| 000 | 01547camuu2200373 a 4500 | |
| 001 | 000045620107 | |
| 005 | 20101202114212 | |
| 008 | 101201s2010 flua b 001 0 eng d | |
| 010 | ▼a 2009042414 | |
| 020 | ▼a 9781420094541 (hardcover : alk. paper) | |
| 020 | ▼a 1420094548 (hardcover : alk. paper) | |
| 035 | ▼a (OCoLC)ocn460710711 | |
| 040 | ▼a DLC ▼c DLC ▼d YDX ▼d YDXCP ▼d BWX ▼d CDX ▼d NLM ▼d DLC ▼d 211009 | |
| 050 | 0 0 | ▼a QH645.5 ▼b .C455 2010 |
| 082 | 0 0 | ▼a 571.6 ▼2 22 |
| 084 | ▼a 571.6 ▼2 DDCK | |
| 090 | ▼a 571.6 ▼b C39392 | |
| 245 | 0 0 | ▼a Cell mechanics : ▼b from single scale-based models to multiscale modeling / ▼c edited by Arnaud Chauviere, Luigi Preziosi, and Claude Verdier. |
| 260 | ▼a Boca Raton, FL : ▼b Chapman & Hall/CRC, ▼c c2010. | |
| 300 | ▼a xviii, 456 p. : ▼b ill. (some col.) ; ▼c 25 cm. | |
| 490 | 1 | ▼a Chapman & Hall/CRC mathematical and computational biology series |
| 504 | ▼a Includes bibliographical references and index. | |
| 650 | 0 | ▼a Cells ▼x Mechanical properties ▼x Mathematical models. |
| 650 | 0 | ▼a Cells ▼x Mechanical properties ▼x Computer simulation. |
| 650 | 0 | ▼a Tumors ▼x Growth ▼x Mathematical models. |
| 650 | 0 | ▼a Tumors ▼x Growth ▼x Computer simulation. |
| 650 | 1 2 | ▼a Cell Physiological Processes. |
| 650 | 2 2 | ▼a Models, Theoretical. |
| 700 | 1 | ▼a Chauviere, Arnaud. |
| 700 | 1 | ▼a Preziosi, Luigi. |
| 700 | 1 | ▼a Verdier, Claude, ▼d 1962-. |
| 830 | 0 | ▼a Chapman and Hall/CRC mathematical & computational biology series. |
| 945 | ▼a KLPA |
소장정보
| No. | 소장처 | 청구기호 | 등록번호 | 도서상태 | 반납예정일 | 예약 | 서비스 |
|---|---|---|---|---|---|---|---|
| No. 1 | 소장처 과학도서관/Sci-Info(2층서고)/ | 청구기호 571.6 C39392 | 등록번호 121200186 (4회 대출) | 도서상태 대출가능 | 반납예정일 | 예약 | 서비스 |
| No. 2 | 소장처 의학도서관/자료실(3층)/ | 청구기호 571.6 C39392 | 등록번호 131039618 (1회 대출) | 도서상태 대출가능 | 반납예정일 | 예약 | 서비스 |
| No. | 소장처 | 청구기호 | 등록번호 | 도서상태 | 반납예정일 | 예약 | 서비스 |
|---|---|---|---|---|---|---|---|
| No. 1 | 소장처 과학도서관/Sci-Info(2층서고)/ | 청구기호 571.6 C39392 | 등록번호 121200186 (4회 대출) | 도서상태 대출가능 | 반납예정일 | 예약 | 서비스 |
| No. | 소장처 | 청구기호 | 등록번호 | 도서상태 | 반납예정일 | 예약 | 서비스 |
|---|---|---|---|---|---|---|---|
| No. 1 | 소장처 의학도서관/자료실(3층)/ | 청구기호 571.6 C39392 | 등록번호 131039618 (1회 대출) | 도서상태 대출가능 | 반납예정일 | 예약 | 서비스 |
컨텐츠정보
책소개
Ubiquitous and fundamental in cell mechanics, multiscale problems can arise in the growth of tumors, embryogenesis, tissue engineering, and more. Cell Mechanics: From Single Scale-Based Models to Multiscale Modeling brings together new insight and research on mechanical, mathematical, physical, and biological approaches for simulating the behavior of cells, specifically tumor cells.
