Hyper Bio Assembler for 3D Cellular Systems

Author:   Tatsuo Arai ,  Fumihito Arai ,  Masayuki Yamato
Publisher:   Springer Verlag, Japan
Edition:   1st ed. 2015
ISBN:  

9784431552963


Pages:   349
Publication Date:   23 July 2015
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Hyper Bio Assembler for 3D Cellular Systems


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Overview

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.

Full Product Details

Author:   Tatsuo Arai ,  Fumihito Arai ,  Masayuki Yamato
Publisher:   Springer Verlag, Japan
Imprint:   Springer Verlag, Japan
Edition:   1st ed. 2015
Dimensions:   Width: 15.50cm , Height: 2.10cm , Length: 23.50cm
Weight:   7.342kg
ISBN:  

9784431552963


ISBN 10:   4431552960
Pages:   349
Publication Date:   23 July 2015
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Cell Mechanical Characterization Based on On-chip Robotics.- Dimensionless Evaluation of Cell Deformability with High Resolution Positioning in a Microchannel.- Real-time Capillary-level Microchannel Flow Analysis Using a Full-pixel Frame-straddling Micro-PIV System.- High-throughput Measurements of Single Cell Rheology by Atomic Force Microscopy.- Discrimination of Cells with Specific Antigens Expressed on Membrane Based on the Dielectrophoresis.- Analysis of Physical Characteristic of Hematopoietic Cells.- Cell Manipulation and Cellular Parts Assembly for Constructing 3D Cellular Systems.- High-throughput Cell Assembly Featuring Heterogeneous Hydrogels Produced by Using Microfluidic Devices.- On-Chip Fabrication, Manipulation and Self-Assembly for Three-Dimensional Cell Structures.- Fabrication of 3D Cellular Tissue utilizing MEMS Technologies.- Photofabrication Techniques for 3D Tissue Construct.- Cell Detachment for Engineering Three-Dimensional Tissues.- Quantitative Evaluation ofCell-Hydrogel Adhesion by Advanced Optical Techniques.- Cell Scooper: A Device for the Rapid Transfer of Living Cell Sheet.- Hydrogel-based Microenvironment for Modulating Gland Tissue Morphogenesis.- Bone Related Cell-stimulating Scaffolds Materials and a 3D Cellular Construct for Hard Tissue Regeneration.- The Visualization of Human Organogenesis from Stem Cells by Recapitulating Multicellular Interactions.- Bionic Simulator Based on Organ-Explant-Chip.- Tempo-spatial Dynamics of Cellular Mechanics.- Four-dimensional Analysis for a Tumor Invasion.- Three-dimensional Mineralized Tissue Formation of Cultured Bone Marrow Stromal Cells.- Cell Sociology Illuminated by Reconstructing Functional Tissue with Cell Sheet Based Technology.

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