Author: Ronan F. Arthur; James H. Jones; Matthew H. Bonds; Marcus W. Feldman
Title: Complex dynamics induced by delayed adaptive behavior during epidemics Document date: 2020_4_16
ID: f4ro5jst_57
Snippet: This simple model of endogenous behavior change contains a disease-free equilibrium and an endemic non-zero equilibrium, both of which are stable under different conditions. Several parameters, including b 0 , the transmissiblity parameter, Γ, the removal rate, ∆, the time delay, andĉ, the target contact rate, are each dynamically influential and can cause a regime shift through five distinct classes of dynamics found in the computational res.....
Document: This simple model of endogenous behavior change contains a disease-free equilibrium and an endemic non-zero equilibrium, both of which are stable under different conditions. Several parameters, including b 0 , the transmissiblity parameter, Γ, the removal rate, ∆, the time delay, andĉ, the target contact rate, are each dynamically influential and can cause a regime shift through five distinct classes of dynamics found in the computational results, including monotonic convergence to the disease-free equilibrium, monotonic convergence to the non-zero equilibrium, damped oscillation to equilibrium, perpetual oscillation, and collapse.
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