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Neural Engineering: From Advanced Biomaterials to 3D Fabrication Techniques 1st ed. 2016 [Hardback]

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  • Formāts: Hardback, 306 pages, height x width: 235x155 mm, weight: 5974 g, 41 Illustrations, color; 13 Illustrations, black and white; VIII, 306 p. 54 illus., 41 illus. in color., 1 Hardback
  • Izdošanas datums: 06-Jul-2016
  • Izdevniecība: Springer International Publishing AG
  • ISBN-10: 3319314319
  • ISBN-13: 9783319314310
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  • Formāts: Hardback, 306 pages, height x width: 235x155 mm, weight: 5974 g, 41 Illustrations, color; 13 Illustrations, black and white; VIII, 306 p. 54 illus., 41 illus. in color., 1 Hardback
  • Izdošanas datums: 06-Jul-2016
  • Izdevniecība: Springer International Publishing AG
  • ISBN-10: 3319314319
  • ISBN-13: 9783319314310
Citas grāmatas par šo tēmu:
This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials for neural engineering. Renowned contributors cover topics such as neural tissue regeneration, peripheral and central nervous system repair, brain-machine interfaces and in vitro nervous system modeling. Within these areas, focus remains on exciting and emerging technologies such as highly developed neuroprostheses and the communication channels between the brain and prostheses, enabling technologies that are beneficial for development of therapeutic interventions, advanced fabrication techniques such as 3D bioprinting, photolithography, microfluidics, and subtractive fabrication, and the engineering of implantable neural grafts.
There is a strong focus on stem cells and 3D bioprinting technologies throughout the book, including working with embryonic, fetal, neonatal, and adult stem cells and a variety of sophisticated 3D bioprinting methods for neural engineering applications. There is also a strong focus on biomaterials, including various conductive biomaterials and biomimetic nanomaterials such as carbon-based nanomaterials and engineered 3D nanofibrous scaffolds for neural tissue regeneration. Finally, two chapters on in vitro nervous system models are also included, which cover this topic in the context of studying physiology and pathology of the human nervous system, and for use in drug discovery research. This is an essential book for biomedical engineers, neuroscientists, neurophysiologists, and industry professionals.
1 Biomaterials and 3D Printing Techniques for Neural Tissue Regeneration
1(24)
Se-Jun Lee
Wei Zhu
Nathan Castro
Lijie Grace Zhang
2 Stem Cells, Bioengineering, and 3-D Scaffolds for Nervous System Repair and Regeneration
25(58)
Elizabeth J. Sandquist
Metin Uz
Anup D. Sharma
Bhavika B. Patel
Surya K. Mallapragada
Donald S. Sakaguchi
3 Engineering Neuronal Patterning and Defined Axonal Elongation In Vitro
83(40)
Devon A. Bowser
Michael J. Moore
4 Building Blocks for Bottom-Up Neural Tissue Engineering: Tools for In Vitro Assembly and Interrogation of Neural Circuits
123(22)
Stephanie Knowlton
Dan Li
Fulya Ersoy
Yong Ku Cho
Savas Tasoglu
5 Electrically Conductive Materials for Nerve Regeneration
145(36)
Elisabeth M. Steel
Harini G. Sundararaghavan
6 Bioactive Nanomaterials for Neural Engineering
181(26)
Melike Sever
Idil Uyan
Ayse B. Tekinay
Mustafa O. Guler
7 Cell Sources and Nanotechnology for Neural Tissue Engineering
207(20)
Wei Zhu
Nathan Castro
Brent Harris
Lijie Grace Zhang
8 Brain-Machine Interfaces: Restoring and Establishing Communication Channels
227(34)
Charlie Rodenkirch
Brian Schriver
Qi Wang
9 In Vitro Modeling of Nervous System: Engineering of the Reflex Arc
261(38)
Xiufang Guo
Frank Sommerhage
Christopher McAleer
Candace Martin
Christopher Long
Ying Wang
Navaneetha Santhanam
Alisha Colon
Carlota Oleaga Sancho
James Hickman
Index 299
Lijie Grace Zhang is Associate Professor in the School of Engineering and Applied Science at The George Washington University, and is Director of the Bioengineering Laboratory for Nanomedicine and Tissue Engineering. She is also Associate Editor-in-Chief of International Journal of Nanomedicine.  David Kaplan holds an Endowed Chair, the Stern Family Professor of Engineering, at Tufts University. He is Professor and Chair of the Department of Biomedical Engineering and also holds faculty appointments in the School of Medicine, the School of Dental Medicine, Department of Chemistry, and the Department of Chemical and Biological Engineering. He serves on the editorial boards of numerous journals and is Associate Editor for the ACS journal Biomacromolecules.