
Mathematical Models of Tumor-Immune System Dynamics
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Incorporating Asymmetric Stem Cell Division into the Roeder Model for Chronic Myeloid Leukemia.- A Cellular Automata and a Partial Differential Equation Model of Tumor-Immune Dynamics and Chemotaxis.- A Structured Population Model of Competition between Cancer Cells and T Cells under Immunotherapy.- Modeling Tumor-Immune Dynamics.- The Mathematics of Drug Delivery.- The Role of the miR-451-AMPK Signaling Pathway in Regulation of Cell Migration and Proliferation in Glioblastoma.- An Optimal Control Approach to Cancer Chemotherapy with Tumor-Immune System Interactions.- Negative feedback regulation in hierarchically organized tissues: Exploring the dynamics of tissue regeneration and the role of feedback escape in tumor development.- A Cellular Automata Model to Investigate Immune Cell-Tumor Cell Interactions in Growing Tumors in Two Spatial Dimensions.- Differential Equation Techniques for Modeling a Cycle-Specific Oncolytic Virotherapeutic.