A computational model of auditory selective attention
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[1] S. Pinker,et al. Auditory streaming and the building of timbre. , 1978, Canadian journal of psychology.
[2] R. Desimone,et al. The Role of Neural Mechanisms of Attention in Solving the Binding Problem , 1999, Neuron.
[3] R. Zatorre,et al. Shifting and focusing auditory spatial attention. , 1995, Journal of experimental psychology. Human perception and performance.
[4] Ronald A. Rensink,et al. Change-blindness as a result of ‘mudsplashes’ , 1999, Nature.
[5] Kevin Barraclough,et al. I and i , 2001, BMJ : British Medical Journal.
[6] D. C. Essen,et al. Neural responses to polar, hyperbolic, and Cartesian gratings in area V4 of the macaque monkey. , 1996, Journal of neurophysiology.
[7] D. Kahneman,et al. The reviewing of object files: Object-specific integration of information , 1992, Cognitive Psychology.
[8] Stuart N. Wrigley,et al. Synfire chains as a neural mechanism for auditory grouping , 1999 .
[9] M. Livingstone. Oscillatory firing and interneuronal correlations in squirrel monkey striate cortex. , 1996, Journal of neurophysiology.
[10] Victor R. Lesser,et al. IPUS: An Architecture for the Integrated Processing and Understanding of Signals , 1995, Artif. Intell..
[11] H B Barlow,et al. Single units and sensation: a neuron doctrine for perceptual psychology? , 1972, Perception.
[12] Peter F. Assmann,et al. Perceptual segregation of concurrent vowels , 1987 .
[13] Keiji Tanaka,et al. Effects of shape-discrimination training on the selectivity of inferotemporal cells in adult monkeys. , 1998, Journal of neurophysiology.
[14] Stuart Anstis,et al. Adaptation to auditory streaming of frequency-modulated tones. , 1985 .
[15] DeLiang Wang,et al. Locally excitatory globally inhibitory oscillator networks , 1995, IEEE Transactions on Neural Networks.
[16] Brian R Glasberg,et al. Derivation of auditory filter shapes from notched-noise data , 1990, Hearing Research.
[17] Guy J. Brown,et al. A neural oscillator sound separator for missing data speech recognition , 2001, IJCNN'01. International Joint Conference on Neural Networks. Proceedings (Cat. No.01CH37222).
[18] D. L. Ryan-Jones,et al. Attentional modulation of the mismatch negativity elicited by frequency differences between binaurally presented tone bursts. , 1995, Psychophysiology.
[19] F. Crick. Function of the thalamic reticular complex: the searchlight hypothesis. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[20] E. Hafter,et al. Attending to auditory filters that were not stimulated directly. , 1993, The Journal of the Acoustical Society of America.
[21] R. Desimone,et al. Competitive Mechanisms Subserve Attention in Macaque Areas V2 and V4 , 1999, The Journal of Neuroscience.
[22] Nobuo Suga,et al. After-discharges in the auditory cortex of the mustached bat: No oscillatory discharges for binding auditory information , 1994, Hearing Research.
[23] Mario A. Ruggero,et al. Two-tone distortion in the basilar membrane of the cochlea , 1991, Nature.
[24] C. Malsburg. Self-organization of orientation sensitive cells in the striate cortex , 2004, Kybernetik.
[25] Gary L. Dannenbring,et al. The effect of continuity on auditory stream segregation , 1973 .
[26] Guy J. Brown. Computational auditory scene analysis : a representational approach , 1993 .
[27] Hiroshi Shimizu,et al. Flexible vowel recognition by the generation of dynamic coherence in oscillator neural networks: speaker-independent vowel recognition , 1994, Biological Cybernetics.
[28] Q. Summerfield,et al. Modeling the perception of concurrent vowels: vowels with different fundamental frequencies. , 1990, The Journal of the Acoustical Society of America.
[29] E. de Boer,et al. On cochlear encoding: potentialities and limitations of the reverse-correlation technique. , 1978, The Journal of the Acoustical Society of America.
[30] A R Palmer. Physiology of the cochlear nerve and cochlear nucleus. , 1987, British medical bulletin.
[31] P. Milner. A model for visual shape recognition. , 1974, Psychological review.
[32] A. M. Taylor,et al. Discriminative responses to stimulation during human sleep. , 1960, Brain : a journal of neurology.
