Haykin S, Chen Z. (2005). The cocktail party problem. Neural computation. 17 [PubMed]

See more from authors: Haykin S · Chen Z

References and models cited by this paper

Amari S. (2000). Estimating functions of independent component analysis for temporally correlated signals. Neural computation. 12 [PubMed]

Amari S, Cichocki A. (1998). Adaptive blind signal processing: Neural network approaches Proc IEEE. 86

Amari S, Cichocki A. (2003). Adaptive blind signal and image processing: Learning algorithms and applications.

Amari SL, Cichocki A, Yang HH. (1996). A new learning algorithm for blind signal separation. Advances in Neural Information Processing Systems.. 8

Arons B. (1992). A review of the cocktail party effect J Am Voice I-O Soc. 12

Attias H. (1999). Independent factor analysis. Neural computation. 11 [PubMed]

Bajcsy R. (1988). Active Perception Proc IEEE. 76

Ballard DH. (1991). Animate Vision Artif Intell. 48

Becker S, Haykin S, Chen Z. (2004). Stochastic correlative learning algorithms IEEE Trans Signal Process. 52

Bell AJ, Sejnowski TJ. (1995). An information-maximization approach to blind separation and blind deconvolution. Neural computation. 7 [PubMed]

Belouchrani A, Amin MG. (1998). Blind source separation based on time-frequency signal representations IEEE Transactions On Signal Processing. 46

Blauert J. (1983). Spatial hearing: The psychophysics of human sound localization (rev. ed).

Bregman AS. (1990). Auditory Scene Analysis.

Bregman AS. (1998). Psychological data and computational ASA Computational auditory scene analysis.

Bronkhorst A. (2000). The cocktail party phenomenon: A review of research on speech intelligibility in multiple-talker condition Acoustica. 86

Brown GD, Yamada S, Sejnowski TJ. (2001). Independent component analysis at the neural cocktail party. Trends in neurosciences. 24 [PubMed]

Brown GJ. (1992). Computational auditory scene analysis: A representational approach Unpublished doctoral dissertation.

Brown GJ, Cooke MP. (1993). Computational auditory scene analysis: Exploiting principles of perceived continuity Speech Communication. 13

Brown GJ, Cooke MP. (1994). Computational auditory scene analysis Computer Speech And Language. 8

Cardoso JF. (1998). Blind source separation: Statistical principles Proc IEEE. 86

Cardoso JF. (2001). The three easy routes to independent component analysis: Contrasts and geometry Proc ICA2001.

Cardoso JF. (2003). Dependence, correlation and gaussianity in independent component analysis J Mach Learn Res. 4

Cardoso JF, Belouchrani A, Karim AM, Moulines E. (1997). A blind source separation technique using second-order statistics IEEE Trans Signal Processing. 45

Cardoso JF, Pham DT. (2001). Blind separation of instantaneous mixtures of nonstationary sources IEEE Trans On Signal Processing. 49

Cardoso JF, Souloumiac A. (1993). Blind beamforming for non-gaussian signals Proc IEEE. 140

Chen Z. (2003). An odyssey of the cocktail party problem Tech Rep (Available online: http:--soma.crl.mcmaster.ca-~zhechen-download-cpp.ps).

Chen Z. (2005). Stochastic correlative firing for figure-ground segregation. Biological cybernetics. 92 [PubMed]

Cherry EC. (1953). Some experiments on the recognition of speech, with one and with two ears J Acous Soc Am. 25

Cherry EC. (1957). On human communication: A review, survey, and a criticism.

Cherry EC. (1961). Two ears-but one world Sensory communication.

Cherry EC, Sayers B. (1956). Human cross-correlation-A technique for measuring certain parameters of speech perception J Acoust Soc Am. 28

Cherry EC, Sayers B. (1957). Mechanism of binaural fusion in the hearing of speech J Acoust Soc Am. 31

Cherry EC, Sayers B. (1959). On the mechanism of binaural fusion J Acoust Soc Am. 31

Cherry EC, Taylor WK. (1954). Some further experiments upon the recognition of speech, with one and, with two ears J Acoust Soc Am. 26

Clark A, Eliasmith C. (2003). Philosophical issues in brain theory and connectionism Handbook of brain theory and neural networks (2nd ed).

Colburn HS, Durlach NI. (1978). Binaural phenomena Handbook of perception.

Comon P. (1994). Independent component analysis, a new concept? Signal Processing. 36

Cook JE. (1991). Correlated activity in the CNS: a role on every timescale? Trends in neurosciences. 14 [PubMed]

Cooke M. (1993). Modelling auditory processing and organization.

Cooke MP. (2002). Computational auditory scene analysis in listeners and machines Tutorial at NIPS2002.

Crick F. (1984). Function of the thalamic reticular complex: the searchlight hypothesis. Proceedings of the National Academy of Sciences of the United States of America. 81 [PubMed]

Dayan P, Abbott L. (2001). Neural encoding: Firing rates and spike statistics Theoretical Neuroscience: Computational and Mathematical Modeling of Neural Systems.

