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Bionanomaterials for dental applications / Edited by Mieczyslaw Jurczyk

Tipo de material: TextoTextoEditor: Singapore : Pan Stanford Publishing, c2013Descripción: x, 414 p. : il. ; 24 cmISBN:
  • 9789814303835 (Hardcover)
  • 9789814303842 (eBook)
Trabajos contenidos:
  • Jurczyk, Mieczyslaw [ed.]
Tema(s): Clasificación CDD:
  • 610.28 B5656 2013
Recursos en línea: Resumen: Recently, chemical, physical, and mechanical processes for the fabrication of metal/alloy-ceramic nanocomposites with a unique microstructure have been developed. These processes permit the control of microstructural properties such as the size of pore openings, surfaces properties, and the nature of the base metal/alloy. This book presents information about the structure and characteristics of new dental nanomaterials, corrosion behavior of metallic biomaterials and implants as well as methods of surface improvement of implants by means of nanoengineering, which decides the biocompatibility of the insert. It thoroughly explains the osseointegration from a biological viewpoint and early tissue response
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode
Libros impresos Libros impresos CICY Colección general Colección general 610.28 B5656 2013 (Browse shelf(Opens below)) Available 8342
Libros impresos Libros impresos CICY Colección general Colección general 610.28 B5656 2013 (Browse shelf(Opens below)) Ej.2 Available 9318

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Recently, chemical, physical, and mechanical processes for the fabrication of metal/alloy-ceramic nanocomposites with a unique microstructure have been developed. These processes permit the control of microstructural properties such as the size of pore openings, surfaces properties, and the nature of the base metal/alloy. This book presents information about the structure and characteristics of new dental nanomaterials, corrosion behavior of metallic biomaterials and implants as well as methods of surface improvement of implants by means of nanoengineering, which decides the biocompatibility of the insert. It thoroughly explains the osseointegration from a biological viewpoint and early tissue response

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