Related Experiment Video
Updated: Jul 13, 2026

Using Zebrafish Models of Human Influenza A Virus Infections to Screen Antiviral Drugs and Characterize Host Immune Cell Responses
Published on: January 20, 2017
A delay differential model for pandemic influenza with antiviral treatment
Murray E Alexander1, Seyed M Moghadas, Gergely Röst
1Institute for Biodiagnostics, National Research Council Canada, Winnipeg, MB, Canada, R3B 1Y6.
Abstract:
The use of antiviral drugs has been recognized as the primary public health strategy for mitigating the severity of a new influenza pandemic strain. However, the success of this strategy requires the prompt onset of therapy within 48 hours of the appearance of clinical symptoms. This requirement may be captured by a compartmental model that monitors the density of infected individuals in terms of the time elapsed since the onset of symptoms. We show that such a model can be expressed by a system of delay differential equations with both discrete and distributed delays. The model is analyzed to derive the criterion for disease control based on two critical factors: (i) the profile of treatment rate; and (ii) the level of treatment as a function of time lag in commencing therapy. Numerical results are also obtained to illustrate the feasible region of disease control. Our findings show that due to uncertainty in the attack rate of a pandemic strain, initiating therapy immediately upon diagnosis can significantly increase the likelihood of disease control and substantially reduce the required community-level of treatment. This suggests that reliable diagnostic methods for influenza cases should be rapidly implemented within an antiviral treatment strategy.
More Related Videos
09:02Monitoring Influenza Virus Survival Outside the Host Using Real-Time Cell Analysis
Published on: February 20, 2021
07:15Preparation of Pseudo-Typed H5 Avian Influenza Viruses with Calcium Phosphate Transfection Method and Measurement of Antibody Neutralizing Activity
Published on: November 22, 2021
Related Concept Videos
Pharmacodynamic Models: Additive and Proportional Drug Effect Model
Pharmacodynamic Models: Link Model and Systems Pharmacodynamic Model
Influenza
Inhibitors Of Virion Release
Pharmacodynamic Models: Direct Effect Model and Indirect Response Model
Impact of Pharmacokinetic–Pharmacodynamic Models: Regulatory Decisions