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Systems biology of tumor microenviro...
~
Rejniak, Katarzyna A.
Systems biology of tumor microenvironment[electronic resource] :quantitative modeling and simulations /
紀錄類型:
書目-電子資源 : Monograph/item
杜威分類號:
616.9940421
書名/作者:
Systems biology of tumor microenvironment : quantitative modeling and simulations // edited by Katarzyna A. Rejniak.
其他作者:
Rejniak, Katarzyna A.
出版者:
Cham : : Springer International Publishing :, 2016.
面頁冊數:
xvii, 249 p. : : ill., digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Tumors - Laboratory manuals. - Microbiology
標題:
Systems biology
標題:
Biomedicine.
標題:
Cancer Research.
標題:
Mathematical and Computational Biology.
標題:
Biological and Medical Physics, Biophysics.
ISBN:
9783319420233
ISBN:
9783319420219
內容註:
Foreword -- Preface -- List of Contributors -- Image Analysis of the Tumor Microenvironment -- Hypoxia in Gliomas: Opening Therapeutical Opportunities Using a Mathematical-Based Approach -- Computer Simulations of the Tumor Vasculature: Applications to Interstitial Fluid Flow, Drug Delivery, and Oxygen -- Cell-ECM Interactions in Tumor Invasion -- Circulating Tumor Cells: When Solid tumor Meets Fluid Microenvironment -- Modeling Proteolytically Driven Tumor Lymphangiogenesis -- Positive feedback loops between inflammatory, bone and cancer cells during metastatic niche construction -- Microenvironmental Niches and Sanctuaries: a Route to Acquired Resistance -- The Tumor Microenvironment as a Barrier to Cancer Nanotherapy -- Microenvironment-Mediated Modeling of Tumor Response to Vascular-Targeting Drugs -- Optimizing Chemotherapeutic Anti-Cancer Treatment and the Tumor Microenvironment: An Analysis of Mathematical Models -- Progress towards computational 3-D multicellular systems biology -- Index.
摘要、提要註:
This edited volume discusses the complexity of tumor microenvironments during cancer development, progression and treatment. Each chapter presents a different mathematical model designed to investigate the interactions between tumor cells and the surrounding stroma and stromal cells. The topics covered in this book include the quantitative image analysis of a tumor microenvironment, the microenvironmental barriers in oxygen and drug delivery to tumors, the development of tumor microenvironmental niches and sanctuaries, intravenous transport of the circulating tumor cells, the role of the tumor microenvironment in chemotherapeutic interventions, the interactions between tumor cells, the extracellular matrix, the interstitial fluid, and the immune and stromal cells. Mathematical models discussed here embrace both continuous and agent-based approaches, as well as mathematical frameworks of solid mechanics, fluid dynamics and optimal control theory. The topics in each chapter will be of interest to a biological community wishing to apply the mathematical methods to interpret their experimental data, and to a biomathematical audience interested in exploring how mathematical models can be used to address complex questions in cancer biology.
電子資源:
http://dx.doi.org/10.1007/978-3-319-42023-3
Systems biology of tumor microenvironment[electronic resource] :quantitative modeling and simulations /
Systems biology of tumor microenvironment
quantitative modeling and simulations /[electronic resource] :edited by Katarzyna A. Rejniak. - Cham :Springer International Publishing :2016. - xvii, 249 p. :ill., digital ;24 cm. - Advances in experimental medicine and biology,v.9360065-2598 ;. - Advances in experimental medicine and biology ;946..
