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Titlebook: Mechanisms, Symbols, and Models Underlying Cognition; First International José Mira,José R. Álvarez Conference proceedings 2005 Springer-V

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Rules and Roles of Dendritic Spikes in CA1 Pyramidal Cells: A Computational Study difficult the experimental study. A number of factors control their initiation and spread. We explore here with an experimentally calibrated model the relation of these spikes to cell output during synchronous input and spontaneous firing. A small number of firing dendrites within a reduced timesca
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Slow Conductances Encode Stimulus History into Spike Shapeserentially and consequently correspond to different probabilities of generating the next spike. Thus two neurons producing different spikes shapes, say Purkinje and pyramidal cells, integrate differently the same excitatory potentials. More interestingly, there is variability in the spike shape of a
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Evaluation of Neuronal Firing Densities via Simulation of a Jump-Diffusion Processps driven by a counting process. We consider the first-crossing-time problem through a constant boundary for such a process, in order to describe the firing activity of the model neuron. We build up a new simulation procedure for the construction of firing densities estimates.
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Santi Chillemi,Alessandro Panarese,Michele Barbi,Angelo Di Garbotems(like strings and beams) andheating processes. Distributed as well asboundary controlis considered.In the case of vibrating systemstrigonometric moment pro-blems are to be investigated which is done on the basis ofan abstract moment theory in Hilbert spaces. Equivalently,alsothe theory of linear
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