[33] M. Konishi,et al. Axonal delay lines for time measurement in the owl's brainstem. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[34] Pattie Maes,et al. Designing autonomous agents: Theory and practice from biology to engineering and back , 1990, Robotics Auton. Syst..
[35] Arthur F. Kramer,et al. Limits of focused attention in three-dimensional space , 1993, Perception & psychophysics.
[36] N. Sutherland,et al. Grouping Frequency Components of Vowels: When is a Harmonic not a Harmonic? , 1984 .
[37] P. N. Denbigh,et al. Pitch extraction and separation of overlapping speech , 1991, Speech Commun..
[38] R. Desimone,et al. Visual properties of neurons in a polysensory area in superior temporal sulcus of the macaque. , 1981, Journal of neurophysiology.
[39] R. Lyon. The all-pole gammatone filter and auditory models , 1996 .
[40] B. L. Cardozo,et al. Pitch of the Residue , 1962 .
[41] R Meddis,et al. Simulation of auditory-neural transduction: further studies. , 1988, The Journal of the Acoustical Society of America.
[42] Richard F. Lyon,et al. On the importance of time—a temporal representation of sound , 1993 .
[43] A S Bregman,et al. Allocating attention to frequency regions , 1994, Perception & psychophysics.
[44] A. Treisman. The binding problem , 1996, Current Opinion in Neurobiology.
[45] Michaël Titus Maria Scheffers,et al. Sifting vowels. Auditory pitch analysis and sound segregation. , 1983 .
[46] Christoph von der Malsburg,et al. The Correlation Theory of Brain Function , 1994 .
[47] R Ivry,et al. A formal theory of feature binding in object perception. , 1996, Psychological review.
[48] M. Posner,et al. Orienting of Attention* , 1980, The Quarterly journal of experimental psychology.
[49] Guy J. Brown,et al. Temporal synchronization in a neural oscillator model of primitive auditory stream segregation , 1998 .
[50] Leslie G. Ungerleider,et al. Increased Activity in Human Visual Cortex during Directed Attention in the Absence of Visual Stimulation , 1999, Neuron.
[51] R. Meddis,et al. A Computer Model of Auditory Stream Segregation , 1991, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[52] Edmund T. Rolls,et al. A Model of Invariant Object Recognition in the Visual System: Learning Rules, Activation Functions, Lateral Inhibition, and Information-Based Performance Measures , 2000, Neural Computation.
[53] David M. Green,et al. Detection of Auditory Sinusoids of Uncertain Frequency , 1961 .
[54] C. Darwin. Perceiving vowels in the presence of another sound: constraints on formant perception. , 1984, The Journal of the Acoustical Society of America.
[55] C. Malsburg. Binding in models of perception and brain function , 1995, Current Opinion in Neurobiology.
[56] Albert S. Bregman,et al. The Auditory Scene. (Book Reviews: Auditory Scene Analysis. The Perceptual Organization of Sound.) , 1990 .
[57] T. Poggio,et al. Are Cortical Models Really Bound by the “Binding Problem”? , 1999, Neuron.
[58] Bill Baird. A cortical network model of cognitive attentional strems, rhythmic expectation, and auditory stream segregation , 1997 .
[59] A. Treisman,et al. Illusory conjunctions in the perception of objects , 1982, Cognitive Psychology.
[60] Aaas News,et al. Book Reviews , 1893, Buffalo Medical and Surgical Journal.
[61] W. Singer,et al. Correlation analysis of corticotectal interactions in the cat visual system. , 1998, Journal of neurophysiology.
[62] Michael T. Tolston,et al. Journal of Experimental Psychology : Human Perception and Performance Movement Constraints on Interpersonal Coordination and Communication , 2014 .
[63] Wolfgang Konen,et al. Learning to Generalize from Single Examples in the Dynamic Link Architecture , 1993, Neural Computation.
[64] Y. Tsal. Do Illusory Conjunctions Support the Feature Integration Theory ? A Critical Review of Theory and Findings , 2001 .
[65] D. Deutsch. Two-channel listening to musical scales. , 1975, The Journal of the Acoustical Society of America.
[66] Michael Davis,et al. Acoustic startle, prepulse inhibition, and fear-potentiated startle measured in rhesus monkeys , 2002, Biological Psychiatry.
