Advances in New Alloys, Polymers and Composites for Biomedical Applications.
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| Title: | Advances in New Alloys, Polymers and Composites for Biomedical Applications. |
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| Authors: | Gil, Javier1 (AUTHOR) javier.gil.mur@upc.edu, Velasco-Ortega, Eugenio2 (AUTHOR), Rondón-Romero, José Luis2,3 (AUTHOR), Moreno-Muñoz, Jesus2,4 (AUTHOR), Nuñez-Marquez, Enrique2,5 (AUTHOR), Puigdollers, Andreu3 (AUTHOR), Pegueroles, Marta4,5 (AUTHOR) |
| Source: | Materials (1996-1944). Jan2026, Vol. 19 Issue 2, p304. 5p. |
| Subjects: | Biomedical materials, Alloys, Biocompatibility, High technology industries, Composite materials, Medical equipment, Polymers, Tissue engineering |
| Abstract: | The article focuses on the advancements in biomedical materials, particularly alloys, polymers, and composites, and their impact on medical device development. It highlights the evolution from traditional metallic implants to innovative bioactive and biodegradable materials that meet complex mechanical and biological requirements. Key developments include the use of titanium alloys with improved biocompatibility, the emergence of shape memory alloys for minimally invasive procedures, and the design of biodegradable polymers and composites for tissue engineering. The article emphasizes the importance of interdisciplinary collaboration and the integration of advanced manufacturing techniques to address ongoing challenges and enhance the functionality of biomedical materials for improved patient outcomes. [Extracted from the article] |
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| Database: | Engineering Source |
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| Abstract: | The article focuses on the advancements in biomedical materials, particularly alloys, polymers, and composites, and their impact on medical device development. It highlights the evolution from traditional metallic implants to innovative bioactive and biodegradable materials that meet complex mechanical and biological requirements. Key developments include the use of titanium alloys with improved biocompatibility, the emergence of shape memory alloys for minimally invasive procedures, and the design of biodegradable polymers and composites for tissue engineering. The article emphasizes the importance of interdisciplinary collaboration and the integration of advanced manufacturing techniques to address ongoing challenges and enhance the functionality of biomedical materials for improved patient outcomes. [Extracted from the article] |
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| ISSN: | 19961944 |
| DOI: | 10.3390/ma19020304 |