Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials)
Description:The development of biodegradable implants which can remain in the human body to fix a problem and subsequently dissolve, or be absorbed, consumed or excreted, without warranting a secondary surgery, is very appealing to scientists. Due to their excellent biocompatibility and biodegradability, magnesium implants provide a viable option many problems associated with permanent metallic implants such as, restenosis, thrombosis, permanent physical irritation, and inability to adapt to growth and changes in human body. Volume 2 of this important new book explores practical issues of magnesium and magnesium alloys, physical and mechanical modification and coatings to enhance this material for biomedical applications.
Includes expert analysis on chemical solution deposition of hydroxyapatite (HAp) and octacalcium (OCP) phosphate coatings for magnesium
Comprehensive coverage of biomimetic modifications, surface functionalization of biomolecules, natural, conducting and biodegradable polymeric coatings
Lucid dissection of chemical, physical, mechanical and electromechanical modifications of magnesium and its alloys for biomedical applicationsWe have made it easy for you to find a PDF Ebooks without any digging. And by having access to our ebooks online or by storing it on your computer, you have convenient answers with Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials). To get started finding Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials), you are right to find our website which has a comprehensive collection of manuals listed. Our library is the biggest of these that have literally hundreds of thousands of different products represented.
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1782420835
Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials)
Description: The development of biodegradable implants which can remain in the human body to fix a problem and subsequently dissolve, or be absorbed, consumed or excreted, without warranting a secondary surgery, is very appealing to scientists. Due to their excellent biocompatibility and biodegradability, magnesium implants provide a viable option many problems associated with permanent metallic implants such as, restenosis, thrombosis, permanent physical irritation, and inability to adapt to growth and changes in human body. Volume 2 of this important new book explores practical issues of magnesium and magnesium alloys, physical and mechanical modification and coatings to enhance this material for biomedical applications.
Includes expert analysis on chemical solution deposition of hydroxyapatite (HAp) and octacalcium (OCP) phosphate coatings for magnesium
Comprehensive coverage of biomimetic modifications, surface functionalization of biomolecules, natural, conducting and biodegradable polymeric coatings
Lucid dissection of chemical, physical, mechanical and electromechanical modifications of magnesium and its alloys for biomedical applicationsWe have made it easy for you to find a PDF Ebooks without any digging. And by having access to our ebooks online or by storing it on your computer, you have convenient answers with Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials). To get started finding Surface Modification of Magnesium and its Alloys for Biomedical Applications: Modification and Coating Techniques (Woodhead Publishing Series in Biomaterials), you are right to find our website which has a comprehensive collection of manuals listed. Our library is the biggest of these that have literally hundreds of thousands of different products represented.