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A coupled disease-misinformation model of measles transmission in the Canadian context
Callandra Moore1, David Fisman1
1University of Toronto at the Dalla Lana School of Public Health, Canada.
Abstract:
Infectious disease dynamics are increasingly shaped not only by biological processes but also by the spread of misinformation. This study presents a coupled disease-misinformation model, SMIRK, to evaluate the impact of misinformation on a recent measles outbreak in Canada. The novel model combines a standard SIR framework for measles transmission with an SIS-like KMK model for misinformation spread. Two misinformation recovery paradigms are explored: constant-rate recovery and recovery induced by contact with infected individuals. Parameters were estimated using least-squares fitting to epidemiological data from Health Canada and Public Health Ontario (December 2024 to March 2025). Model calibration suggests that misinformation rapidly reaches a stable equilibrium, effectively saturating the population regardless of recovery paradigm. Due to the rapid information homogenization of the population, measles is predicted to behave as a standard low-R 0 infection under most calibrations. Despite its limitations, the SMIRK model offers a proof of concept for integrating misinformation into epidemiological models, underscoring the need for more nuanced modeling of informational dynamics in public health forecasting.
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