Mathematical models and methods for ...
Chaplain, Mark.

 

  • Mathematical models and methods for living systems[electronic resource] :Levico Terme, Italy 2014 /
  • 纪录类型: 书目-语言数据,印刷品 : Monograph/item
    [NT 15000414] null: 570.15118
    [NT 47271] Title/Author: Mathematical models and methods for living systems : Levico Terme, Italy 2014 // by Pasquale Ciarletta ... [et al.] ; edited by Luigi Preziosi, Mark Chaplain, Andrea Pugliese.
    [NT 51406] other author: Ciarletta, Pasquale.
    出版者: Cham : : Springer International Publishing :, 2016.
    面页册数: xi, 324 p. : : ill. (some col.), digital ;; 24 cm.
    Contained By: Springer eBooks
    标题: Biology - Mathematical models.
    标题: Biomathematics.
    标题: Mathematics.
    标题: Mathematical and Computational Biology.
    标题: Biomedicine general.
    标题: Applications of Mathematics.
    ISBN: 9783-319426792
    ISBN: 9783319426785
    [NT 15000228] null: Preface -- Cell-based, continuum and hybrid models of tissue dynamics -- The Diffusion Limit of Transport Equations in Biology -- Mathematical Models of the Interaction of Cells and Cell Aggregates with the Extracellular Matrix -- Mathematical modeling of morphogenesis in living materials -- Multiscale computational modelling and analysis of cancer invasion.
    [NT 15000229] null: The aim of these lecture notes is to give an introduction to several mathematical models and methods that can be used to describe the behaviour of living systems. This emerging field of application intrinsically requires the handling of phenomena occurring at different spatial scales and hence the use of multiscale methods. Modelling and simulating the mechanisms that cells use to move, self-organise and develop in tissues is not only fundamental to an understanding of embryonic development, but is also relevant in tissue engineering and in other environmental and industrial processes involving the growth and homeostasis of biological systems. Growth and organization processes are also important in many tissue degeneration and regeneration processes, such as tumour growth, tissue vascularization, heart and muscle functionality, and cardio-vascular diseases.
    电子资源: http://dx.doi.org/10.1007/978-3-319-42679-2
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