Divenyi P. (2004). Speech separation by humans and machines.

Doclo S, Moonen M. (2002). Robust adaptive time-delay estimation for speaker localization in noisy and reverberant acoustic environments EURASIP J Appl Signal Proc. 5

Eggermont JJ. (1990). The Correlative Brain:theory And Experiment In Neural Interaction. 24

Eggermont JJ. (1993). Functional aspects of synchrony and correlation in the auditory nervous system. Concepts In Neuroscience. 4

Ellis D. (1996). Prediction-driven computational auditory scene analysis Unpublished doctoral dissertation.

Ellis D, Cooke M. (2001). The auditory organization of speech and other sources in listeners and computational models Speech Communication. 35

Engel AK, König P, Singer W. (1991). Direct physiological evidence for scene segmentation by temporal coding. Proceedings of the National Academy of Sciences of the United States of America. 88 [PubMed]

Feng AS, Ratnam R. (2000). Neural basis of hearing in real-world situations. Annual review of psychology. 51 [PubMed]

Grossberg S, Govindarajan KK, Wyse LL, Cohen MA. (2004). ARTSTREAM: a neural network model of auditory scene analysis and source segregation. Neural networks : the official journal of the International Neural Network Society. 17 [PubMed]

Harth E, Tzanakou E. (1974). Alopex: a stochastic method for determining visual receptive fields. Vision research. 14 [PubMed]

Harth E, Unnikrishnan KP, Pandya AS. (1987). The inversion of sensory processing by feedback pathways: a model of visual cognitive functions. Science (New York, N.Y.). 237 [PubMed]

Hawley ML, Litovsky RY, Colburn HS. (1999). Speech intelligibility and localization in a multi-source environment. The Journal of the Acoustical Society of America. 105 [PubMed]

Haykin S. (2003). The cocktail party phenomenon Presentation at the ICA Workshop.

Haykin S, Chen Z. (2004). Figure-ground segregation in sensory perception using a stochastic correlative learning rule Tech Rep (Available online: http:--soma.crl.mcmaster.ca-~zhechen-download-scl.ps).

Hebb DO. (1949). The Organization Of Behavior.

Hecht-nielsen R. (1998). A theory of cerebral cortex Proc. 1998 Int. Conf. Neural Information Processing, ICONIP98.

Hopgood E, Rayner P. (1999). Single channel signal separation using linear time-varying filters: Separability of non-stationary stochastic signals Proc ICASSP. 3

Huang Y, Liu R, Tong L, Soon V. (1990). AMUSE: A new blind identification problem Proc ICASSP.

James W. (1890). Principles Of Psychology.

Jones M, Yee W. (1993). Attending to auditory events: The role of temporal organization Thinking in sound.

Julesz B, Hirsh IJ. (1972). Visual and auditory perception-an essay in comparison Human communication: A unified view.

Jutten C, Herault J. (1991). Blind separation of sources. Part I: An adaptive algorithm based on neuromimetic architecture. Signal Processing. 24

Kandel ER, Jessell TM, Schwartz JH. (2000). Principles of neural science (4th ed).

Kleinschmidt M, Nix J, Hohmann V. (2003). Computational auditory scene analysis of cocktail-party situations based on sequential Monte Carlo methods Proc. 37th Asilomar Conference on Signals, Systems and Computers.

Knuth KH. (1999). A Bayesian approach to source separation Proc ICA99.

König P, Engel AK. (1995). Correlated firing in sensory-motor systems. Current opinion in neurobiology. 5 [PubMed]

König P, Engel AK, Singer W. (1996). Integrator or coincidence detector? The role of the cortical neuron revisited. Trends in neurosciences. 19 [PubMed]

Lee TW, Jang GJ. (2003). A maximum likelihood approach to single-channel source separation J Mach Learn Res. 4

Maclean WR. (1959). On the acoustics of cocktail parties J Acoust Soc Am. 31

Marr D. (1982). Vision: A Computational Investigation into the Human Representation and Processing of Visual Information.

McGurk H, MacDonald J. (1976). Hearing lips and seeing voices. Nature. 264 [PubMed]

Mohammad-Djafari A. (1999). A Bayesian approach to source separation Proc. 19th Int. Workshop on Maximum Entropy and Bayesian Methods (MaxEnt99).

Moore BCJ. (1997). Introduction To The Psychology Of Hearing.

Moray N. (1959). Attention in dichotic listening: Affective cues and the influence of instructions Quart J Exp Psychol. 27

Mumford D. (1991). On the computational architecture of the neocortex. I. The role of the thalamo-cortical loop. Biological cybernetics. 65 [PubMed]

Mumford D. (1995). Thalamus The handbook of brain theory and neural networks.

Oja E, Hyvarinen A. (1997). A fast fixed-point algorithm for independent component analysis Neural Comput. 9

Oja E, Hyvarinen A, Karunen J. (2001). Independent component analysis.

Panzeri S, Schultz SR, Golledge HDR. (2001). Synchronization, binding and the role of correlated firing in fast information transmission Emergent neural computational architectures based on neuroscience.

