Infectious disease dynamics in metapopulations with heterogeneous transmission and recurrent mobility. Cota, W., Soriano-Paños, D., Arenas, A., Ferreira, S. C., & Gómez-Gardeñes, J. arXiv:2102.10614 [physics, q-bio], February, 2021. arXiv: 2102.10614
Infectious disease dynamics in metapopulations with heterogeneous transmission and recurrent mobility [link]Paper  abstract   bibtex   
Human mobility, contact patterns, and their interplay are key aspects of our social behavior that shape the spread of infectious diseases across different regions. In the light of new evidence and data sets about these two elements, epidemic models should be refined to incorporate both the heterogeneity of human contacts and the complexity of mobility patterns. Here, we propose a theoretical framework that allows accommodating these two aspects in the form of a set of Markovian equations. We validate these equations with extensive mechanistic simulations and derive analytically the epidemic threshold. The expression of this critical value allows us to evaluate its dependence on the specific demographic distribution, the structure of mobility flows, and the heterogeneity of contact patterns.
@article{cota_infectious_2021,
	title = {Infectious disease dynamics in metapopulations with heterogeneous transmission and recurrent mobility},
	url = {http://arxiv.org/abs/2102.10614},
	abstract = {Human mobility, contact patterns, and their interplay are key aspects of our social behavior that shape the spread of infectious diseases across different regions. In the light of new evidence and data sets about these two elements, epidemic models should be refined to incorporate both the heterogeneity of human contacts and the complexity of mobility patterns. Here, we propose a theoretical framework that allows accommodating these two aspects in the form of a set of Markovian equations. We validate these equations with extensive mechanistic simulations and derive analytically the epidemic threshold. The expression of this critical value allows us to evaluate its dependence on the specific demographic distribution, the structure of mobility flows, and the heterogeneity of contact patterns.},
	urldate = {2021-03-01},
	journal = {arXiv:2102.10614 [physics, q-bio]},
	author = {Cota, Wesley and Soriano-Paños, David and Arenas, Alex and Ferreira, Silvio C. and Gómez-Gardeñes, Jesús},
	month = feb,
	year = {2021},
	note = {arXiv: 2102.10614},
	keywords = {complex networks, epidemic model, mentions sympy, population dynamics, quantitative evolution},
}

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