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Handbook of Intelligent Scaffold for Tissue Engineering and Regenerative Medicine -

Handbook of Intelligent Scaffold for Tissue Engineering and Regenerative Medicine

Gilson Khang (Herausgeber)

Buch | Hardcover
974 Seiten
2012
Pan Stanford Publishing Pte Ltd (Verlag)
978-981-4267-85-4 (ISBN)
CHF 629,95 inkl. MwSt
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It has been recognized that tissue engineering and regenerative medicine offers an alternative technique to whole organ and tissue transplantation for diseased, failed or malfunctioned organs. This book focuses on the intelligent scaffolds, associated biomaterials and manufacturing in terms of tissue engineering and regenerative medicine.
Providing detailed knowledge about fullerene nanowhiskers and the related low-dimensional fullerene nanomaterials, this book introduces tubular nanofibers made of fullerenes, "fullerene nanotubes," as well as the single crystalline thin film made of C60, called "fullerene nanosheet." It is the first publication featuring the fullerene nanowhiskers made of C60, C70, and C60 derivatives and so forth. It demonstrates the synthetic method (liquid–liquid interfacial precipitation method) and the physical and chemical properties such as electrical, mechanical, optical, magnetic, thermodynamic, and surface properties for the fullerene nanowhiskers, including their electronic device application.

Gilson Khang is Professor and Director of the Biomaterials and Tissue Engineering Lab at Chonbuk National University, South Korea. He is also the Editor-in-Chief of the Tissue Engineering and Regenerative Medicine journal. He has published over 400 papers and chapters, and has given close to 1,000 presentations at various events and conferences. He also has 55 patents under his name.

Observing the Nanoscale Organization of Model Biological Membranes by Atomic Force Microscopy
Pierre-Emmanuel Milhiet and Christian Le Grimellec
High-Resolution Atomic Force Microscopy of Native Membranes
Nikohy Buzhynskyy, Lu-Ning Liu, Ignacio Casuso and Simon Scheuring
Microbial Cell Imaging Using Atomic Force Microscopy
Mitchel J. Doktycz, Claretta J. Sullivan, Ninell Pollas Mortensen and David P. Allison
Resolving the High-Resolution Architecture, Assembly and Functional Repertoire of Bacterial Systems by in vitro Atomic Force Microscopy
Alexander J. Malkin
Understanding Cell Secretion and Membrane Fusion Processes on the Nanoscale Using the Atomic Force Microscope
Bhanu P. Jena
Nanophysiology of Cells, Channels and Nuclear Pores
Hermann Schillers, Hans Oberleithner and Victor Shahin
Topography and Recognition Imaging of Cells
Lilia Chtcheglova, Linda Wildling and Peter Hinterdorfer
High-Speed Atomic Force Microscopy for Dynamic Biological Imaging
Takayuki Uchihashi and Toshio Ando
Near-Field Scanning Optical Microscopy of Biological Membranes
Thomas S. van Zanten and Maria F. Garcia-Parajo
Quantifying Cell Adhesion Using Single-Cell Force Spectroscopy
Anna Taubenberger, Jens Friedrichs and Daniel J. Mutter
Probing Cellular Adhesion at the Single-Molecule Level
Félix Rico, Xiaohui Zhang and Vincent T. Moy
Mapping Membrane Proteins on Living Cells Using the Atomic Force Microscope
Atsushi Ikai and Rehana Afrin
Probing Bacterial Adhesion Using Force Spectroscopy
Terri A. Camesano
Force Spectroscopy of Mineral-Microbe Bonds
Brian H. Lower and Steven K. Lower
Single-Molecule Force Spectroscopy of Microbial Cell Envelope Proteins
Claire Verbelen, Vincent Dupres, David Alsteens, Guillaume Andre and Yves F. Dufrêne
Probing the Nanomechanical Properties of Viruses, Cells and Cellular Structures
Sandor Kasas and Giovanni Dietler
Label-Free Monitoring of Cell Signalling Processes Through AFM-Based Force Measurements
Charles M. Cuerrier, Elie Simard, Charles-Antoine Lamontagne, Julie Boucher, Yannick Miron and Michel Grandbois
Investigating Mammalian Cell Nanomechanics with Simultaneous Optical and Atomic Force Microscopy
Yaron R. Silberberg, Louise Guolla and Andrew E. Felling
The Role of Atomic Force Microscopy in Advancing Diatom Research into the Nanotechnology Era
Michael]. Higgins and Richard Wetherbee
Atomic Force Microscopy for Medicine
Shivani Sharma and James K. Gimzewski

Zusatzinfo 32 page color insert to go at end of book; 160 Illustrations, color; 198 Illustrations, black and white
Verlagsort Singapore
Sprache englisch
Maße 152 x 229 mm
Gewicht 1497 g
Themenwelt Medizin / Pharmazie Physiotherapie / Ergotherapie Orthopädie
Technik Medizintechnik
ISBN-10 981-4267-85-6 / 9814267856
ISBN-13 978-981-4267-85-4 / 9789814267854
Zustand Neuware
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