[67] Q Summerfield,et al. The contribution of waveform interactions to the perception of concurrent vowels. , 1994, The Journal of the Acoustical Society of America.
[68] Daniel Patrick Whittlesey Ellis,et al. Prediction-driven computational auditory scene analysis , 1996 .
[69] W Singer,et al. Visual feature integration and the temporal correlation hypothesis. , 1995, Annual review of neuroscience.
[70] J. Maunsell,et al. Sensory modality specificity of neural activity related to memory in visual cortex. , 1997, Journal of neurophysiology.
[71] W. Singer. Synchronization of cortical activity and its putative role in information processing and learning. , 1993, Annual review of physiology.
[72] B. Moore. An Introduction to the Psychology of Hearing , 1977 .
[73] S. G. Nooteboom,et al. Intonation and the perceptual separation of simultaneous voices , 1982 .
[74] I. Winkler,et al. Dynamic sensory updating in the auditory system. , 2001, Brain research. Cognitive brain research.
[75] H. J. Muller,et al. Reflexive and voluntary orienting of visual attention: time course of activation and resistance to interruption. , 1989, Journal of experimental psychology. Human perception and performance.
[76] Guy J. Brown,et al. A Binaural Model for Missing Data Speech Recognition in Noisy and Reverberant Conditions , 2001 .
[77] G. Humphreys,et al. Parallel computation of primitive shape descriptions. , 1991, Journal of experimental psychology. Human perception and performance.
[78] Y. Tsal. Movements of attention across the visual field. , 1983, Journal of experimental psychology. Human perception and performance.
[79] Stuart N. Wrigley,et al. A Theory and Computational Model of Auditory Selective Attention , 2002 .
[80] Guy B Mulder,et al. Acoustic startle. , 2004, Contemporary topics in laboratory animal science.
[81] R. Ivry,et al. Illusory conjunctions inside and outside the focus of attention. , 1989, Journal of experimental psychology. Human perception and performance.
[82] D. M. Green,et al. Psychoacoustics and Detection Theory , 1960 .
[83] A. D. Ritchie,et al. Man on his Nature , 1941, Nature.
[84] J. Pickles. An Introduction to the Physiology of Hearing , 1982 .
[85] W. Singer,et al. Temporal coding in the visual cortex: new vistas on integration in the nervous system , 1992, Trends in Neurosciences.
[86] J. Wolfe,et al. The Psychophysical Evidence for a Binding Problem in Human Vision , 1999, Neuron.
[87] Masataka Goto,et al. Multiagent based binaural sound stream segregation , 1998 .
[88] C. Darwin,et al. Grouping in pitch perception: effects of onset asynchrony and ear of presentation of a mistuned component. , 1992, The Journal of the Acoustical Society of America.
[89] J. Deutsch. Perception and Communication , 1958, Nature.
[90] D. Hubel,et al. Segregation of form, color, movement, and depth: anatomy, physiology, and perception. , 1988, Science.
[91] W Singer,et al. Role of the temporal domain for response selection and perceptual binding. , 1997, Cerebral cortex.
[92] John C. Webster,et al. Responding to One of Two Simultaneous Messages , 1954 .
[93] Ch. von der Malsburg,et al. A neural cocktail-party processor , 1986, Biological Cybernetics.
[94] A. Doupe. Song- and Order-Selective Neurons in the Songbird Anterior Forebrain and their Emergence during Vocal Development , 1997, The Journal of Neuroscience.
[95] H. Nothdurft. Faces and Facial Expressions do not Pop Out , 1993, Perception.
[96] C. Koch,et al. An oscillation-based model for the neuronal basis of attention , 1993, Vision Research.
[97] Guy J. Brown,et al. Modelling the perceptual segregation of double vowels with a network of neural oscillators , 1997, Neural Networks.
[98] D. V. van Essen,et al. A neurobiological model of visual attention and invariant pattern recognition based on dynamic routing of information , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[99] P F Assmann. Modeling the perception of concurrent vowels: Role of formant transitions. , 1996, The Journal of the Acoustical Society of America.
[100] N. Graham. Visual Pattern Analyzers , 1989 .
[101] E. Hafter,et al. Listening bandwidths and frequency uncertainty in pure-tone signal detection. , 1991, The Journal of the Acoustical Society of America.
