paper-with-me

홈 › Papers

Mutation induced infection waves in diseases like COVID-19

2022-05-06 · Fabian Jan Schwarzendahl, Jens Grauer, Benno Liebchen, Hartmut Löwen

After more than 6 million deaths worldwide, the ongoing vaccination to conquer the COVID-19 disease is now competing with the emergence of increasingly contagious mutations, repeatedly supplanting earlier strains. Following the near-absence of historical examples of the long-time evolution of infectious diseases under similar circumstances, models are crucial to exemplify possible scenarios. Accordingly, in the present work we systematically generalize the popular susceptible-infected-recovered model to account for mutations leading to repeatedly occurring new strains, which we coarse grain based on tools from statistical mechanics to derive a model predicting the most likely outcomes. The model predicts that mutations can induce a super-exponential growth of infection numbers at early times, which self-amplify to giant infection waves which are caused by a positive feedback loop between infection numbers and mutations and lead to a simultaneous infection of the majority of the population. At later stage -- if vaccination progresses too slowly -- mutations can interrupt an ongoing decrease of infection numbers and can cause infection revivals which occur as single waves or even as whole wave trains featuring alternative periods of decreasing and increasing infection numbers. This panorama of possible mutation-induced scenarios should be tested in more detailed models to explore their concrete significance for specific infectious diseases. Further, our results might be useful for discussions regarding the importance of a release of vaccine-patents to reduce the risk of mutation-induced infection revivals but also to coordinate the release of measures following a downwards trend of infection numbers.

📄 PDF Abstract BibTeX arXiv:2205.03073

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

PREPARE: PREdicting PAndemic's REcurring Waves Amidst Mutations, Vaccination, and Lockdowns

2024-09-30 · Narges M. Shahtori, S. Farokh Atashzar

This study releases an adaptable framework that can provide insights to policymakers to predict the complex recurring waves of the pandemic in the medium postemergence of the virus spread, a phase marked by rapidly chang…

Modeling spatial waves of Wolbachia invasion for controlling mosquito-borne diseases

2021-08-24 · Zhuolin Qu, Tong Wu, James Mac Hyman

Wolbachia is a natural bacterium that can infect mosquitoes and reduce their ability to transmit mosquito-borne diseases, such as dengue fever, Zika, and chikungunya. Field trials and modeling studies have shown that the…

Multistage spatial model for informing release of Wolbachia-infected mosquitoes as disease control

2024-11-27 · Zhuolin Qu, Tong Wu

Wolbachia is a naturally occurring bacterium that can infect Aedes mosquitoes and reduce the transmission of mosquito-borne diseases, including dengue fever, Zika, and chikungunya. Field trials have been conducted worldw…

Emerging dominant SARS-CoV-2 variants

2022-10-18 · Jiahui Chen, Rui Wang, Yuta Hozumi, Gengzhuo Liu 외

Accurate and reliable forecasting of emerging dominant severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants enables policymakers and vaccine makers to get prepared for future waves of infections. The las…

Two waves of adaptation: speciation induced by dormancy in a model with changing environment

2024-10-11 · Fernando Cordero, Adrián González Casanova, Jason Schweinsberg

We consider a population model in which the season alternates between winter and summer, and individuals can acquire mutations either that are advantageous in the summer and disadvantageous in the winter, or vice versa. …