Related Experiment Video
Updated: Apr 27, 2026

A Method of Trigonometric Modelling of Seasonal Variation Demonstrated with Multiple Sclerosis Relapse Data
Published on: December 9, 2015
Multiannual forecasting of seasonal influenza dynamics reveals climatic and evolutionary drivers
Jacob Bock Axelsen1, Rami Yaari2, Bryan T Grenfell3
1Biomathematics Unit, Department of Zoology, Faculty of Life Science, and.
Abstract:
Human influenza occurs annually in most temperate climatic zones of the world, with epidemics peaking in the cold winter months. Considerable debate surrounds the relative role of epidemic dynamics, viral evolution, and climatic drivers in driving year-to-year variability of outbreaks. The ultimate test of understanding is prediction; however, existing influenza models rarely forecast beyond a single year at best. Here, we use a simple epidemiological model to reveal multiannual predictability based on high-quality influenza surveillance data for Israel; the model fit is corroborated by simple metapopulation comparisons within Israel. Successful forecasts are driven by temperature, humidity, antigenic drift, and immunity loss. Essentially, influenza dynamics are a balance between large perturbations following significant antigenic jumps, interspersed with nonlinear epidemic dynamics tuned by climatic forcing.
Related Concept Videos
Influenza
Steps in Outbreak Investigation
Infectious Diseases and Their Occurrence
Statistical Methods for Analyzing Epidemiological Data

