Why there are complementary learning systems in the hippocampus and neocortex: Insights from the successes and failures of connectionist models of learning and memory.

Damage to the hippocampal system disrupts recent memory but leaves remote memory intact. The account presented here suggests that memories are first stored via synaptic changes in the hippocampal system, that these changes support reinstatement of recent memories in the neocortex, that neocortical synapses change a little on each reinstatement, and that remote memory is based on accumulated neocortical changes. Models that learn via changes to connections help explain this organization. These models discover the structure in ensembles of items if learning of each item is gradual and interleaved with learning about other items. This suggests that the neocortex learns slowly to discover the structure in ensembles of experiences. The hippocampal system permits rapid learning of new items without disrupting this structure, and reinstatement of new memories interleaves them with others to integrate them into structured neocortical memory systems.

The hippocampal memoryindexing theory.The hippocampal memory indexing theory.Hippocampal synapticenhancement and…Hippocampal synaptic enhancement and information storage within a distributed memory systemCatastrophicInterference in…Catastrophic Interference in Connectionist Networks: The Sequential Learning ProblemConnectionist models ofrecognition memory…Connectionist models of recognition memory: Constraints imposed by learning and forgetting functions.The Primate HippocampalFormation: Evidence for…The Primate Hippocampal Formation: Evidence for a Time-Limited Role in Memory StorageMemory and thehippocampus: A synthesi…Memory and the hippocampus: A synthesis from findings with rats, monkeys, and humans.Modality-SpecificRetrograde Amnesia of…Modality-Specific Retrograde Amnesia of FearDynamics of theHippocampal Ensemble…Dynamics of the Hippocampal Ensemble Code for SpaceHippocampal conjunctiveencoding, storage, and…Hippocampal conjunctive encoding, storage, and recall: Avoiding a trade‐offComputational analysisof the role of the…Computational analysis of the role of the hippocampus in memoryMemory consolidation andthe medial temporal…Memory consolidation and the medial temporal lobe: a simple network model.Configural associationtheory and the…Configural association theory and the hippocampal formation: An appraisal and reconfigurationReactivation ofHippocampal Cell…Reactivation of Hippocampal Cell Assemblies: Effects of Behavioral State, Experience, and EEG DynamicsContextual fearconditioning…Contextual fear conditioning, conjunctive representations, pattern completion, and the hippocampus.A Biologically BasedComputational Model of…A Biologically Based Computational Model of Working MemoryNeuromodulation:acetylcholine and memor…Neuromodulation: acetylcholine and memory consolidationOscillator-based memoryfor serial order.Oscillator-based memory for serial order.An Integrative Theory ofPrefrontal Cortex…An Integrative Theory of Prefrontal Cortex FunctionEpisodic Memory: FromMind to BrainEpisodic Memory: From Mind to BrainCellular and molecularconnections between…Cellular and molecular connections between sleep and synaptic plasticityCompetitive TraceTheory: A Role for the…Competitive Trace Theory: A Role for the Hippocampus in Contextual Interference during RetrievalHierarchical nesting ofslow oscillations…Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleepThe Persistence andTransience of MemoryThe Persistence and Transience of MemoryCorrecting the hebbianmistake: Toward a fully…Correcting the hebbian mistake: Toward a fully error-driven hippocampusWhy there arecomplementary learning…Why there are complementary learning systems in the hippocampus and neocortex: Insights from the successes and failures of connectionist models of learning and memory.過去の参考文献中心の論文この論文を引用する論文古い新しい

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