Iron Based Degradable Foam Structures for Potential Orthopedic Applications
Author:
Publisher
Elsevier BV
Subject
Electrochemistry
Reference50 articles.
1. Biodegradable CaMgZn bulk metallic glass for potential skeletal application
2. Microstructure, cytotoxicity and corrosion of powder-metallurgical iron alloys for biodegradable bone replacement materials
3. Metals for Biomedical Applications, Biomedical Engineering - From Theory to Applications;Hermawan,2011
4. Assessing the biocompatibility of degradable metallic materials: State-of-the-art and focus on the potential of genetic regulation☆
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