In the first part of the text, the book discusses the powerful tool of microrheology for investigating cell mechanical properties, multiphysics and multiscale approaches for studying intracellular mechanisms in cell motility, and the role of subcellular effects involving certain genes for inducing cell motility in cancer. Focusing on models based on physical, mathematical, and computational approaches, the second section develops tools for describing the complex interplay of cell adhesion molecules and the dynamic evolution of the cell cytoskeleton. The third part explores cell interactions with the environment, particularly the role of external mechanical forces and their effects on cell behavior. The final part presents innovative models of multicellular systems for developmental biology, cancer, and embryogenesis.
This book collects novel methods to apply to cells and tissues through a multiscale approach. It presents numerous existing tools while stimulating the discovery of new approaches that can lead to more effective and accurate predictions of pathologies.
This book brings together new insight and research on mechanical, mathematical, physical, and biological approaches for simulating the behavior of cells, specifically tumor cells. It illustrates how phenomena occurring at various scales can be modeled and coupled to account for multiscale aspects. The text links subcellular effects to cellular properties, covers the modeling of cell migration and multicellular systems, and examines cell interactions with the environment, such as the rolling motion of leukocytes on a vessel wall and the forces exerted by cells on a rigid substrate.
정보제공 :
목차
From Subcellular to Cellular Properties
Microrheology of Living Cells at Different Time and Length Scales, Atef Asnacios, Sylvie Henon, Julien Browaeys, and Francois GalletActin-Based Propulsion: Intriguing Interplay between Material Properties and Growth Processes, Karin John, Denis Caillerie, Philippe Peyla, Mourad Ismail, Annie Raoult, Jacques Prost, and Chaouqi Misbah
Cancer: Cell Motility and Tumor Suppressor Genes, Remy Pedeux, Damien Ythier, and Alain Duperray
Single Cell Migration Modeling
Coupling of Cytoplasm and Adhesion Dynamics Determines Cell Polarization and Locomotion, Wolfgang Alt, Martin Bock, and Christoph MohlHow Do Cells Move? Mathematical Modeling of Cytoskeleton Dynamics and Cell Migration, Dietmar Olz and Christian Schmeiser
Computational Framework Integrating Cytoskeletal and Adhesion Dynamics for Modeling Cell Motility, Angelique Stephanou
Mechanical Effects of Environment on Cell Behavior
History Dependence of Microbead Adhesion under Varying Shear Rate, Sylvain Reboux, Giles Richardson, and Oliver E. JensenUnderstanding Adhesion Sites as Mechanosensitive Cellular Elements, Sophie Fereol, Redouane Fodil, Gabriel Pelle, Bruno Louis, Valerie M. Laurent, Emmanuelle Planus, and Daniel Isabey
Cancer Cell Migration on 2-D Deformable Substrates, Valentina Peschetola, Claude Verdier, Alain Duperray, and Davide Ambrosi
Single Cell Imaging of Calcium Dynamics in Response to Mechanical Stimulation, Tae-Jin Kim and Yingxiao Wang
From Cellular to Multicellular Models
Mathematical Framework to Model Migration of Cell Population in Extracellular Matrix, Arnaud Chauviere and Luigi PreziosiMathematical Modeling of Cell Adhesion and Its Applications to Developmental Biology and Cancer Invasion, Alf Gerisch and Kevin J. Painter
Bridging Cell and Tissue Behavior in Embryo Development, Alexandre J. Kabla, Guy B. Blanchard, Richard J. Adams, and L. Mahadevan
Modeling Steps from Benign Tumor to Invasive Cancer: Examples of Intrinsically Multiscale Problems, Dirk Drasdo, Nick Jagiella, Ignacio Ramis-Conde, Irene E. Vignon-Clementel, and William Weens
Delaunay Object Dynamics for Tissues Involving Highly Motile Cells, Tilo Beyer and Michael Meyer-Hermann
Index
정보제공 :
