Biomechanics in Oncology (eBook)

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2018 | 1st ed. 2018
XII, 376 Seiten
Springer International Publishing (Verlag)
978-3-319-95294-9 (ISBN)

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This book covers multi-scale biomechanics for oncology, ranging from cells and tissues to whole organ. Topics covered include, but not limited to, biomaterials in mechano-oncology, non-invasive imaging techniques, mechanical models of cell migration, cancer cell mechanics, and platelet-based drug delivery for cancer applications. This is an ideal book for graduate students, biomedical engineers, and researchers in the field of mechanobiology and oncology.

This book also:

Describes how mechanical properties of cancer cells, the extracellular matrix, tumor microenvironment and immuno-editing,  and fluid flow dynamics contribute to tumor progression and the metastatic process

Provides the latest research on non-invasive imaging, including traction force microscopy and brillouin confocal microscopy

Includes insight into NCIs' role in supporting biomechanics in oncology research

Details how biomaterials in mechano-oncology can be used as a means to tune materials to study cancer



Cheng Dong is Distinguished Professor and Department Head of the Department of Biomedical Engineering at Pennsylvania State University.

Kuhn, Nastaran is Associate Director of the Division of Cancer Biology and Program Director of the Physical Sciences-Oncology Initiative at the National Cancer Institute.

Konstantinos Konstantopoulos is Professor of the Department of Chemical & Biomolecular Engineering at Johns Hopkins University.


Cheng Dong is Distinguished Professor and Department Head of the Department of Biomedical Engineering at Pennsylvania State University. Nastaran Zahir is Associate Director of the Division of Cancer Biology and Program Director of the Physical Sciences-Oncology Initiative at the National Cancer Institute. Konstantinos Konstantopoulos is Professor of the Department of Chemical & Biomolecular Engineering at Johns Hopkins University.

Biomaterials in Mechano-oncology: Means to Tune Materials to Study Cancer.- Traction Force Microscopy for Non-Invasive Imaging of Cell Forces.- Non-Invasive Imaging: Brillouin Confocal Microscopy.- Exposing Cell-itary Confinement: Understanding The Mechanisms Of Confined Single Cell Migration.- Modeling Cell Migration Mechanics.- Engineered models of metastasis with application to study cancer biomechanics.- Microenvironment influences cancer cell mechanics from tumor growth to metastasis.- From Cancer Immunoediting to New Strategies in Cancer Immunotherapy: The Roles of Immune Cells and Mechanics in Oncology.- Biomechanics of the circulating tumor cell microenvironment.- Mechanics of the cell nucleus.- Mechanical Forces in Tumor Angiogenesis.- DNA Mechanics and Topology.- Design of Fiber Networks for Studying Metastatic Invasion.- Extracellular matrix stiffness exists in a feedback loop that drives tumor progression.- Platelet-Based Drug Delivery for Cancer Applications.- The National Cancer Institute Investment in Biomechanics in Oncology Research.

Erscheint lt. Verlag 27.10.2018
Reihe/Serie Advances in Experimental Medicine and Biology
Advances in Experimental Medicine and Biology
Zusatzinfo XII, 376 p. 111 illus., 94 illus. in color.
Verlagsort Cham
Sprache englisch
Themenwelt Medizin / Pharmazie Allgemeines / Lexika
Medizin / Pharmazie Medizinische Fachgebiete Onkologie
Naturwissenschaften Biologie Genetik / Molekularbiologie
Technik Bauwesen
Schlagworte Biomaterials in Mechano-oncology • Biomechanics of Cancer Cells • Brillouin Confocal Microscopy • Cancer Cell Mechanics • Cancer Cells fiber Probes • Cancer Fiber Force Probes • Cellular Tissue Scales Computational • Computational Models Cell Mechanics • Extracellular Matrix Stiffness tumor • Fluid Shear Stress Tumor • Mechanical Models Cell Migration • Mechanics Cancer Metabolism • Mechanics Cell Nucleus • Models Studying Mechanics Metastasis • NCIs Biomechanics Oncology Research • Non-Invasive Imaging • Platelet Drug Delivery Cancer • Shear Stress Tumor Circulation • Traction Force Microscopy • Vascular Immune Cell Interaction
ISBN-10 3-319-95294-3 / 3319952943
ISBN-13 978-3-319-95294-9 / 9783319952949
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