Recent years have witnessed an increasing number of theoretical and experimental contributions to cancer research from different fields of physics, from biomechanics and soft-condensed matter physics to the statistical mechanics of complex systems. Reviewing these contributions and providing a sophisticated overview of the topic, this is the first book devoted to the emerging interdisciplinary field of cancer physics. Systematically integrating approaches from physics and biology, it includes topics such as cancer initiation and progression, metastasis, angiogenesis, cancer stem cells, tumor immunology, cancer cell mechanics and migration. Biological hallmarks of cancer are presented in an intuitive yet comprehensive way, providing graduate-level students and researchers in physics with a thorough introduction to this important subject. The impact of the physical mechanisms of cancer are explained through analytical and computational models, making this an essential reference for cancer biologists interested in cutting-edge quantitative tools and approaches coming from physics. Provides a useful introduction to cancer for any student of biological physics Reviews the contributions of physics to cancer research Includes mathematical and physical models for cancer research.
CITATION STYLE
La Porta, C. A. M., & Zapperi, S. (2017). The physics of cancer. The Physics of Cancer (pp. 1–172). Cambridge University Press. https://doi.org/10.1017/9781316271759
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