Foreword -- Preface -- List of Contributors -- Image Analysis of the Tumor Microenvironment -- Hypoxia in Gliomas: Opening Therapeutical Opportunities Using a Mathematical-Based Approach -- Computer Simulations of the Tumor Vasculature: Applications to Interstitial Fluid Flow, Drug Delivery, and Oxygen -- Cell-ECM Interactions in Tumor Invasion -- Circulating Tumor Cells: When Solid tumor Meets Fluid Microenvironment -- Modeling Proteolytically Driven Tumor Lymphangiogenesis -- Positive feedback loops between inflammatory, bone and cancer cells during metastatic niche construction -- Microenvironmental Niches and Sanctuaries: a Route to Acquired Resistance -- The Tumor Microenvironment as a Barrier to Cancer Nanotherapy -- Microenvironment-Mediated Modeling of Tumor Response to Vascular-Targeting Drugs -- Optimizing Chemotherapeutic Anti-Cancer Treatment and the Tumor Microenvironment: An Analysis of Mathematical Models -- Progress towards computational 3-D multicellular systems biology -- Index.
This edited volume discusses the complexity of tumor microenvironments during cancer development, progression and treatment. Each chapter presents a different mathematical model designed to investigate the interactions between tumor cells and the surrounding stroma and stromal cells. The topics covered in this book include the quantitative image analysis of a tumor microenvironment, the microenvironmental barriers in oxygen and drug delivery to tumors, the development of tumor microenvironmental niches and sanctuaries, intravenous transport of the circulating tumor cells, the role of the tumor microenvironment in chemotherapeutic interventions, the interactions between tumor cells, the extracellular matrix, the interstitial fluid, and the immune and stromal cells. Mathematical models discussed here embrace both continuous and agent-based approaches, as well as mathematical frameworks of solid mechanics, fluid dynamics and optimal control theory. The topics in each chapter will be of interest to a biological community wishing to apply the mathematical methods to interpret their experimental data, and to a biomathematical audience interested in exploring how mathematical models can be used to address complex questions in cancer biology.
ISBN: 9783319420233
Standard No.: 10.1007/978-3-319-42023-3doiSubjects--Topical Terms:
672556
Tumors
--Microbiology--Laboratory manuals.
LC Class. No.: RC269.7
Dewey Class. No.: 616.9940421
Systems biology of tumor microenvironment[electronic resource] :quantitative modeling and simulations /
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Foreword -- Preface -- List of Contributors -- Image Analysis of the Tumor Microenvironment -- Hypoxia in Gliomas: Opening Therapeutical Opportunities Using a Mathematical-Based Approach -- Computer Simulations of the Tumor Vasculature: Applications to Interstitial Fluid Flow, Drug Delivery, and Oxygen -- Cell-ECM Interactions in Tumor Invasion -- Circulating Tumor Cells: When Solid tumor Meets Fluid Microenvironment -- Modeling Proteolytically Driven Tumor Lymphangiogenesis -- Positive feedback loops between inflammatory, bone and cancer cells during metastatic niche construction -- Microenvironmental Niches and Sanctuaries: a Route to Acquired Resistance -- The Tumor Microenvironment as a Barrier to Cancer Nanotherapy -- Microenvironment-Mediated Modeling of Tumor Response to Vascular-Targeting Drugs -- Optimizing Chemotherapeutic Anti-Cancer Treatment and the Tumor Microenvironment: An Analysis of Mathematical Models -- Progress towards computational 3-D multicellular systems biology -- Index.
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This edited volume discusses the complexity of tumor microenvironments during cancer development, progression and treatment. Each chapter presents a different mathematical model designed to investigate the interactions between tumor cells and the surrounding stroma and stromal cells. The topics covered in this book include the quantitative image analysis of a tumor microenvironment, the microenvironmental barriers in oxygen and drug delivery to tumors, the development of tumor microenvironmental niches and sanctuaries, intravenous transport of the circulating tumor cells, the role of the tumor microenvironment in chemotherapeutic interventions, the interactions between tumor cells, the extracellular matrix, the interstitial fluid, and the immune and stromal cells. Mathematical models discussed here embrace both continuous and agent-based approaches, as well as mathematical frameworks of solid mechanics, fluid dynamics and optimal control theory. The topics in each chapter will be of interest to a biological community wishing to apply the mathematical methods to interpret their experimental data, and to a biomathematical audience interested in exploring how mathematical models can be used to address complex questions in cancer biology.
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