Stationary distribution and extinction of a stochastic HIV-1 infection model with distributed delay and logistic growth
DOI10.1007/s00332-019-09576-xzbMath1435.34084OpenAlexW2973050819WikidataQ127318759 ScholiaQ127318759MaRDI QIDQ2303769
Ahmed Alsaedi, Daqing Jiang, Qun Liu, Tasawar Hayat
Publication date: 5 March 2020
Published in: Journal of Nonlinear Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00332-019-09576-x
Asymptotic theory of functional-differential equations (34K25) Stability theory of functional-differential equations (34K20) Stochastic functional-differential equations (34K50) Qualitative investigation and simulation of models involving functional-differential equations (34K60) Medical epidemiology (92C60)
Related Items (10)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Stochastic modelling of viral blips in HIV-1-infected patients: effects of inhomogeneous density fluctuations
- Stochastic modelling of the eradication of the HIV-1 infection by stimulation of latently infected cells in patients under highly active anti-retroviral therapy
- The asymptotic behavior of stochastically perturbed DI SIR epidemic models with saturated incidences
- Existence theorems for periodic Markov process and stochastic functional differential equations
- Optimal control of the chemotherapy of HIV
- Almost sure exponential stability of neutral stochastic differential difference equations
- A mathematical model of cell-to-cell spread of HIV-1 that includes a time delay
- A delay-differential equation model of HIV infection of \(\text{CD}4^+\) T-cells
- Asymptotic behaviors of a cell-to-cell HIV-1 infection model perturbed by white noise
- Dynamics of a stochastic HIV-1 infection model with logistic growth
- Stochastic dynamics of HIV models with switching parameters and pulse control
- Dynamics of HIV infection of CD4\(^ +\) T cells
- Dynamics of a stochastic cell-to-cell HIV-1 model with distributed delay
- Mathematical analysis of HIV/AIDS stochastic dynamic models
- Complex dynamics in a stochastic internal HIV model
- A stochastic model for internal HIV dynamics
- Necessary and sufficient condition for comparison theorem of 1-dimensional stochastic differential equations
- An Algorithmic Introduction to Numerical Simulation of Stochastic Differential Equations
- Mathematical Analysis of HIV-1 Dynamics in Vivo
This page was built for publication: Stationary distribution and extinction of a stochastic HIV-1 infection model with distributed delay and logistic growth