A loop-based neural architecture for structured behavior encoding and decoding
暂无分享,去创建一个
[1] S. Tsujimoto,et al. Neuronal representation of response-outcome in the primate prefrontal cortex. , 2004, Cerebral cortex.
[2] R. Passingham,et al. Prefrontal interactions reflect future task operations , 2003, Nature Neuroscience.
[3] T. Fukai,et al. Two-State Membrane Potential Transitions of Striatal Spiny Neurons as Evidenced by Numerical Simulations and Electrophysiological Recordings in Awake Monkeys , 2002, The Journal of Neuroscience.
[4] D. Hubel,et al. Receptive fields of single neurones in the cat's striate cortex , 1959, The Journal of physiology.
[5] Michel Kerszberg,et al. Acquisition and performance of delayed-response tasks: a neural network model. , 2005, Cerebral cortex.
[6] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[7] Michel Kerszberg,et al. From a representation of behavior to the concept of cognitive syntax: a theoretical framework. , 2007, Progress in brain research.
[8] M. Whittington,et al. Gamma frequency oscillations gate temporally coded afferent inputs in the rat hippocampal slice , 1998, Neuroscience Letters.
[9] Y. Miyashita,et al. Neural organization for the long-term memory of paired associates , 1991, Nature.
[10] G. E. Alexander,et al. Functional architecture of basal ganglia circuits: neural substrates of parallel processing , 1990, Trends in Neurosciences.
[11] L.F. Abbott,et al. Gating Multiple Signals through Detailed Balance of Excitation and Inhibition in Spiking Networks , 2009, Nature Neuroscience.
[12] E Guigon,et al. Neural correlates of learning in the prefrontal cortex of the monkey: a predictive model. , 1995, Cerebral cortex.
[13] G. Arbuthnott,et al. Computational models of the basal ganglia , 2000, Movement disorders : official journal of the Movement Disorder Society.
[14] J. Houk,et al. Model of cortical-basal ganglionic processing: encoding the serial order of sensory events. , 1998, Journal of neurophysiology.
[15] A. Graybiel. The basal ganglia and cognitive pattern generators. , 1997, Schizophrenia bulletin.
[16] 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.
[17] Bruno A. Olshausen,et al. A multiscale dynamic routing circuit for forming size- and position-invariant object representations , 1995, Journal of Computational Neuroscience.
[18] J. Fuster. The Prefrontal Cortex , 1997 .
[19] Michael J. Frank,et al. Interactions between frontal cortex and basal ganglia in working memory: A computational model , 2001, Cognitive, affective & behavioral neuroscience.
[20] Boris S. Gutkin,et al. Dopamine modulation in the basal ganglia locks the gate to working memory , 2006, Journal of Computational Neuroscience.
[21] Mounir Boukadoum,et al. Mechanisms Gating the Flow of Information in the Cortex: What They Might Look Like and What Their Uses may be , 2010, Front. Comput. Neurosci..
[22] H Mushiake,et al. Pallidal neuron activity during sequential arm movements. , 1995, Journal of neurophysiology.
[23] D. C. Essen,et al. Modular and hierarchical organization of extrastriate visual cortex in the macaque monkey. , 1990, Cold Spring Harbor symposia on quantitative biology.
[24] D. Brooks,et al. Motor sequence learning: a study with positron emission tomography , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[25] Hilary Putnam,et al. Mind, Language and Reality: Brains and behavior , 1975 .
[26] Shintaro Funahashi,et al. Neuronal activity throughout the primate mediodorsal nucleus of the thalamus during oculomotor delayed-responses. I. Cue-, delay-, and response-period activity. , 2004, Journal of neurophysiology.
[27] J. Tanji,et al. Task-dependent selectivity of movement-related neuronal activity in the primate prefrontal cortex. , 1998, Journal of neurophysiology.
[28] R. Wurtz,et al. Visual and oculomotor functions of monkey substantia nigra pars reticulata. III. Memory-contingent visual and saccade responses. , 1983, Journal of neurophysiology.
[29] Charles J. Wilson,et al. The origins of two-state spontaneous membrane potential fluctuations of neostriatal spiny neurons , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[30] T. Sejnowski,et al. A Computational Model of How the Basal Ganglia Produce Sequences , 1998, Journal of Cognitive Neuroscience.
[31] Boris S. Gutkin,et al. Turning On and Off with Excitation: The Role of Spike-Timing Asynchrony and Synchrony in Sustained Neural Activity , 2001, Journal of Computational Neuroscience.
[32] S. Bressler. Large-scale cortical networks and cognition , 1995, Brain Research Reviews.
[33] D. Zipser,et al. A spiking network model of short-term active memory , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[34] J M Fuster,et al. Firing changes in cells of the nucleus medialis dorsalis associated with delayed response behavior. , 1973, Brain research.
[35] Michel Kerszberg,et al. A Model for Integrating Elementary Neural Functions into Delayed-Response Behavior , 2006, PLoS Comput. Biol..
[36] Peter Ford Dominey,et al. A Model of Corticostriatal Plasticity for Learning Oculomotor Associations and Sequences , 1995, Journal of Cognitive Neuroscience.
[37] O. Hikosaka,et al. Functional properties of monkey caudate neurons. III. Activities related to expectation of target and reward. , 1989, Journal of neurophysiology.
