Models of distributed associative memory networks in the brain
暂无分享,去创建一个
[1] Thomas Wennekers,et al. Associative memory in networks of spiking neurons , 2001, Neural Networks.
[2] Thomas Wennekers,et al. Associative memory in a pair of cortical cell groups with reciprocal projections , 2001, Neurocomputing.
[3] Thomas Wennekers,et al. Modelling studies on the computational function of fast temporal structure in cortical circuit activity , 2000, Journal of Physiology-Paris.
[4] Friedrich T. Sommer,et al. On cell assemblies in a cortical column , 2000, Neurocomputing.
[5] Néstor Parga,et al. Backward Projections in the Cerebral Cortex: Implications for Memory Storage , 1999, Neural Computation.
[6] Günther Palm,et al. Improved bidirectional retrieval of sparse patterns stored by Hebbian learning , 1999, Neural Networks.
[7] W A Wickelgren,et al. Webs, cell assemblies, and chunking in neural nets: introduction. , 1999, Canadian journal of experimental psychology = Revue canadienne de psychologie experimentale.
[8] Günther Palm,et al. Bidirectional completion of cell assemblies in the cortex , 1998 .
[9] Peter Dayan,et al. Bayesian retrieval in associative memories with storage errors , 1998, IEEE Trans. Neural Networks.
[10] M. Mesulam,et al. From sensation to cognition. , 1998, Brain : a journal of neurology.
[11] E Fransén,et al. A model of cortical associative memory based on a horizontal network of connected columns. , 1998, Network.
[12] A. Aertsen,et al. Spike synchronization and rate modulation differentially involved in motor cortical function. , 1997, Science.
[13] David Foster,et al. Simulation studies of the CA3 hippocampal subfield modelled as an attractor neural network , 1997, Neural Networks.
[14] R. Miller,et al. A formalisation of the neural assembly concept 1. Constraints on neural assembly size , 1997, Biological Cybernetics.
[15] Thomas Wennekers,et al. On the relation between neural modelling and experimental neuroscience , 1997 .
[16] A. Grinvald,et al. Dynamics of Ongoing Activity: Explanation of the Large Variability in Evoked Cortical Responses , 1996, Science.
[17] Robert Miller,et al. Cortico-thalamic interplay and the security of operation of neural assemblies and temporal chains in the cerebral cortex , 1996, Biological Cybernetics.
[18] Robert Miller,et al. Neural assemblies and laminar interactions in the cerebral cortex , 1996, Biological Cybernetics.
[19] James M. Bower,et al. Computational Neuroscience: Trends in Research , 1996 .
[20] Günther Palm,et al. Iterative retrieval of sparsely coded associative memory patterns , 1996, Neural Networks.
[21] D. Amit. The Hebbian paradigm reintegrated: Local reverberations as internal representations , 1995, Behavioral and Brain Sciences.
[22] John Rinzel,et al. Intrinsic and network rhythmogenesis in a reduced traub model for CA3 neurons , 1995, Journal of Computational Neuroscience.
[23] Günther Palm,et al. A neural network model of the cortico-hippocampal interplay and the representation of contexts , 1995, Behavioural Brain Research.
[24] R. Malach. Cortical columns as devices for maximizing neuronal diversity , 1994, Trends in Neurosciences.
[25] J. Fuster. Memory in the cerebral cortex , 1994 .
[26] Hans Liljenström,et al. A model of cortical associative memory based on Hebbian cell assemblies , 1994 .
[27] H Eichenbaum,et al. Thinking about brain cell assemblies. , 1993, Science.
[28] T. M. Mayhew,et al. Anatomy of the Cortex: Statistics and Geometry. , 1991 .
[29] R. Traub,et al. A model of a CA3 hippocampal pyramidal neuron incorporating voltage-clamp data on intrinsic conductances. , 1991, Journal of neurophysiology.
[30] M K Habib,et al. Dynamics of neuronal firing correlation: modulation of "effective connectivity". , 1989, Journal of neurophysiology.
[31] Antonio R. Damasio,et al. The Brain Binds Entities and Events by Multiregional Activation from Convergence Zones , 1989, Neural Computation.
[32] E. Gardner. The space of interactions in neural network models , 1988 .
[33] Sompolinsky,et al. Storing infinite numbers of patterns in a spin-glass model of neural networks. , 1985, Physical review letters.
[34] G L Shaw,et al. Model of cortical organization embodying a basis for a theory of information processing and memory recall. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[35] W. Levy,et al. Partial quantification of the associative synaptic learning rule of the dentate gyrus , 1983, Neuroscience.
[36] J J Hopfield,et al. Neural networks and physical systems with emergent collective computational abilities. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[37] G M Edelman,et al. Selective networks capable of representative transformations, limited generalizations, and associative memory. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[38] J. S. Barlow. The mindful brain: B.M. Edelman and V.B. Mountcastle (MIT Press, Cambridge, Mass., 1978, 100 p., U.S. $ 10.00) , 1979 .
[39] A. R. Gardner-Medwin. The recall of events through the learning of associations between their parts , 1976, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[40] W. Little. The existence of persistent states in the brain , 1974 .
[41] Teuvo Kohonen,et al. Correlation Matrix Memories , 1972, IEEE Transactions on Computers.
[42] D Marr,et al. Simple memory: a theory for archicortex. , 1971, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[43] M. Kneale,et al. The Sensory Order , 1954 .
[44] J F Fulton,et al. Physiology of the Nervous System , 1939, Science.
[45] Karl Steinbuch,et al. Die Lernmatrix , 2004, Kybernetik.
[46] J. Lund,et al. Anatomical substrates for functional columns in macaque monkey primary visual cortex. , 2003, Cerebral cortex.
[47] Sonja Grün,et al. Unitary Events in Multiple Single-Neuron Spiking Activity: I. Detection and Significance , 2002, Neural Computation.
[48] Sonja Grün,et al. Unitary Events in Multiple Single-Neuron Spiking Activity: II. Nonstationary Data , 2002, Neural Computation.
[49] J. Fellous,et al. A role for NMDA-receptor channels in working memory , 1998, Nature Neuroscience.
[50] E. Bienenstock. A model of neocortex , 1995 .
[51] W Singer,et al. Visual feature integration and the temporal correlation hypothesis. , 1995, Annual review of neuroscience.
[52] Michael E. Hasselmo,et al. Acetylcholine and Learning in a Cortical Associative Memory , 1993, Neural Computation.
[53] Friedemann Pulvermüller,et al. Constituents of a neurological theory of language , 1992 .
[54] Edmund T. Rolls,et al. Computational analysis of the operation of a real neuronal network in the brain: the role of the hippocampus in memory , 1992 .
[55] D. J. Felleman,et al. Distributed hierarchical processing in the primate cerebral cortex. , 1991, Cerebral cortex.
[56] Robert Miller. Designs for a Prototype Cerebral Cortex , 1991 .
[57] Moshe Abeles,et al. Corticonics: Neural Circuits of Cerebral Cortex , 1991 .
[58] P. Goldman-Rakic,et al. Preface: Cerebral Cortex Has Come of Age , 1991 .
[59] Prof. Dr. Valentino Braitenberg,et al. Anatomy of the Cortex , 1991, Studies of Brain Function.
[60] G. Palm. Neural Assemblies , 1982, Studies of Brain Function.
[61] Roland Heim,et al. Theoretical Approaches to Complex Systems , 1978 .
[62] H. C. LONGUET-HIGGINS,et al. Non-Holographic Associative Memory , 1969, Nature.
[63] D. Spalding. The Principles of Psychology , 1873, Nature.