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The cell as a machine / Michael Sheetz, Columbia University, New York, Hanry Yu, National University of Singapore.

By: Contributor(s): Material type: TextTextSeries: Cambridge texts in biomedical engineeringPublication details: Cambridge, United Kingdom ; New York, NY : Cambridge University Press, 2018.Description: 424 pages : illustrations ; 26 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781107052734 (hardback)
Subject(s): LOC classification:
  • QH 645.5 .Sh37 2018
Summary: "This unique introductory text explains cell functions using the engineering principles of robust devices. Adopting a process-based approach to understanding cell and tissue biology, it describes the molecular and mechanical features that enable the cell to be robust in operating its various components, and explores the ways in which molecular modules respond to environmental signals to execute complex functions. The design and operation of a variety of complex functions are covered, including engineering lipid bilayers to provide fluid boundaries and mechanical controls, adjusting cell shape and forces with dynamic filament networks, and DNA packaging for information retrieval and propagation. Numerous problems, case studies and application examples help readers connect theory with practice, and solutions for instructors and videos of lectures accompany the book online. Assuming only basic mathematical knowledge, this is an invaluable resource for graduate and senior undergraduate students taking single-semester courses in cell mechanics, biophysics and cell biology"-- Provided by publisher.
List(s) this item appears in: Science - December 2018
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Circulation Circulation DLSU-D HS Learning Resource Center Circulation Circulation QH 645.5 .Sh37 2018 (Browse shelf(Opens below)) Available 3HSL2014006043

Includes bibliographical references and index.

"This unique introductory text explains cell functions using the engineering principles of robust devices. Adopting a process-based approach to understanding cell and tissue biology, it describes the molecular and mechanical features that enable the cell to be robust in operating its various components, and explores the ways in which molecular modules respond to environmental signals to execute complex functions. The design and operation of a variety of complex functions are covered, including engineering lipid bilayers to provide fluid boundaries and mechanical controls, adjusting cell shape and forces with dynamic filament networks, and DNA packaging for information retrieval and propagation. Numerous problems, case studies and application examples help readers connect theory with practice, and solutions for instructors and videos of lectures accompany the book online. Assuming only basic mathematical knowledge, this is an invaluable resource for graduate and senior undergraduate students taking single-semester courses in cell mechanics, biophysics and cell biology"-- Provided by publisher.

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