Mathematical models of tumor-immune system dynamics (New York, 2014). - ОГЛАВЛЕНИЕ / CONTENTS
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ОбложкаMathematical models of tumor-immune system dynamics / eds.: A.Eladdadi et al. - New York: Springer Science+Business Media, 2014. - x, 275 p.: ill., tab. - (Springer proceedings in mathematics & statistics; vol.107). - Bibliogr. at the end of the art. - ISBN 978-1-4939-1792-1; ISSN 2194-1009
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Оглавление / Contents
 
Incorporating Asymmetric Stem Cell Division into the Roeder
Model for Chronic Myeloid Leukemia .............................. 1
   Geoffrey Clapp and Doron Levy
A Cellular Automata and a Partial Differential Equation
Model of Tumor-Immune Dynamics and Chemotaxis .................. 21
   Andrea K. Cooper and Peter S. Kim
A Structured Population Model of Competition Between
Cancer Cells and T Cells Under Immunotherapy ................... 47
   Marcello Delitala, Tommaso Lorenzi, and Matteo Melensi
Modeling Tumor-Immune Dynamics ................................. 59
   Lisette G. de Pillis and Ami E. Radunskaya
The Mathematics of Drug Delivery .............................. 109
   Peter Hinow and Ami E. Radunskaya
The Role of the miR-451-AMPK Signaling Pathway
in Regulation of Cell Migration and Proliferation in
Glioblastoma .................................................. 125
   Yangjin Kim, Hyunji Kang, and Sean Lawler
An Optimal Control Approach to Cancer Chemotherapy
with Tumor-Immune System Interactions ......................... 157
   Urszula Ledzewicz and Heinz Schättier
Negative Feedback Regulation in Hierarchically Organized
Tissues: Exploring the Dynamics of Tissue Regeneration
and the Role of Feedback Escape in Tumor Development .......... 197
   Ignacio A. Rodriguez-Brenes, Natalia L. Komarova, and
   Dominik Wodarz
A Cellular Automata Model to Investigate Immune Cell-Tumor
Cell Interactions in Growing Tumors in TwoSpatial Dimensions .. 223
   Trisilowati, Scott W. McCue, and Dann G. Mallet
Differential Equation Techniques for Modeling a Cycle-
Specific Oncolytic Virotherapeutic ............................ 253
   Joanna R. Wares, Joseph J. Crivelli, and Peter S. Kim


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