Winkler. Interpreting the Mismatch Negativity , 2007 .
[17] E. Sussman. A New View on the MMN and Attention Debate The Role of Context in Processing Auditory Events , 2007 .
[18] I. Czigler. Visual mismatch negativity: Violation of nonattended environmental regularities , 2007 .
[19] D. Eagleman,et al. The Effect of Predictability on Subjective Duration , 2007, PloS one.
[20] J. Snyder,et al. Toward a neurophysiological theory of auditory stream segregation. , 2007, Psychological bulletin.
[21] M. Bar. The proactive brain: using analogies and associations to generate predictions , 2007, Trends in Cognitive Sciences.
[22] I. Winkler,et al. Processing acoustic change and novelty in newborn infants , 2007, The European journal of neuroscience.
[23] R. Kakigi,et al. Objective examination for two-point stimulation using a somatosensory oddball paradigm: An MEG study , 2007, Clinical Neurophysiology.
[24] M. Tervaniemi,et al. The mismatch negativity in cognitive and clinical neuroscience: Theoretical and methodological considerations , 2007, Biological Psychology.
[25] R. Näätänen,et al. Measurement of extensive auditory discrimination profiles using the mismatch negativity (MMN) of the auditory event-related potential (ERP) , 2007, Clinical Neurophysiology.
[26] P. Paavilainen,et al. Preattentive detection of nonsalient contingencies between auditory features , 2007, Neuroreport.
[27] J. Hupé,et al. Temporal Dynamics of Auditory and Visual Bistability Reveal Common Principles of Perceptual Organization , 2006, Current Biology.
[28] I. Winkler,et al. Object representation in the human auditory system , 2006, The European journal of neuroscience.
[29] I. Winkler,et al. The role of predictive models in the formation of auditory streams , 2006, Journal of Physiology-Paris.
[30] C. Fischer,et al. Improved prediction of awakening or nonawakening from severe anoxic coma using tree-based classification analysis* , 2006, Critical care medicine.
[31] T. Baldeweg. Repetition effects to sounds: evidence for predictive coding in the auditory system , 2006, Trends in Cognitive Sciences.
[32] M. Malmierca,et al. Novelty detector neurons in the mammalian auditory midbrain , 2005, The European journal of neuroscience.
[33] D. Vernon,et al. Event-Related Brain Potential Correlates of Human Auditory Sensory Memory-Trace Formation , 2005, The Journal of Neuroscience.
[34] J. Rauschecker,et al. Perceptual Organization of Tone Sequences in the Auditory Cortex of Awake Macaques , 2005, Neuron.
[35] I. Winkler,et al. Event-related brain potentials reveal multiple stages in the perceptual organization of sound. , 2005, Brain research. Cognitive brain research.
[36] I. Winkler,et al. Preattentive representation of feature conjunctions for concurrent spatially distributed auditory objects. , 2005, Brain research. Cognitive brain research.
[37] I. Winkler,et al. Auditory organization of sound sequences by a temporal or numerical regularity--a mismatch negativity study comparing musicians and non-musicians. , 2005, Brain research. Cognitive brain research.
[38] Karl J. Friston,et al. A theory of cortical responses , 2005, Philosophical Transactions of the Royal Society B: Biological Sciences.
[39] David J. M. Kraemer,et al. Musical imagery: Sound of silence activates auditory cortex , 2005, Nature.
[40] A. Bregman,et al. Attentional modulation of electrophysiological activity in auditory cortex for unattended sounds within multistream auditory environments , 2005, Cognitive, affective & behavioral neuroscience.
[41] István Winkler,et al. Preattentive Binding of Auditory and Visual Stimulus Features , 2005, Journal of Cognitive Neuroscience.
[42] I. Nelken,et al. Multiple Time Scales of Adaptation in Auditory Cortex Neurons , 2004, The Journal of Neuroscience.
[43] T. Griffiths,et al. Opinion: What is an auditory object? , 2004 .
[44] T. Griffiths,et al. What is an auditory object? , 2004, Nature Reviews Neuroscience.
[45] S. Hochstein,et al. The reverse hierarchy theory of visual perceptual learning , 2004, Trends in Cognitive Sciences.
[46] R. Carlyon. How the brain separates sounds , 2004, Trends in Cognitive Sciences.
[47] J. Arezzo,et al. Auditory stream segregation in monkey auditory cortex: effects of frequency separation, presentation rate, and tone duration. , 2004, The Journal of the Acoustical Society of America.
