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- W4386183752 abstract "The use of Additive ManufacturingAdditive manufacturing (AM), also called 3D printing3D printing, has increased in recent years. These processes are applied in many different fields such as aerospace, motor vehicles, electronics, and medical fields among others. In particular, additive manufacturing has been used for the fabrication of biomaterialsBiomaterials to create products for biomedical applications such as prototypes, implants, scaffoldsScaffold for tissue engineeringTissue engineering, models, or drug-delivery systems. Its versatility allows the personalization of the object to the specific needs of each patient based on anatomical data. Furthermore, AMAdditive manufacturing enables the production of highly complex objects that can not be realized with traditional techniques such as subtractive manufacturing. Additive manufacturingAdditive manufacturing is gaining in popularity thanks to its adaptability in terms of fabrication materials, such as polymers, metals or ceramics, depending on the needs of the application, as well as the fast transition from a numerical model to the final object. In the present review, we summarize additive manufacturing techniques used to create biomaterials focusing on their advantages and drawbacks and the reasons why they can be preferred to traditional ones. Some biomedical applications are presented for each technique." @default.
- W4386183752 created "2023-08-26" @default.
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- W4386183752 date "2023-01-01" @default.
- W4386183752 modified "2023-09-25" @default.
- W4386183752 title "Additive Manufacturing of Biomaterials" @default.
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- W4386183752 doi "https://doi.org/10.1007/978-3-031-35832-6_12" @default.
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