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1. Dynamics and optimal therapy of a stochastic HTLV‐1 model incorporating Ornstein–Uhlenbeck process.

2. Mathematical analysis of stability and Hopf bifurcation in a delayed HIV infection model with saturated immune response.

3. A mathematical model of brain tumor.

4. A delayed diffusive HBV model with nonlinear incidence and CTL immune response.

5. Dynamics of immunotherapy antitumor models with impulsive control strategy.

6. Stability of HIV/HTLV‐I co‐infection model with delays.

7. Dynamics of stochastic HTLV‐I infection model with nonlinear CTL immune response.

8. Mathematical modeling of tumor surface growth with necrotic kernels.

9. Analysis and control of a delayed HIV infection model with cell‐to‐cell transmission and cytotoxic T lymphocyte immune response.

10. Periodic solutions of a periodic stochastic human immunodeficiency virus model with distributed delay and cytotoxic T lymphocytes immune response.

11. Stability of a general adaptive immunity virus dynamics model with multistages of infected cells and two routes of infection.

12. Dynamics of an HIV‐1 virus model with both virus‐to‐cell and cell‐to‐cell transmissions, general incidence rate, intracellular delay, and CTL immune responses.

13. Threshold dynamics of a delayed virus infection model with cellular immunity and general nonlinear incidence.

14. Bifurcation analysis of HIV infection model with antibody and cytotoxic T-lymphocyte immune responses and Beddington-DeAngelis functional response.