Introduction to Mathematical Oncology

Nonfiction, Health & Well Being, Medical, Ailments & Diseases, Infectious Diseases, Epidemiology, Science & Nature, Mathematics, Applied, Science, Biological Sciences, Biology
Cover of the book Introduction to Mathematical Oncology by Yang Kuang, John D. Nagy, Steffen E. Eikenberry, CRC Press
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Yang Kuang, John D. Nagy, Steffen E. Eikenberry ISBN: 9781498752978
Publisher: CRC Press Publication: September 3, 2018
Imprint: Chapman and Hall/CRC Language: English
Author: Yang Kuang, John D. Nagy, Steffen E. Eikenberry
ISBN: 9781498752978
Publisher: CRC Press
Publication: September 3, 2018
Imprint: Chapman and Hall/CRC
Language: English

Introduction to Mathematical Oncology presents biologically well-motivated and mathematically tractable models that facilitate both a deep understanding of cancer biology and better cancer treatment designs. It covers the medical and biological background of the diseases, modeling issues, and existing methods and their limitations. The authors introduce mathematical and programming tools, along with analytical and numerical studies of the models. They also develop new mathematical tools and look to future improvements on dynamical models.

After introducing the general theory of medicine and exploring how mathematics can be essential in its understanding, the text describes well-known, practical, and insightful mathematical models of avascular tumor growth and mathematically tractable treatment models based on ordinary differential equations. It continues the topic of avascular tumor growth in the context of partial differential equation models by incorporating the spatial structure and physiological structure, such as cell size. The book then focuses on the recent active multi-scale modeling efforts on prostate cancer growth and treatment dynamics. It also examines more mechanistically formulated models, including cell quota-based population growth models, with applications to real tumors and validation using clinical data. The remainder of the text presents abundant additional historical, biological, and medical background materials for advanced and specific treatment modeling efforts.

Extensively classroom-tested in undergraduate and graduate courses, this self-contained book allows instructors to emphasize specific topics relevant to clinical cancer biology and treatment. It can be used in a variety of ways, including a single-semester undergraduate course, a more ambitious graduate course, or a full-year sequence on mathematical oncology.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Introduction to Mathematical Oncology presents biologically well-motivated and mathematically tractable models that facilitate both a deep understanding of cancer biology and better cancer treatment designs. It covers the medical and biological background of the diseases, modeling issues, and existing methods and their limitations. The authors introduce mathematical and programming tools, along with analytical and numerical studies of the models. They also develop new mathematical tools and look to future improvements on dynamical models.

After introducing the general theory of medicine and exploring how mathematics can be essential in its understanding, the text describes well-known, practical, and insightful mathematical models of avascular tumor growth and mathematically tractable treatment models based on ordinary differential equations. It continues the topic of avascular tumor growth in the context of partial differential equation models by incorporating the spatial structure and physiological structure, such as cell size. The book then focuses on the recent active multi-scale modeling efforts on prostate cancer growth and treatment dynamics. It also examines more mechanistically formulated models, including cell quota-based population growth models, with applications to real tumors and validation using clinical data. The remainder of the text presents abundant additional historical, biological, and medical background materials for advanced and specific treatment modeling efforts.

Extensively classroom-tested in undergraduate and graduate courses, this self-contained book allows instructors to emphasize specific topics relevant to clinical cancer biology and treatment. It can be used in a variety of ways, including a single-semester undergraduate course, a more ambitious graduate course, or a full-year sequence on mathematical oncology.

More books from CRC Press

Cover of the book Data Acquisition and Process Control Using Personal Computers by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Autonomic Networking-on-Chip by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Beyond First Order Model Theory, Volume I by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book An Introduction to Comparative Legal Models of Criminal Justice by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book A Primer for the Monte Carlo Method by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Cassava in Food, Feed and Industry by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Population Dynamics of Commercial Fish in Inland Reservoirs by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book High-Speed Precision Motion Control by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Bacterial Interference by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Organizational Accidents Revisited by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Nanomaterials and Nanocomposites by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Software Solutions for Engineers and Scientists by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Carbon Nanomaterials for Electrochemical Energy Technologies by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book The Presentation and Settlement of Contractors' Claims - E2 by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
Cover of the book Ethical Hacking and Penetration Testing Guide by Yang Kuang, John D. Nagy, Steffen E. Eikenberry
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy