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Titlebook: Connectionist Models of Neurons, Learning Processes, and Artificial Intelligence; 6th International Wo José Mira,Alberto Prieto Conference

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楼主: 强烈的愿望
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Theory of Turbomachinery Stages, only inhibitory chemical coupling is considered. Each unit receives synaptic-like input from a given fraction of the other units, randomly chosen. The synchronisation properties of the neuronal population are investigated against the coupling features (number of connections per neuron, synaptic cu
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https://doi.org/10.1007/978-1-4615-2586-8ituations by means of methods based on the theory of dynamical systems. Multiple cortical areas are found to be synchronized together while the brain was engaged in higher information processing task. An additional experiment showed that the interhemispheric synchronization between two central deriv
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Andrew W. Cary,John F. Donovan,Linda D. Kraline. Rao et al. (1997) found neurons contributing to both object and spatial working memory. However, their mechanisms are still unknown. In this study, we propose a neural networkmodel of working memory in order to shed light on its mechanism. Our model has two input streams and can cope with a tas
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D. Bernard,A. Tossa,R. Emilion,S. K. Iyericz. These expressions even though information preserving may have a high degree of complexity impairing their understandability. The paper discloses a strategy which combines classical logic with the logic of Lukasiewicz to decompose a complex rule into a set of simpler rules that cover the former.
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James Busumtwi-Sam,Laurent Dobuzinskisould perform hypercomputation. She also established the equivalence between the ARNN and other analog systems that support hypercomputation, launching the foundations of an alternative computational theory. In this paper we contribute to this alternative theory by exploring the use of formal methods
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Theory of Turbomachinery StagesWe propose a novel approach based upon a superposition of ‘colored’ and ‘white’ noise to approximate current inputs in neural models. Numerical results show that the novel approach substantially improves the approximation within widely, physiologically reasonable regions of the rising time of α-wave inputs.
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Turbulence and Hausdorff dimension,In the present work, certain aspects, restricted to the visual system, of the J. Gonzalo’s research, are interpreted according to a simple linear theory of time-dispersion applied to the dynamic cerebral system, characterized by its excitability and its reaction velocity.
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