Microrheology of Living Cells at Different Time and Length Scales. and Sylvie Henon and Julien Browaeys and Francois Gallet, .A.A. In Cell Mechanics, of Chapman \& Hall/CRC Mathematical \& Computational Biology, pages 5--28. Chapman and Hall/CRC, January, 2010. 00000
Microrheology of Living Cells at Different Time and Length Scales [link]Paper  abstract   bibtex   
This book is the result of years of collaboration between different teams interacting in the framework of a European Research and Training Network on "Modeling, Mathematical Methods and Computer Simulation of Tumour Growth and Therapy" (2004-2008). Throughout this Network, the collaboration between groups has brought new insight and motivated research leading to mechanical, mathematical, physical and biological approaches all related to the simulation of the behavior of cells and, in particular, of tumor cells. It is divide into four parts: I. From subcellular to cellular properties (chapters 1-3) II. Single cell migration modeling (chapters 4-6) III. Mechanical effects of environment on cell behavior (chapters 7-10) IV. From cellular to multicellular models (chapters 11-15)
@incollection{ atef_asnacios_microrheology_2010,
  series = {Chapman \& Hall/{CRC} Mathematical \& Computational Biology},
  title = {Microrheology of Living Cells at Different Time and Length Scales},
  isbn = {978-1-4200-9454-1},
  url = {http://www.crcnetbase.com/doi/abs/10.1201/9781420094558-c1},
  abstract = {This book is the result of years of collaboration between different teams interacting in the framework of a European Research and Training Network on "Modeling, Mathematical Methods and Computer Simulation of Tumour Growth and Therapy" (2004-2008). Throughout this Network, the collaboration between groups has brought new insight and motivated research leading to mechanical, mathematical, physical and biological approaches all related to the simulation of the behavior of cells and, in particular, of tumor cells. It is divide into four parts: I. From subcellular to cellular properties (chapters 1-3) {II}. Single cell migration modeling (chapters 4-6) {III}. Mechanical effects of environment on cell behavior (chapters 7-10) {IV}. From cellular to multicellular models (chapters 11-15)},
  urldate = {2014-10-21TZ},
  booktitle = {Cell Mechanics},
  publisher = {Chapman and Hall/{CRC}},
  author = {{Atef Asnacios} and {Sylvie Henon} and {Julien Browaeys} and {Francois Gallet}},
  month = {January},
  year = {2010},
  note = {00000},
  pages = {5--28}
}

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