9783319314310-3319314319-Neural Engineering: From Advanced Biomaterials to 3D Fabrication Techniques

Neural Engineering: From Advanced Biomaterials to 3D Fabrication Techniques

ISBN-13: 9783319314310
ISBN-10: 3319314319
Edition: 1st ed. 2016
Author: Lijie Grace Zhang, David L. Kaplan
Publication date: 2016
Publisher: Springer
Format: Hardcover 314 pages
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Book details

ISBN-13: 9783319314310
ISBN-10: 3319314319
Edition: 1st ed. 2016
Author: Lijie Grace Zhang, David L. Kaplan
Publication date: 2016
Publisher: Springer
Format: Hardcover 314 pages

Summary

Neural Engineering: From Advanced Biomaterials to 3D Fabrication Techniques (ISBN-13: 9783319314310 and ISBN-10: 3319314319), written by authors Lijie Grace Zhang, David L. Kaplan, was published by Springer in 2016. With an overall rating of 3.9 stars, it's a notable title among other Bioengineering (Engineering) books. You can easily purchase or rent Neural Engineering: From Advanced Biomaterials to 3D Fabrication Techniques (Hardcover) from BooksRun, along with many other new and used Bioengineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

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.

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