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Stability preserving NSFD scheme for a delayed viral infection model with cell-to-cell transmission and general nonlinear incidence
Authors:Jinhu Xu  Yan Geng
Institution:1. School of Sciences, Xi’an University of Technology, Xi’an, P.R. China.xujinhu@xaut.edu.cn;3. School of Mathematics and Statistics, Xi’an Jiaotong University, Xi’an, P.R. China.
Abstract:In this paper, we designed and analysed a discrete model to solve a delayed within-host viral infection model by using non-standard finite difference scheme. The original model that we considered was a delayed viral infection model with cell-to-cell transmission, cell-mediated immune response and general nonlinear incidence. We show that the discrete model has equilibria which are exactly the same as those of the original continuous model and the conditions for those equilibria to be globally asymptotically stable are consistent with the original continuous model with no restriction on the time step size. The results imply that the discretization scheme can efficiently preserves the qualitative properties of solutions for corresponding continuous model.
Keywords:NSFD scheme  cell-to-cell transmission  general nonlinear incidence  globally asymptotically stable
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