[38] J. Joseph,et al. Activity in the caudate nucleus of monkey during spatial sequencing. , 1995, Journal of neurophysiology.
[39] Chris Christodoulou,et al. Behavioral plasticity through the modulation of switch neurons , 2016, Neural Networks.
[40] R. Turner,et al. Spontaneous pallidal neuronal activity in human dystonia: comparison with Parkinson's disease and normal macaque. , 2005, Journal of neurophysiology.
[41] G. E. Alexander,et al. Neuron Activity Related to Short-Term Memory , 1971, Science.
[42] J. Mink. THE BASAL GANGLIA: FOCUSED SELECTION AND INHIBITION OF COMPETING MOTOR PROGRAMS , 1996, Progress in Neurobiology.
[43] D. Hubel,et al. Receptive fields, binocular interaction and functional architecture in the cat's visual cortex , 1962, The Journal of physiology.
[44] P. Goldman-Rakic,et al. Synaptic mechanisms and network dynamics underlying spatial working memory in a cortical network model. , 2000, Cerebral cortex.
[45] O Hikosaka,et al. Functional properties of monkey caudate neurons. II. Visual and auditory responses. , 1989, Journal of neurophysiology.
[46] E. Zohary,et al. Inter-trial neuronal activity in inferior temporal cortex: a putative vehicle to generate long-term visual associations , 1998, Nature Neuroscience.
[47] Thomas E. Hazy,et al. Towards an executive without a homunculus: computational models of the prefrontal cortex/basal ganglia system , 2007, Philosophical Transactions of the Royal Society B: Biological Sciences.
[48] O Hikosaka,et al. GABAergic output of the basal ganglia. , 2007, Progress in brain research.
[49] W. Penfield,et al. SOMATIC MOTOR AND SENSORY REPRESENTATION IN THE CEREBRAL CORTEX OF MAN AS STUDIED BY ELECTRICAL STIMULATION , 1937 .
[50] J. Mattingley,et al. Dynamic cooperation and competition between brain systems during cognitive control , 2013, Trends in Cognitive Sciences.
[51] H. Bergman,et al. Information processing, dimensionality reduction and reinforcement learning in the basal ganglia , 2003, Progress in Neurobiology.
[52] Anthony A Grace,et al. Gating of information flow within the limbic system and the pathophysiology of schizophrenia , 2000, Brain Research Reviews.
[53] K. C. Anderson,et al. Single neurons in prefrontal cortex encode abstract rules , 2001, Nature.
[54] Shintaro Funahashi,et al. Reward-period Activity in Primate Dorsolateral Prefrontal and Orbitofrontal Neurons Is Affected by Reward Schedules , 2006 .
[55] Jürgen Schmidhuber,et al. Long Short-Term Memory , 1997, Neural Computation.
[56] G. A. Miller. THE PSYCHOLOGICAL REVIEW THE MAGICAL NUMBER SEVEN, PLUS OR MINUS TWO: SOME LIMITS ON OUR CAPACITY FOR PROCESSING INFORMATION 1 , 1956 .
[57] J. Martinerie,et al. The brainweb: Phase synchronization and large-scale integration , 2001, Nature Reviews Neuroscience.
[58] Peter Ford Dominey,et al. A cortico-subcortical model for generation of spatially accurate sequential saccades. , 1992, Cerebral cortex.
[59] Karl J. Friston,et al. Psychophysiological and Modulatory Interactions in Neuroimaging , 1997, NeuroImage.
[60] Jerry A. Fodor,et al. Representations: Philosophical Essays on the Foundations of Cognitive Science , 1981 .
[61] O. Hikosaka,et al. Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements. , 1989, Journal of neurophysiology.
[62] S. Raghavachari,et al. Gating information by two-state membrane potential fluctuations. , 2007, Journal of neurophysiology.
[63] Tao Chen,et al. Disease named entity recognition by combining conditional random fields and bidirectional recurrent neural networks , 2016, Database J. Biol. Databases Curation.
[64] Okihide Hikosaka. Role of basal ganglia in saccades. , 1989, Revue neurologique.
[65] T. Klingberg,et al. Prefrontal cortex and basal ganglia control access to working memory , 2008, Nature Neuroscience.
[66] J. Fuster. Unit activity in prefrontal cortex during delayed-response performance: neuronal correlates of transient memory. , 1973, Journal of neurophysiology.
[67] R. Seitz,et al. Learning of Sequential Finger Movements in Man: A Combined Kinematic and Positron Emission Tomography (PET) Study , 1992, The European journal of neuroscience.
[68] J. Wayne Aldridge,et al. Basal Ganglia Neural Coding of Natural Action Sequences , 2002 .
[69] Quoc V. Le,et al. Sequence to Sequence Learning with Neural Networks , 2014, NIPS.
[70] Abigail L. Person,et al. Unitary IPSPs Drive Precise Thalamic Spiking in a Circuit Required for Learning , 2005, Neuron.
[71] Charles J. Wilson,et al. The generation of natural firing patterns in neostriatal neurons. , 1993, Progress in brain research.
[72] J. Houk,et al. Network models of the basal ganglia , 1997, Current Opinion in Neurobiology.
[73] Yoshua Bengio,et al. Learning Phrase Representations using RNN Encoder–Decoder for Statistical Machine Translation , 2014, EMNLP.