activity
20242026
collaborators

4 papers

math.NA2026

Efficient numerical computation of traveler states in explicit mobility-based metapopulation models: Mathematical theory and application to epidemics

Henrik Zunker, René Schmieding, Jan Hasenauer +1

Metapopulation models are powerful tools for capturing the spatio-temporal spread of infectious diseases. Models that explicitly account for traveler origins and destinations, such…

q-bio.PE2026

MEmilio -- A high performance Modular EpideMIcs simuLatIOn software for multi-scale and comparative simulations of infectious disease dynamics

Julia Bicker, Carlotta Gerstein, David Kerkmann +33

Epidemic and pandemic preparedness with rapid outbreak response rely on timely, trustworthy evidence. Mathematical models are crucial for supporting timely and reliable evidence ge…

math.DS2025

Revisiting the Linear Chain Trick in epidemiological models: Implications of underlying assumptions for numerical solutions

Lena Plötzke, Anna Wendler, René Schmieding +1

In order to simulate the spread of infectious diseases, many epidemiological models use systems of ordinary differential equations (ODEs) to describe the underlying dynamics. These…

q-bio.PE2024

Hybrid metapopulation agent-based epidemiological models for efficient insight on the individual scale: a contribution to green computing

Julia Bicker, René Schmieding, Michael Meyer-Hermann +1

Emerging infectious diseases and climate change are two of the major challenges in 21st century. Although over the past decades, highly-resolved mathematical models have contribute…