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Titlebook: Computational Neuroscience: Cortical Dynamics; 8th International Su Péter Érdi,Anna Esposito,Silvia Scarpetta Conference proceedings 2004 S

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Dynamics of Storage and Recall in Hippocampal Associative Memory Networksetical studies aimed at elucidating dynamic signal processing within hippocampal pyramidal cells. This processing involves both the intrinsic pyramidal cell properties as well as the microcircuit of inhibitory interneurons that synapse onto the cell. These factors are considered within the framework
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On the Nested Hierarchical Organization of CNS: Basic Characteristics of Neuronal Molecular Networksprinciples. Thus, it is possible to recognize networks at multiple scales (miniaturisation principle) moving top-down from neuronal to molecular networks. Such a nested organization of the CNS leads to the problem how circulation and integration of information at different levels of miniaturisation
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Neural Phase Transitions That Made Us Mammalsammals: the lamination of sensory cortex and the differentiation into sub-fields of the mammalian hippocampus. In neither case the qualitative structural change seems to be accompanied by an equally dramatic functional change in the operation of those circuits. Both studies discuss the evolution of
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A Complex Systems Approach to an Interpretation of Dynamic Brain Activity II: Does Cantor Coding Pro a random information source. We also propose a hypothesis on the possibility of Cantor coding for the formation of episodic memory in the hippocampus and also for the category formation of episodic memory. Smale’s horseshoe map defines Cantor coding as a conjugacy of expanding dynamics embedded wit
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Itinerant Dynamics of Class I* Neurons Coupled by Gap Junctions they “may play a key role in coordinating cortical activity...”(M. Galarreta & S. Hestrin), little is known how they behave in the . neocortex. A salient property of some interneuron systems in the neocortex is that they are coupled by gap junctions (GJs) – a kind of electrical couplings very inten
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