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Titlebook: 3D Printing and Biofabrication; Aleksandr Ovsianikov,James Yoo,Vladimir Mironov Reference work 2018 Springer International Publishing AG,

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期刊全称3D Printing and Biofabrication
影响因子2023Aleksandr Ovsianikov,James Yoo,Vladimir Mironov
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发行地址In-depth introduction to 3D printing and biofabrication.Covers inkjet, extrusion and laser-based processing of cell-containing materials.With mathematical models used in tissue engineering.Includes su
学科分类Reference Series in Biomedical Engineering
图书封面Titlebook: 3D Printing and Biofabrication;  Aleksandr Ovsianikov,James Yoo,Vladimir Mironov Reference work 2018 Springer International Publishing AG,
影响因子.This volume provides an in-depth introduction to 3D printing and biofabrication and covers the recent advances in additive manufacturing for tissue engineering. The book is divided into two parts, the first part on 3D printing discusses conventional approaches in additive manufacturing aimed at fabrication of structures, which are seeded with cells in a subsequent step. The second part on biofabrication presents processes which integrate living cells into the fabrication process..
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https://doi.org/10.1007/978-3-319-45444-3Fabrication of scaffolds; Multi-Material Hydrogels; Cell encapsulation; Scaffold-free biofabrication; Ph
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https://doi.org/10.1007/978-3-030-51038-1 requirements that must be fulfilled. The traditional approach is based on a trial-and-error strategy, which may result in a lengthy and inefficient process. Aiming at improvement of this unsatisfactory situation, computer simulations, based on sound mathematical modeling of the involved processes,
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Vítor Quelhas,Jorge Brandão Pereiraelopment of synthetic bone grafts. Bioceramics are classified into families depending on their relative bioactivity: passive, bioactive, and bioresorbable. Passive bioceramics, such as alumina and zirconia, are mainly used for load-bearing implants. Bioactive ceramics, such as bioactive glass, are u
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