Morgan & Claypool Publishers, 01.10.2015 - 97 Seiten
This book introduces various 3D printing systems, biomaterials, and cells for organ printing. In view of the latest applications of several 3D printing systems, their advantages and disadvantages are also discussed. A basic understanding of the entire spectrum of organ printing provides pragmatic insight into the mechanisms, methods, and applications of this discipline. Organ printing is being applied in the tissue engineering field with the purpose of developing tissue/organ constructs for the regeneration of both hard (bone, cartilage, osteochondral) and soft tissues (heart). There are other potential application areas including tissue/organ models, disease/cancer models, and models for physiology and pathology, where in vitro 3D multicellular structures developed by organ printing are valuable.
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2D pattern 3D bioprinting 3D inkjet printing 3D printing 3D printing systems 3D printing technology 3D scaffolds 3D structure 3D tissue acid alginate biocompatibility biodegradable Biofabrication biological Biomaterials biopolymers bone regeneration bone substitute bone tissue engineering cartilage tissue engineering cell printing cellladen hydrogel cellular chitosan Cho D W chondrocytes collagen Concise Physics Organ crosslinking degradation developed dispensing droplet extracellular matrix Falguni Pati fibrin fused deposition modeling gelatin hyaluronic acid hydrogel inkjet printing IOP Concise Physics Jang and Jeong Jeong Hun Park Jin Woo Jung Jinah Jang JungSeob Lee Kang laser layer liquid photopolymer mechanical properties mesenchymal stem cells models multihead Organ Printing DongWoo osteochondral tissue Park Chapter Physics Organ Printing PLGA polycaprolactone pore architecture POSTECH Printing DongWoo Cho printing techniques regenerative medicine scaffolds Shim J H solid freeform fabrication solidified stereolithography synthetic polymer threedimensional tissue and organ Tissue Eng tissue engineering tissue regeneration tissue/organ valve vitro vivo