[102] P Green,et al. Computational auditory scene analysis: listening to several things at once. , 1993, Endeavour.
[103] Y. Miyashita,et al. Neuronal tuning to learned complex forms in vision. , 1994, Neuroreport.
[104] M. R. Jones,et al. Evidence for rhythmic attention. , 1981, Journal of experimental psychology. Human perception and performance.
[105] M. R. Jones,et al. Rate and structure in memory for auditory patterns , 1978, Memory & cognition.
[106] Jeremy M Wolfe,et al. Modeling the role of parallel processing in visual search , 1990, Cognitive Psychology.
[107] Terrence J. Sejnowski,et al. The Computational Brain , 1996, Artif. Intell..
[108] A. Treisman,et al. A feature-integration theory of attention , 1980, Cognitive Psychology.
[109] Tomohiro Nakatani,et al. Auditory Stream Segregation in Auditory Scene Analysis with a Multi-Agent System , 1994, AAAI.
[110] M. Kilgard,et al. Plasticity of temporal information processing in the primary auditory cortex , 1998, Nature Neuroscience.
[111] James Elder,et al. The effect of contour closure on the rapid discrimination of two-dimensional shapes , 1993, Vision Research.
[112] Stephen E. Newstead,et al. Lexical and Grammatical Processing of Unshadowed Messages: A Re-Examination of the Mackay Effect , 1979 .
[113] Guy J. Brown,et al. A Neural Oscillator Model of Auditory Selective Attention , 2001, NIPS.
[114] I Kovács,et al. A closed curve is much more than an incomplete one: effect of closure in figure-ground segmentation. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[115] Alan C. Evans,et al. Auditory Attention to Space and Frequency Activates Similar Cerebral Systems , 1999, NeuroImage.
[116] DeLiang Wang,et al. Object selection based on oscillatory correlation , 1999, Neural Networks.
[117] A. C. Yu,et al. Temporal Hierarchical Control of Singing in Birds , 1996, Science.
[118] D. P. Russell,et al. Investigating neural correlates of conscious perception by frequency-tagged neuromagnetic responses. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[119] Matthias M. Müller,et al. Human Gamma Band Activity and Perception of a Gestalt , 1999, The Journal of Neuroscience.
[120] D. Scott. Perceptual learning. , 1974, Queen's nursing journal.
[121] DeLiang Wang,et al. Scene analysis by integrating primitive segmentation and associative memory , 2002, IEEE Trans. Syst. Man Cybern. Part B.
[122] Martin Cooke,et al. Modelling auditory processing and organisation , 1993, Distinguished dissertations in computer science.
[123] D. Barth,et al. Thalamic modulation of high-frequency oscillating potentials in auditory cortex , 1996, Nature.
[124] W. Ritter,et al. Attention affects the organization of auditory input associated with the mismatch negativity system , 1998, Brain Research.
[125] Jessica M. Foxton,et al. Effects of attention and unilateral neglect on auditory stream segregation. , 2001, Journal of experimental psychology. Human perception and performance.
[126] R. Llinás,et al. Human oscillatory brain activity near 40 Hz coexists with cognitive temporal binding. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[127] John H. R. Maunsell,et al. Hierarchical organization and functional streams in the visual cortex , 1983, Trends in Neurosciences.
[128] D O Kim,et al. Cochlear mechanics: nonlinear behavior in two-tone responses as reflected in cochlear-nerve-fiber responses and in ear-canal sound pressure. , 1980, The Journal of the Acoustical Society of America.
[129] H Steiger,et al. Auditory streaming and vertical localization: Interdependence of “what” and “where” decisions in audition , 1980, Perception & psychophysics.
[130] J. Licklider,et al. A duplex theory of pitch perception , 1951, Experientia.
[131] John H. R. Maunsell,et al. Attentional modulation of visual motion processing in cortical areas MT and MST , 1996, Nature.
[132] J. M. Ackroff,et al. Auditory Induction: Perceptual Synthesis of Absent Sounds , 1972, Science.
[133] A S Bregman,et al. Perceived continuity of gliding and steady-state tones through interrupting noise , 1987, Perception & psychophysics.
[134] G. Edelman,et al. The Mindful Brain: Cortical Organization and the Group-Selective Theory of Higher Brain Function , 1978 .