Parra L, Alvino C. (2002). Geometric source separation: Merging convolutive source separation with geometric beamforming IEEE Trans Speech Audio Process. 10

Pham DT. (2002). Mutual information approach to blind separation of stationary sources IEEE Trans Information Theory. 48

Rickard S, Balan R, Rosca J. (2001). Real-time time-frequency based blind source separation Proc ICA2001.

Rickard S, Yilmaz O. (2002). On the approximate W-disjoint orthogonality of speech Proc ICASSP2002.

Rickard S, Yilmaz O. (2004). Blind separation of speech mixtures via time-frequency masking. Ieee Transactions On Signal Processing. 52

Rosenthal DF, Okuno HG. (1998). Computational auditory scene analysis.

Rowe DB. (2002). A Bayesian approach to blind source separation J Interdiscipl Math. 5

Roweis S. (2000). One microphone source separation Advances In Neural Information Processing Systems. 13

Sabine HJ. (1953). Room acoustics Trans IRE. 1

Sagi B et al. (2001). A biologically motivated solution to the cocktail party problem. Neural computation. 13 [PubMed]

Sejnowski TJ, Lee TW, Chan K. (2003). Variational Bayesian learning of ICA with missing data Neural Comput. 15

Shamma S. (2001). On the role of space and time in auditory processing. Trends in cognitive sciences. 5 [PubMed]

Singer W. (1993). Synchronization of cortical activity and its putative role in information processing and learning. Annual review of physiology. 55 [PubMed]

Singer W. (1995). Synchronization of neural responses as putative binding mechanism Handbook of brain theory and neural networks.

Spence C, Parra L. (2000). Convolutive blind source separation of nonstationary sources IEEE Trans Speech Audio Process. 8

Sporns O. (2003). Embodied cognition Handbook of brain theory and neural networks (2nd ed).

Treisman A. (1996). The binding problem. Current opinion in neurobiology. 6 [PubMed]

Treisman AM, Gelade G. (1980). A feature-integration theory of attention. Cognitive psychology. 12 [PubMed]

Tzanakou E, Michalak R, Harth E. (1979). The Alopex process: visual receptive fields by response feedback. Biological cybernetics. 35 [PubMed]

Varela F, Rosch E, Thompson E. (1991). The embodied mind: Cognitive science and human experience.

Von_der_malsburg C. (1981). The Correlation Theory of Brain Function Technical (Internal) Report. 81

Wang DL. (1996). Primitive auditory segregation based on oscillatory correlation Cogn Sci. 20

Wang DL, Brown GJ. (1997). Modelling the perceptual segregation of concurrent vowels with a network of neural oscillation Neural Netw. 10

Wang DL, Brown GJ. (1999). Separation of speech from interfering sounds based on oscillatory correlation. IEEE transactions on neural networks. 10 [PubMed]

Wang DL, Brown GJ, van_der_Kouwe AJW. (2001). A comparison of auditory and blind separation techniques for speech segregation IEEE Trans Speech Audio Process. 9

Warren RM. (1970). Perceptual restoration of missing speech sounds. Science (New York, N.Y.). 167 [PubMed]

Warren RM, Obusek CJ, Ackroff JM. (1972). Auditory induction: perceptual synthesis of absent sounds. Science (New York, N.Y.). 176 [PubMed]

Wood NL, Cowan N. (1995). The cocktail party phenomenon revisited: attention and memory in the classic selective listening procedure of Cherry (1953). Journal of experimental psychology. General. 124 [PubMed]

Yost WA. (1991). Auditory image perception and analysis: the basis for hearing. Hearing research. 56 [PubMed]

Yost WA. (1997). The cocktail party problem: Forty years later Binaural and spatial hearing in real and virtual environments.

Yost WA. (2000). Fundamentals of hearing: An introduction (4th ed).

Yost WA, Gourevitch EDG. (1987). Directional hearing.

Yuille A, Blake A. (1992). Active vision.

van_Veen B, Buckley K. (1997). Beamforming techniques for spatial filtering Digital signal processing handbook.

von der Malsburg C. (1995). Binding in models of perception and brain function. Current opinion in neurobiology. 5 [PubMed]

von der Malsburg C. (1999). The what and why of binding: the modeler's perspective. Neuron. 24 [PubMed]

von der Malsburg C, Buhmann J. (1992). Sensory segmentation with coupled neural oscillators. Biological cybernetics. 67 [PubMed]

von der Malsburg C, Schneider W. (1986). A neural cocktail-party processor. Biological cybernetics. 54 [PubMed]

von der Malsburg C, Wang D, Buhmann J. (1990). Pattern segmentation in associative memory Neural Computation. 2

References and models that cite this paper

Mehaffey WH, Fernandez FR, Maler L, Turner RW. (2007). Regulation of burst dynamics improves differential encoding of stimulus frequency by spike train segregation. Journal of neurophysiology. 98 [PubMed]

This website requires cookies and limited processing of your personal data in order to function. By continuing to browse or otherwise use this site, you are agreeing to this use. See our Privacy policy and how to cite and terms of use.