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Bursting neurons 1 Complex Entropic form 1 Disordered surfaces 1 Euler characteristic 1 Extended systems 1 Gradient dynamics 1 Gradient pattern analysis 1 KPZ equation 1 Neural ensembles 1 Non-local coupling 1 Pattern formation 1 Phase disorder 1 Porous silicon 1 Structural complexity 1 Synchronization 1 Wavelet multiresolution analysis 1
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Baroni, M.P.M.A. 1 Batista, A.M. 1 Batista, C.A.S. 1 Bolzan, M.J.A. 1 Christov, C.I 1 Ferreira da Silva, A. 1 Lopes, S.R. 1 Neto, C. Rodrigues 1 Pontes, J 1 Pontes, J. 1 Ramos, F.M 1 Rempel, E.L 1 Roman, L.S. 1 Rosa, R.R 1 Rosa, R.R. 1 Viana, R.L. 1 Walgraef, D 1 Zaniboni, G.T. 1 de Pontes, J.C.A. 1
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Physica A: Statistical Mechanics and its Applications 3
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Bursting synchronization in non-locally coupled maps
de Pontes, J.C.A.; Viana, R.L.; Lopes, S.R.; Batista, C.A.S. - In: Physica A: Statistical Mechanics and its Applications 387 (2008) 16, pp. 4417-4428
Neuron activity presents two timescales, a fast one related to action-potential spiking, and a slow timescale in which bursting takes place. Bursting activity in neuron ensembles can be synchronized, meaning the adjustment of the bursting phases due to coupling. We investigated bursting...
Persistent link: https://www.econbiz.de/10010873211
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Structural complexity of disordered surfaces: Analyzing the porous silicon SFM patterns
Rosa, R.R.; Baroni, M.P.M.A.; Zaniboni, G.T.; Ferreira … - In: Physica A: Statistical Mechanics and its Applications 386 (2007) 2, pp. 666-673
This paper introduces a relative structural complexity measure for the characterization of disordered surfaces. Numerical solutions of 2d+1 KPZ equation and scanning force microscopy (SFM) patterns of porous silicon samples are analyzed using this methodology. The results and phenomenological...
Persistent link: https://www.econbiz.de/10010591068
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Gradient pattern analysis of Swift–Hohenberg dynamics: phase disorder characterization
Rosa, R.R; Pontes, J; Christov, C.I; Ramos, F.M; Neto, … - In: Physica A: Statistical Mechanics and its Applications 283 (2000) 1, pp. 156-159
In this paper, we analyze the onset of phase-dominant dynamics in a uniformly forced system. The study is based on the numerical integration of the Swift–Hohenberg equation and adresses the characterization of phase disorder detected from gradient computational operators as complex entropic...
Persistent link: https://www.econbiz.de/10010591640
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