[135] G. A. Miller,et al. The Intelligibility of Interrupted Speech , 1948 .
[136] K. Nakayama,et al. Sustained and transient components of focal visual attention , 1989, Vision Research.
[137] Jon Driver,et al. Covert Spatial Orienting in Audition: Exogenous and Endogenous Mechanisms , 1994 .
[138] D. Norman. Toward a theory of memory and attention. , 1968 .
[139] Guy J. Brown,et al. A blackboard architecture for computational auditory scene analysis , 1999, Speech Commun..
[140] Henry C. Tuckwell,et al. Introduction to theoretical neurobiology , 1988 .
[141] A. Treisman. SELECTIVE ATTENTION IN MAN. , 1964, British medical bulletin.
[142] J. Deutsch,et al. Attention: Some theoretical considerations. , 1963 .
[143] B. Moore,et al. Relative dominance of individual partials in determining the pitch of complex tones , 1985 .
[144] DeLiang Wang,et al. Emergent synchrony in locally coupled neural oscillators , 1995, IEEE Trans. Neural Networks.
[145] P. Cariani. Temporal Coding of Periodicity Pitch in the Auditory System: An Overview , 1999, Neural plasticity.
[146] John Duncan,et al. Restricted attentional capacity within but not between sensory modalities , 1997, Nature.
[147] P. O. Bishop,et al. Spatial vision. , 1971, Annual review of psychology.
[148] David K. Mellinger,et al. Event formation and separation in musical sound , 1992 .
[149] B. Keysar,et al. Functional theory of illusory conjunctions and neon colors. , 1989, Journal of experimental psychology. General.
[150] A. Aertsen,et al. Neuronal assemblies , 1989, IEEE Transactions on Biomedical Engineering.
[151] T. C. Rand,et al. Dichotic release from masking for speech , 1974 .
[152] B. Moore,et al. Thresholds for hearing mistuned partials as separate tones in harmonic complexes. , 1986, The Journal of the Acoustical Society of America.
[153] A. Hodgkin,et al. A quantitative description of membrane current and its application to conduction and excitation in nerve , 1990 .
[154] DeLiang Wang,et al. Modeling Global Synchrony in the Visual Cortex by Locally Coupled Neural Oscillators , 1994 .
[155] R Meddis,et al. Computer simulation of auditory stream segregation in alternating-tone sequences. , 1996, The Journal of the Acoustical Society of America.
[156] Guy J. Brown,et al. A Neural Oscillator Model of Auditory Attention , 2001, ICANN.
[157] J. Wolfe,et al. Preattentive Object Files: Shapeless Bundles of Basic Features , 1997, Vision Research.
[158] J. NAGUMOt,et al. An Active Pulse Transmission Line Simulating Nerve Axon , 2006 .
[159] T. W. Parsons. Separation of speech from interfering speech by means of harmonic selection , 1976 .
[160] A. Bregman,et al. Primary auditory stream segregation and perception of order in rapid sequences of tones. , 1971, Journal of experimental psychology.
[161] R Meddis,et al. An evaluation of eight computer models of mammalian inner hair-cell function. , 1991, The Journal of the Acoustical Society of America.
[162] David Wessel,et al. Timbre Space as a Musical Control Structure , 1979 .
[163] Walter J Dowling,et al. Rhythmic groups and subjective chunks in memory for melodies , 1973 .
[164] R D Patterson,et al. The time course of auditory segregation: concurrent vowels that vary in duration. , 1995, The Journal of the Acoustical Society of America.
[165] Alain de Cheveigné,et al. Separation of concurrent harmonic sounds: Fundamental frequency estimation and a time-domain cancell , 1993 .
[166] C. Koch,et al. A saliency-based search mechanism for overt and covert shifts of visual attention , 2000, Vision Research.
[167] C J Darwin,et al. Grouping in pitch perception: evidence for sequential constraints. , 1995, The Journal of the Acoustical Society of America.
[168] David I. Perrett,et al. Neurophysiology of shape processing , 1993, Image Vis. Comput..
[169] DeLiang Wang,et al. On Connectedness: A Solution Based on Oscillatory Correlation , 2000, Neural Computation.
[170] P. Cavanagh,et al. FACIAL ORGANIZATION BLOCKS ACCESS TO LOW-LEVEL FEATURES: AN OBJECT INFERIORITY EFFECT , 1995 .
