arXiv · 2101.12275
Stochastic social behavior coupled to COVID-19 dynamics leads to waves, plateaus and an endemic state
Abstract
It is well recognized that population heterogeneity plays an important role in the spread of epidemics. While individual variations in social activity are often assumed to be persistent, i.e. constant in time, here we discuss the consequences of dynamic heterogeneity. By integrating the stochastic dynamics of social activity into traditional epidemiological models we demonstrate the emergence of a new long timescale governing the epidemic in broad agreement with empirical data. Our model captures multiple features of real-life epidemics such as COVID-19, including prolonged plateaus and multiple waves, which are transiently suppressed due to the dynamic nature of social activity. The existence of the long timescale due to the interplay between epidemic and social dynamics provides a unifying picture of how a fast-paced epidemic typically will transition to the endemic state.
Explore related subjects
Keep this discovery
Alexei V. Tkachenko, Sergei Maslov, Tong Wang, Ahmed Elbanna, George N. Wong, Nigel Goldenfeld. 2021-01-28. Stochastic social behavior coupled to COVID-19 dynamics leads to waves, plateaus and an endemic state. https://arxiv.org/abs/2101.12275
Cite the original work for its findings. Save a collection to share your selection of sources.