Skip to product information
1 of 1
Regular price £54.99 GBP
Regular price Sale price £54.99 GBP
Sale Sold out
Free UK Shipping

Freshly Printed - allow 7 days lead

A Primer on Mathematical Models in Biology

A textbook on mathematical modelling techniques with powerful applications to biology, combining theoretical exposition with exercises and examples.

Lee A. Segel (Author), Leah Edelstein–keshe (Author)

9781611972498

Paperback / softback, published 30 March 2013

447 pages
22.9 x 15.2 x 2 cm, 0.807 kg

This textbook grew out of a course that the highly respected applied mathematician Lee Segel taught at the Weizmann Institute. This book represents the unique perspective on mathematical biology of Segel and his co-author Leah Edelstein-Keshet (author of the popular SIAM book, Mathematical Models in Biology). It introduces differential equations, biological applications, and simulations, with emphasis on molecular events (biochemistry and enzyme kinetics), excitable systems (neural signals), and small protein and genetic circuits. The exposition combines clear and useful mathematical methods with plenty of applications to illustrate the power of such tools, along with many exercises in reasoning, modelling and simulation. The reader will also find suggestions for further study and appendices containing useful background material. These features make the book ideal for students at the advanced undergraduate or graduate level in both biology and mathematics who wish to experience the application of mathematical techniques to the biological sciences.

List of figures
List of tables
Acknowledgments
Preface
1. Introduction
2. Introduction to biochemical kinetics
3. Review of linear differential equations
4. Introduction to nondimensionalization and scaling
5. Qualitative behavior of simple differential equation models
6. Developing a model from the ground up: case study of the spread of an infection
7. Phase plane analysis
8. Quasi steady state and enzyme-mediated biochemical kinetics
9. Multiple sub-unit enzymes and proteins: cooperativity
10. Dynamic behavior of neuronal membranes
11. Excitable systems and the FitzHugh–Nagumo equations
12. Biochemical modules
13. Discrete networks of genes and cells
14. For further study
15. Extended exercises and projects
Appendix A. The Taylor approximation and Taylor series
Appendix B. Complex numbers
Appendix C. A review of basic theory of electricity
Appendix D. Proofs of Boolean algebra rules
Appendix E. XPP files for models in this book
Bibliography
Index.

Subject Areas: Miscellaneous items [WZ]

View full details