[171] A Treisman,et al. Feature analysis in early vision: evidence from search asymmetries. , 1988, Psychological review.
[172] C W Eriksen,et al. Shifting of attentional focus within and about a visual display , 1989, Perception & psychophysics.
[173] M. R. Jones,et al. Time, our lost dimension: toward a new theory of perception, attention, and memory. , 1976, Psychological review.
[174] W. Singer,et al. Stimulus-specific neuronal oscillations in orientation columns of cat visual cortex. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[175] D. V. Essen,et al. Neural mechanisms of form and motion processing in the primate visual system , 1994, Neuron.
[176] N. Birbaumer,et al. High-frequency brain activity: Its possible role in attention, perception and language processing , 1997, Progress in Neurobiology.
[177] R. Meddis,et al. Virtual pitch and phase sensitivity of a computer model of the auditory periphery. II: Phase sensitivity , 1991 .
[178] Peter Ladefoged,et al. On the Fusion of Sounds Reaching Different Sense Organs , 1957 .
[179] J. Eggermont. Between sound and perception: reviewing the search for a neural code , 2001, Hearing Research.
[180] I. Winkler,et al. Mismatch negativity: deviance detection or the maintenance of the 'standard'. , 1998, Neuroreport.
[181] D. Woods,et al. Attention modulates auditory pattern memory as indexed by event-related brain potentials. , 1997, Psychophysiology.
[182] W. Ritter,et al. An investigation of the auditory streaming effect using event-related brain potentials. , 1999, Psychophysiology.
[183] Anne Treisman,et al. Monitoring and storage of irrelevant messages in selective attention , 1964 .
[184] B. Moore,et al. Suggested formulae for calculating auditory-filter bandwidths and excitation patterns. , 1983, The Journal of the Acoustical Society of America.
[185] H. Egeth,et al. Perception without attention: evidence of grouping under conditions of inattention. , 1997, Journal of experimental psychology. Human perception and performance.
[186] I. Biederman. Recognition-by-components: a theory of human image understanding. , 1987, Psychological review.
[187] A Treisman,et al. Feature binding, attention and object perception. , 1998, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[188] B C Moore,et al. Tune Recognition with Reduced Pitch and Interval Information , 1979, The Quarterly journal of experimental psychology.
[189] Jon Barker,et al. LINKING AUDITORY SCENE ANALYSIS AND ROBUST ASR BY MISSING DATA TECHNIQUES , 2001 .
[190] A S Bregman,et al. Auditory streaming is cumulative. , 1978, Journal of experimental psychology. Human perception and performance.
[191] R Meddis,et al. Modeling the identification of concurrent vowels with different fundamental frequencies. , 1992, The Journal of the Acoustical Society of America.
[192] Charles Darwin,et al. Pitch continuity and speech source attribution , 1977 .
[193] Joachim M. Buhmann,et al. Pattern Segmentation in Associative Memory , 1990, Neural Computation.
[194] G. Palm,et al. Towards a theory of cell assemblies , 2004, Biological Cybernetics.
[195] Susan L. Franzel,et al. Guided search: an alternative to the feature integration model for visual search. , 1989, Journal of experimental psychology. Human perception and performance.
[196] W. Larkin,et al. Frequency-response characteristic of auditory observers detecting signals of a single frequency in noise: the probe-signal method. , 1968, The Journal of the Acoustical Society of America.
[197] A. Feng,et al. Neural basis of hearing in real-world situations. , 2000, Annual review of psychology.
[198] W. Newsome,et al. The Variable Discharge of Cortical Neurons: Implications for Connectivity, Computation, and Information Coding , 1998, The Journal of Neuroscience.
[199] N. Logothetis,et al. Psychophysical and physiological evidence for viewer-centered object representations in the primate. , 1995, Cerebral cortex.
[200] Michael J. Denham,et al. A Model of Auditory Streaming , 1995, NIPS.
[201] E. Seidemann,et al. Effect of spatial attention on the responses of area MT neurons. , 1999, Journal of neurophysiology.
[202] J. Pernier,et al. Induced gamma-band activity during the delay of a visual short-term memory task in humans. , 1998, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[203] Koch Sigmund Ed,et al. Psychology: A Study of A Science , 1962 .
[204] R. M. Warren,et al. Auditory illusions and confusions. , 1970, Scientific American.
