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Titlebook: Biodegradable Metals; From Concept to Appl Hendra Hermawan Book 2012 The Editor(s) (if applicable) and The Author(s), under exclusive licen

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Metallic Biodegradable Coronary Stent: Degradation Study,alcium/phosphorus-containing layers were identified as degradation products. A low inhibition to fibroblast cells metabolic activities was noticed. The results demonstrated the potential of iron-manganese alloys to be developed as degradable metallic biomaterials.
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Bau der Kreiselpumpen und ihrer Einzelteile,rocess for fabricating and testing 316L stainless steel stents. It was found that some steps like laser cutting can be directly applied; but changes on the parameters are needed for annealing and alternatives are needed to replace electropolishing.
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Introduction to Metallic Biomaterials,d amorphization. Other development raised the concept of biodegradable rather than inert metals where temporary medical implants, that function only during specific period and then degrade, are targeted.
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,Allgemeines über Kreiselpumpen,alcium/phosphorus-containing layers were identified as degradation products. A low inhibition to fibroblast cells metabolic activities was noticed. The results demonstrated the potential of iron-manganese alloys to be developed as degradable metallic biomaterials.
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2192-1091 rication. The forth chapter reveals new alloys development devoted for metallic biodegradable stent based on required criteria derrived from cl978-3-642-31169-7978-3-642-31170-3Series ISSN 2192-1091 Series E-ISSN 2192-1105
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