Multiscale Cancer Modeling (Chapman & Hall/crc Mathematical Biology Series)

個数:

Multiscale Cancer Modeling (Chapman & Hall/crc Mathematical Biology Series)

  • 在庫がございません。海外の書籍取次会社を通じて出版社等からお取り寄せいたします。
    通常6~9週間ほどで発送の見込みですが、商品によってはさらに時間がかかることもございます。
    重要ご説明事項
    1. 納期遅延や、ご入手不能となる場合がございます。
    2. 複数冊ご注文の場合は、ご注文数量が揃ってからまとめて発送いたします。
    3. 美品のご指定は承りかねます。

    ●3Dセキュア導入とクレジットカードによるお支払いについて
  • 【入荷遅延について】
    世界情勢の影響により、海外からお取り寄せとなる洋書・洋古書の入荷が、表示している標準的な納期よりも遅延する場合がございます。
    おそれいりますが、あらかじめご了承くださいますようお願い申し上げます。
  • ◆画像の表紙や帯等は実物とは異なる場合があります。
  • ◆ウェブストアでの洋書販売価格は、弊社店舗等での販売価格とは異なります。
    また、洋書販売価格は、ご注文確定時点での日本円価格となります。
    ご注文確定後に、同じ洋書の販売価格が変動しても、それは反映されません。
  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 500 p.
  • 言語 ENG
  • 商品コード 9781032919249
  • DDC分類 011

Full Description

Cancer is a complex disease process that spans multiple scales in space and time. Driven by cutting-edge mathematical and computational techniques, in silico biology provides powerful tools to investigate the mechanistic relationships of genes, cells, and tissues. It enables the creation of experimentally testable hypotheses, the integration of data across scales, and the prediction of tumor progression and treatment outcome (in silico oncology).

Drawing on an interdisciplinary group of distinguished international experts, Multiscale Cancer Modeling discusses the scientific and technical expertise necessary to conduct innovative cancer modeling research across scales. It presents contributions from some of the top in silico modeling groups in the United States and Europe.

The ultimate goal of multiscale modeling and simulation approaches is their use in clinical practice, such as supporting patient-specific treatment optimization. This volume covers state-of-the-art methods of multiscale cancer modeling and addresses the field's potential as well as future challenges. It encourages collaborations among researchers in various disciplines to achieve breakthroughs in cancer modeling.

Contents

Evolution, Regulation and Disruption of Homeostasis and Its Role in Carcinogenesis. Cancer Cell: Linking Oncogenic Signaling to Molecular Structure. Has Cancer Sculpted the Genome? Modeling Linkage and the Role of Tetraploidy in Neoplastic Progression. Catastrophes and Complex Networks in Genomically Unstable Tumorigenesis. A Stochastic Multiscale Model Framework for Intestinal Stem Cell Homeostasis. Multiscale Modeling of Colonic Crypts and Early Colorectal Cancer. The Physical Microenvironment in Somatic Evolution of Cancer. Multiscale Modeling of Cell Motion in Three-Dimensional Environments. Simulating Cancer Growth with Agent-Based Models. Diffusional Instability as a Mechanism of Tumor Invasion. Continuum Models of Mesenchymal Cell Migration and Sprouting Angiogenesis. Do Tumor Invasion Strategies Follow Basic Physical Laws?. Multiscale Mathematical Modeling of Vascular Tumor Growth: An Exercise in Transatlantic Cooperation. A Multiscale Simulation Framework for Modeling Solid Tumor Growth with an Explicit Vessel Network. Building Stochastic Models for Cancer Growth and Treatment. Bridging from Multiscale Modeling to Practical Clinical Applications in the Study of Human Gliomas. Personalization of Reaction-Diffusion Tumor Growth Models in MR Images: Application to Brain Gliomas Characterization and Radiotherapy Planning. In Silico Oncology Part I: Clinically Oriented Cancer Multilevel Modeling Based on Discrete Event Simulation. In Silico Oncology Part II: Clinical Requirements.