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Nanomagnetic Actuation In Biomedicine Basic Principles And Applications First Edition Dobson

  • SKU: BELL-6992556
Nanomagnetic Actuation In Biomedicine Basic Principles And Applications First Edition Dobson
$ 31.00 $ 45.00 (-31%)

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Nanomagnetic Actuation In Biomedicine Basic Principles And Applications First Edition Dobson instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 10.91 MB
Author: Dobson, Jon; Rinaldi, Carlos
ISBN: 9781315374086, 9781466591219, 9781466591226, 1315374080, 1466591218, 1466591226
Language: English
Year: 2017
Edition: First edition

Product desciption

Nanomagnetic Actuation In Biomedicine Basic Principles And Applications First Edition Dobson by Dobson, Jon; Rinaldi, Carlos 9781315374086, 9781466591219, 9781466591226, 1315374080, 1466591218, 1466591226 instant download after payment.

"The manipulation and control of cells and sub-cellular structures through magnetic nanoparticle-based actuation is a relatively new technique that has led to novel and exciting biomedical applications. Nanomagnetic actuation is being used in laboratory studies of stem cells to determine how these mechanical cues can be used to control stem cell differentiation for regenerative medicine applications. This book explores this rapidly expanding field. It will interest industry bioscientists and biomedical engineers as well as academics in cellular biomechanics, cell and tissue engineering, and regenerative medicine."--Provided by publisher.
Abstract: "The manipulation and control of cells and sub-cellular structures through magnetic nanoparticle-based actuation is a relatively new technique that has led to novel and exciting biomedical applications. Nanomagnetic actuation is being used in laboratory studies of stem cells to determine how these mechanical cues can be used to control stem cell differentiation for regenerative medicine applications. This book explores this rapidly expanding field. It will interest industry bioscientists and biomedical engineers as well as academics in cellular biomechanics, cell and tissue engineering, and regenerative medicine."--Provided by publisher

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