Stability analysis of delayed co-infection model of pneumonia and meningitis

Farhan Ahmed, Atif Hassan Soori, Wajid Ali, Ali Akgül, Gulnora Shakmurova

Abstract


This study develops and analyzes a delay differential model to investigate the co-infection dynamics of pneumonia and meningitis in a human population. The model incorporates biologically motivated delay factors-such as isolation, social distancing, and public awareness represented through an exponential survival term. These delays capture the influence of behavioral and treatment-related interventions on disease transmission. The model’s dynamical behavior is examined through the analysis of positivity, boundedness, and equilibrium states. Both the disease-free equilibrium (DFE) and disease-existing equilibrium (DEE) are shown to be locally and globally asymptotically stable under appropriate threshold conditions. Sensitivity analysis highlights the influence of key parameters, including delay-related terms, on the basic reproduction numbers of pneumonia, meningitis, and their co-infection subsystem. Numerical simulations support the analytical results and illustrate how increasing delay-based interventions can effectively suppress disease spread. The findings provide valuable insights for public health strategies, suggesting that isolation, social distancing, and awareness campaigns can substantially mitigate co-infection risks in affected communities.


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Published: 2026-08-06

How to Cite this Article:

Farhan Ahmed, Atif Hassan Soori, Wajid Ali, Ali Akgül, Gulnora Shakmurova, Stability analysis of delayed co-infection model of pneumonia and meningitis, Commun. Math. Biol. Neurosci., 2026 (2026), Article ID 74

Copyright © 2026 Farhan Ahmed, Atif Hassan Soori, Wajid Ali, Ali Akgül, Gulnora Shakmurova. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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