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Titlebook: Hyper Bio Assembler for 3D Cellular Systems; Tatsuo Arai,Fumihito Arai,Masayuki Yamato Book 2015 Springer Japan 2015 3D Cellular Systems.B

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发表于 2025-3-21 19:07:44 | 显示全部楼层 |阅读模式
书目名称Hyper Bio Assembler for 3D Cellular Systems
编辑Tatsuo Arai,Fumihito Arai,Masayuki Yamato
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概述The first book to focus on Hyper Bio Assembler for 3D Cellular Systems, a new methodology for measuring and separating target cells at high speed and constructing 3D cellular systems in vitro.Contribu
图书封面Titlebook: Hyper Bio Assembler for 3D Cellular Systems;  Tatsuo Arai,Fumihito Arai,Masayuki Yamato Book 2015 Springer Japan 2015 3D Cellular Systems.B
描述Hyper Bio Assembler for Cellular Systems is the first book to present a new methodology for measuring and separating target cells at high speed and constructing 3D cellular systems in vitro. This book represents a valuable resource for biologists, biophysicists and robotic engineers, as well as researchers interested in this new frontier area, offering a better understanding of the measurement, separation, assembly, analysis and synthesis of complex biological tissue, and of the medical applications of these technologies..This book is the outcome of the new academic fields of the Ministry of Education, Culture, Sports, Science and Technology’s Grant-in-Aid for Scientific Research in Japan.
出版日期Book 2015
关键词3D Cellular Systems; Bio Assembler; Measurement and Separation of Cell; Micro-Nano Robotics; Tissue Engi
版次1
doihttps://doi.org/10.1007/978-4-431-55297-0
isbn_softcover978-4-431-56244-3
isbn_ebook978-4-431-55297-0
copyrightSpringer Japan 2015
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Photofablication Techniques for 3D Tissue Constructel by two component mixing reaction. The hydrogels were degraded by micropatterned light irradiation, local light irradiation, and two-photon excitation. This simple and convenient approach to prepare and fabricate photodegradable hydrogels is creating new opportunity for novel cell manipulation and
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Cell Detachment for Engineering Three-Dimensional Tissuesineering applications. A major focus of this chapter is on the application of electrochemistry to cell detachment and to engineering vascular structures. Current challenges and future prospects of these systems have been discussed.
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Cell Scooper: A Device for the Rapid Transfer of Living Cell Sheetition, the device allowed us to transfer C2C12 cell sheets onto soft, rugged and curved surfaces such as human hands. Furthermore, cardiac cell sheets adhered rapidly and tightly onto the dorsal subcutaneous tissues of rats. This transfer/transplantation device may be a powerful tool in cell sheet-b
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Hydrogel-Based Microenvironment for Modulating Gland Tissue Morphogenesisnts on tissue generation and growth, the organotypic culture of mouse salivary gland tissue was studied using the environments. The potential use of the biomimetic environments synthesized by biocompatible hydrogel material for modulating tissue growth is discussed in this chapter.
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eloping countries. Hence, Zinc (Zn), a redox-inactive essential metal, can be suitable for this purpose. Zinc helps to maintain cellular functions because of its prominent role in antioxidant network through multiple mechanisms. For that reason, the role of dietary zinc in combating the arsenic toxi
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