[205] D Deutsch,et al. Separate "what" and "where" decision mechanisms in processing a dichotic tonal sequence. , 1976, Journal of experimental psychology. Human perception and performance.
[206] L E Marks,et al. Perceptual primacy of dimensions: support for a model of dimensional interaction. , 1990, Journal of experimental psychology. Human perception and performance.
[207] L. V. Noorden. Temporal coherence in the perception of tone sequences , 1975 .
[208] S Ullman,et al. Shifts in selective visual attention: towards the underlying neural circuitry. , 1985, Human neurobiology.
[209] Catherine Tallon-Baudry,et al. Induced γ-Band Activity during the Delay of a Visual Short-Term Memory Task in Humans , 1998, The Journal of Neuroscience.
[210] C. Darwin,et al. Effects of onset asynchrony on pitch perception: adaptation or grouping? , 1993, The Journal of the Acoustical Society of America.
[211] G. Rhodes. Auditory attention and the representation of spatial information , 1987, Perception & psychophysics.
[212] N. Moray. Attention in Dichotic Listening: Affective Cues and the Influence of Instructions , 1959 .
[213] D. Spalding. The Principles of Psychology , 1873, Nature.
[214] R. FitzHugh. Impulses and Physiological States in Theoretical Models of Nerve Membrane. , 1961, Biophysical journal.
[215] A. Treisman. Contextual Cues in Selective Listening , 1960 .
[216] R. B. Gardner,et al. Vowel quality changes produced by surrounding tone sequences , 1989, Perception & psychophysics.
[217] Moshe Abeles,et al. Corticonics: Neural Circuits of Cerebral Cortex , 1991 .
[218] Antonio R. Damasio,et al. The Brain Binds Entities and Events by Multiregional Activation from Convergence Zones , 1989, Neural Computation.
[219] I. Biederman,et al. Dynamic binding in a neural network for shape recognition. , 1992, Psychological review.
[220] D. Deutsch,et al. An auditory illusion , 1974, Nature.
[221] R. S. Corteen,et al. Autonomic responses to shock-associated words in an unattended channel. , 1972, Journal of Experimental Psychology.
[222] M. Dawson,et al. Electrodermal responses to attended and nonattended significant stimuli during dichotic listening. , 1982, Journal of experimental psychology. Human perception and performance.
[223] Bernard E. Tomlinson,et al. Cell counts in human cerebral cortex in normal adults throughout life using an image analysing computer , 1980, Journal of the Neurological Sciences.
[224] Keiji Tanaka,et al. Neuronal selectivities to complex object features in the ventral visual pathway of the macaque cerebral cortex. , 1994, Journal of neurophysiology.
[225] Christoph von der Malsburg,et al. Pattern recognition by labeled graph matching , 1988, Neural Networks.
[226] M. Merzenich,et al. Optimizing sound features for cortical neurons. , 1998, Science.
[227] Roger K. Moore. Computer Speech and Language , 1986 .
[228] S. Yantis,et al. Uniqueness of abrupt visual onset in capturing attention , 1988, Perception & psychophysics.
[229] C. von der Malsburg,et al. Am I Thinking Assemblies , 1986 .
[230] A. Liberman. On Finding That Speech Is Special , 1982 .
[231] O. Reiser,et al. Principles Of Gestalt Psychology , 1936 .
[232] Douglas Johnson,et al. Stream Segregation and Peripheral Channeling , 1991 .
[233] S. S. Stevens. Frequency Analysis and Periodicity Detection in Hearing. , 1972 .
[234] D H HUBEL,et al. RECEPTIVE FIELDS AND FUNCTIONAL ARCHITECTURE IN TWO NONSTRIATE VISUAL AREAS (18 AND 19) OF THE CAT. , 1965, Journal of neurophysiology.
[235] R. Meddis,et al. A unitary model of pitch perception. , 1997, The Journal of the Acoustical Society of America.
[236] M. Sondhi,et al. New methods of pitch extraction , 1968 .
[237] G. Edelman. Group selection and phasic reentrant signaling a theory of higher brain function , 1982 .
[238] Alvin M. Liberman,et al. Some differences between phonetic and auditory modes of perception , 1983, Cognition.
[239] R. Zatorre,et al. Constraints on the selection of auditory information. , 1998 .
