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Recent advances in 3D printing of biomaterials
by
Chia, Helena N
, Wu, Benjamin M
in
3D printing
/ Applied Microbiology
/ Biological products
/ Biological Techniques
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Emerging biomaterials for translational medicine
/ Engineering
/ Environmental Engineering/Biotechnology
/ Forecasts and trends
/ Methods
/ Muscles
/ Nucleic Acid Chemistry
/ Public concern
/ Review
/ Stem cells
/ Tissue engineering
2015
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Recent advances in 3D printing of biomaterials
by
Chia, Helena N
, Wu, Benjamin M
in
3D printing
/ Applied Microbiology
/ Biological products
/ Biological Techniques
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Emerging biomaterials for translational medicine
/ Engineering
/ Environmental Engineering/Biotechnology
/ Forecasts and trends
/ Methods
/ Muscles
/ Nucleic Acid Chemistry
/ Public concern
/ Review
/ Stem cells
/ Tissue engineering
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Recent advances in 3D printing of biomaterials
by
Chia, Helena N
, Wu, Benjamin M
in
3D printing
/ Applied Microbiology
/ Biological products
/ Biological Techniques
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Emerging biomaterials for translational medicine
/ Engineering
/ Environmental Engineering/Biotechnology
/ Forecasts and trends
/ Methods
/ Muscles
/ Nucleic Acid Chemistry
/ Public concern
/ Review
/ Stem cells
/ Tissue engineering
2015
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Journal Article
Recent advances in 3D printing of biomaterials
2015
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Overview
3D Printing promises to produce complex biomedical devices according to computer design using patient-specific anatomical data. Since its initial use as pre-surgical visualization models and tooling molds, 3D Printing has slowly evolved to create one-of-a-kind devices, implants, scaffolds for tissue engineering, diagnostic platforms, and drug delivery systems. Fueled by the recent explosion in public interest and access to affordable printers, there is renewed interest to combine stem cells with custom 3D scaffolds for personalized regenerative medicine. Before 3D Printing can be used routinely for the regeneration of complex tissues (e.g. bone, cartilage, muscles, vessels, nerves in the craniomaxillofacial complex), and complex organs with intricate 3D microarchitecture (e.g. liver, lymphoid organs), several technological limitations must be addressed. In this review, the major materials and technology advances within the last five years for each of the common 3D Printing technologies (Three Dimensional Printing, Fused Deposition Modeling, Selective Laser Sintering, Stereolithography, and 3D Plotting/Direct-Write/Bioprinting) are described. Examples are highlighted to illustrate progress of each technology in tissue engineering, and key limitations are identified to motivate future research and advance this fascinating field of advanced manufacturing.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V
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