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Biomechanics in Oncology

By: Contributor(s): Material type: TextTextLanguage: English Series: https://doi.org/10.1007/978-3-319-95294-9Publication details: Park, PA, USA : Springer Nature Switzerland AG : 2018 :Description: 378 Pages Includes References and IndexISBN:
  • 978-3-319-95293-2
  • 978-3-319-95294-9
ISSN:
  • 0065-2598
  • 2214-8019
Subject(s): Online resources: Summary: 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
Item type: E-BOOKS
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Item type Current library Status Barcode
E-BOOKS MWALIMU NYERERE LEARNING RESOURCES CENTRE-CUHAS BUGANDO Not for loan 20240815162237.0
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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

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