[240] E R Hafter,et al. Uncertain-frequency detection: Cuing and condition of observation , 1980, Perception & psychophysics.
[241] Donald M. MacKay,et al. Visual Stability and Voluntary Eye Movements , 1973 .
[242] E. C. Cherry. Some Experiments on the Recognition of Speech, with One and with Two Ears , 1953 .
[243] Alexander I. Rudnicky,et al. Auditory segregation: stream or streams? , 1975, Journal of experimental psychology. Human perception and performance.
[244] J. Duncan. The locus of interference in the perception of simultaneous stimuli. , 1980, Psychological review.
[245] Christoph von der Malsburg,et al. The What and Why of Binding The Modeler’s Perspective , 1999, Neuron.
[246] Brian C. J. Moore,et al. THE INFLUENCE OF EXTRANEOUS SOUNDS ON THE PERCEPTUAL ESTIMATION OF FIRST-FORMANT FREQUENCY IN VOWELS UNDER CONDITIONS OF ASYNCHRONY , 1991 .
[247] J. Griffith. On the stability of brain-like structures. , 1963, Biophysical journal.
[248] W. Singer,et al. Oscillatory responses in cat visual cortex exhibit inter-columnar synchronization which reflects global stimulus properties , 1989, Nature.
[249] Victor R. Lesser,et al. The Hearsay-II Speech-Understanding System: Integrating Knowledge to Resolve Uncertainty , 1980, CSUR.
[250] R. Desimone,et al. Neural mechanisms of spatial selective attention in areas V1, V2, and V4 of macaque visual cortex. , 1997, Journal of neurophysiology.
[251] R. W. Hukin,et al. Auditory objects of attention: the role of interaural time differences. , 1999, Journal of experimental psychology. Human perception and performance.
[252] DeLiang Wang,et al. Primitive Auditory Segregation Based on Oscillatory Correlation , 1996, Cogn. Sci..
[253] D. Corkill. Blackboard Systems , 1991 .
[254] Mitchel Weintraub,et al. A theory and computational model of auditory monaural sound separation , 1985 .
[255] G. Edelman,et al. Consciousness and Complexity , 1998 .
[256] J. L. Goldstein. Auditory nonlinearity. , 1967, The Journal of the Acoustical Society of America.
[257] Isbn. The Principles of Psychology: Volume 1 , 2004 .
[258] D. M. Green,et al. Signal detection theory and psychophysics , 1966 .
[259] Deliang Wang,et al. Global competition and local cooperation in a network of neural oscillators , 1995 .
[260] Guy J. Brown,et al. Computational auditory scene analysis , 1994, Comput. Speech Lang..
[261] R. Desimone,et al. Neural mechanisms of selective visual attention. , 1995, Annual review of neuroscience.
[262] Michael S. Ambinder,et al. Change blindness , 1997, Trends in Cognitive Sciences.
[263] Y. Miyashita,et al. Neural organization for the long-term memory of paired associates , 1991, Nature.
[264] E. Capaldi,et al. The organization of behavior. , 1992, Journal of applied behavior analysis.
[265] Guy J. Brown,et al. Separation of speech from interfering sounds based on oscillatory correlation , 1999, IEEE Trans. Neural Networks.
[266] Ray Meddis,et al. Virtual pitch and phase sensitivity of a computer model of the auditory periphery , 1991 .
[267] I. Rock,et al. The legacy of Gestalt psychology. , 1990, Scientific American.
[268] J. L. Goldstein. An optimum processor theory for the central formation of the pitch of complex tones. , 1973, The Journal of the Acoustical Society of America.
[269] D. Kemp. Stimulated acoustic emissions from within the human auditory system. , 1978, The Journal of the Acoustical Society of America.
[270] K. Koffka. Principles Of Gestalt Psychology , 1936 .
[271] R. Meddis. Simulation of mechanical to neural transduction in the auditory receptor. , 1986, The Journal of the Acoustical Society of America.
[272] Leslie G. Ungerleider,et al. Mechanisms of directed attention in the human extrastriate cortex as revealed by functional MRI. , 1998, Science.
[273] R. Desimone,et al. Selective attention gates visual processing in the extrastriate cortex. , 1985, Science.
[274] Ronald W. Schafer,et al. Real-time digital hardware pitch detector , 1976 .