[48] M. Tervaniemi,et al. From symbols to sounds: visual symbolic information activates sound representations. , 2004, Psychophysiology.
[49] R. Carlyon,et al. Effects of location, frequency region, and time course of selective attention on auditory scene analysis. , 2004, Journal of experimental psychology. Human perception and performance.
[50] M. Bar. Visual objects in context , 2004, Nature Reviews Neuroscience.
[51] A. Dale,et al. Human posterior auditory cortex gates novel sounds to consciousness. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[52] István Winkler,et al. Processing abstract auditory features in the human auditory cortex , 2003, NeuroImage.
[53] I. Winkler,et al. Human auditory cortex tracks task-irrelevant sound sources , 2003, Neuroreport.
[54] I. Winkler,et al. Newborn infants can organize the auditory world , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[55] I. Nelken,et al. Processing of low-probability sounds by cortical neurons , 2003, Nature Neuroscience.
[56] Claude Alain,et al. Neural activity associated with distinguishing concurrent auditory objects. , 2002, The Journal of the Acoustical Society of America.
[57] A Fishbach,et al. Auditory edge detection: a neural model for physiological and psychoacoustical responses to amplitude transients. , 2001, Journal of neurophysiology.
[58] M. Kubovy,et al. Auditory and visual objects , 2001, Cognition.
[59] I. Winkler,et al. ‘Primitive intelligence’ in the auditory cortex , 2001, Trends in Neurosciences.
[60] I. Winkler,et al. Preattentive extraction of abstract feature conjunctions from auditory stimulation as reflected by the mismatch negativity (MMN). , 2001, Psychophysiology.
[61] S. Molholm,et al. Evidence that the mismatch negativity system works on the basis of objects , 2000, Neuroreport.
[62] Mitsuo Kawato,et al. Internal models for motor control and trajectory planning , 1999, Current Opinion in Neurobiology.
[63] I. Winkler,et al. The concept of auditory stimulus representation in cognitive neuroscience. , 1999, Psychological bulletin.
[64] R. Ilmoniemi,et al. Brain responses reveal the learning of foreign language phonemes. , 1999, Psychophysiology.
[65] A Treisman,et al. Feature binding, attention and object perception. , 1998, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[66] I. Winkler,et al. Two separate codes for missing-fundamental pitch in the human auditory cortex. , 1997, The Journal of the Acoustical Society of America.
[67] M. Tervaniemi,et al. Development of a memory trace for a complex sound in the human brain. , 1993, Neuroreport.
[68] J. Duncan,et al. Visual search and stimulus similarity. , 1989, Psychological review.
[69] T. Picton,et al. The N1 wave of the human electric and magnetic response to sound: a review and an analysis of the component structure. , 1987, Psychophysiology.
[70] R. Gregory. Perceptions as hypotheses. , 1980, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[71] H. Tiitinen,et al. Mismatch negativity (MMN), the deviance-elicited auditory deflection, explained. , 2010, Psychophysiology.
[72] E. Schröger,et al. Violation of Expectation: Neural Correlates Reflect Bases of Prediction , 2009, Journal of Cognitive Neuroscience.
[73] V. Ciocca. The auditory organization of complex sounds. , 2008, Frontiers in bioscience : a journal and virtual library.
[74] T. Baldeweg. ERP Repetition Effects and Mismatch Negativity Generation A Predictive Coding Perspective , 2007 .
[75] I. Winkler,et al. The role of attention in the formation of auditory streams , 2007, Perception & psychophysics.
[76] I. Nelken,et al. Mismatch Negativity and Stimulus-Specific Adaptation in Animal Models , 2007 .
[77] S. Grimm,et al. The processing of frequency deviations within sounds: evidence for the predictive nature of the Mismatch Negativity (MMN) system. , 2007, Restorative neurology and neuroscience.
[78] Terence W. Picton,et al. Effects of Attention on Neuroelectric Correlates of Auditory Stream Segregation , 2006, Journal of Cognitive Neuroscience.
[79] I. Winkler,et al. Memory-based or afferent processes in mismatch negativity (MMN): a review of the evidence. , 2005, Psychophysiology.
[80] I. Winkler,et al. From sensory to long-term memory: evidence from auditory memory reactivation studies. , 2005, Experimental psychology.
[81] Albert S. Bregman,et al. Auditory Scene Analysis , 2001 .
[82] L. V. Noorden. Temporal coherence in the perception of tone sequences , 1975 .