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Nico Stollenwerk
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2020 – today
- 2024
- [j11]Vanessa Steindorf, Sérgio M. Oliva, Nico Stollenwerk, Maíra Aguiar:
Symmetry in a multi-strain epidemiological model with distributed delay as a general cross-protection period and disease enhancement factor. Commun. Nonlinear Sci. Numer. Simul. 128: 107663 (2024) - 2022
- [j10]Vizda Anam, Afrina Andriani Sebayang, Hilda Fahlena, Damián A. Knopoff, Nico Stollenwerk, Edy Soewono, Maíra Aguiar:
Modeling Dengue Immune Responses Mediated by Antibodies: Insights on the Biological Parameters to Describe Dengue Infections. Comput. Math. Methods 2022: 1-11 (2022) - [j9]Damián A. Knopoff, Nicole Cusimano, Nico Stollenwerk, Maíra Aguiar:
Spatially Extended SHAR Epidemiological Framework of Infectious Disease Transmission. Comput. Math. Methods 2022: 1-14 (2022) - [j8]Akhil Kumar Srivastav, Nico Stollenwerk, Maíra Aguiar:
Deterministic and Stochastic Dynamics of COVID-19: The Case Study of Italy and Spain. Comput. Math. Methods 2022: 1-16 (2022) - [j7]Nico Stollenwerk, Stefano Spaziani, Javier Mar, Irati Eguiguren Arrizabalaga, Damián A. Knopoff, Nicole Cusimano, Vizda Anam, Akhil Kumar Srivastav, Maíra Aguiar:
Seasonally Forced SIR Systems Applied to Respiratory Infectious Diseases, Bifurcations, and Chaos. Comput. Math. Methods 2022: 1-12 (2022)
2010 – 2019
- 2016
- [j6]Filipe Rocha, Luís Mateus, Urszula Skwara, Maíra Aguiar, Nico Stollenwerk:
Understanding dengue fever dynamics: a study of seasonality in vector-borne disease models. Int. J. Comput. Math. 93(8): 1405-1422 (2016) - 2013
- [j5]Filipe Rocha, Maíra Aguiar, Max Souza, Nico Stollenwerk:
Time-scale separation and centre manifold analysis describing vector-borne disease dynamics. Int. J. Comput. Math. 90(10): 2105-2125 (2013) - [j4]Luís Mateus, Nico Stollenwerk, Jean-Claude Zambrini:
Stochastic models in population biology: from dynamic noise to Bayesian description and model comparison for given data sets. Int. J. Comput. Math. 90(10): 2161-2173 (2013) - [j3]Bob W. Kooi, Maíra Aguiar, Nico Stollenwerk:
Bifurcation analysis of a family of multi-strain epidemiology models. J. Comput. Appl. Math. 252: 148-158 (2013)
2000 – 2009
- 2009
- [j2]Maíra Aguiar, Nico Stollenwerk, Bob W. Kooi:
Torus bifurcations, isolas and chaotic attractors in a simple dengue fever model with ADE and temporary cross immunity. Int. J. Comput. Math. 86(10&11): 1867-1877 (2009) - 2008
- [j1]Eduardo Massad, Stefen Ma, Mark Chen, Cláudio José Struchiner, Nico Stollenwerk, Maíra Aguiar:
Scale-free network of a dengue epidemic. Appl. Math. Comput. 195(2): 376-381 (2008)
1990 – 1999
- 1997
- [c1]Nico Stollenwerk, Liset Menendez de la Prida, Juan Vicente Sánchez-Andrés:
Spontaneous Activity of Hippocampal Cells in Various Physiological States. IWANN 1997: 91-102
Coauthor Index
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