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    • Lingua: Inglese

      Editore: LAP LAMBERT Academic Publishing, 2017

      3330324619 / 9783330324619

      • Brossura
      • Print on Demand

      Da: moluna, Greven, Germaniamoluna

      Venditore con 5 stelle
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      Condizione: Nuovo

      EUR 41,71

      EUR 48,99 spedizione 
      Spedito da Germania a U.S.A.

      Quantità: Più di 20 disponibili

      Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Rafieerad AlirezaALIREZA RAFIEERAD, Faculty of Mechanical Engineering, University of Malaya, Malaysia in collaboration with Dept. Medical Mb Medicine, UM and AMMP member. His research is focused on the filed of Biomaterials and Nano.

    • Lingua: Inglese

      Editore: LAP LAMBERT Academic Publishing, 2017

      3330324619 / 9783330324619

      • Brossura
      • Print on Demand

      Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH

      Venditore con 5 stelle
      Contatta il venditore

      Condizione: Nuovo

      EUR 72,23

      EUR 30,50 spedizione 
      Spedito da Germania a U.S.A.

      Quantità: 1 disponibili

      Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Appropriate orthopedic and dental implant biomaterials is a key factor for rapid osseointegration and success of long-term antibacterial replacement. With increased demands of artificial bone-like tissues and based on the literature available on laboratory, animal studies and human body interaction, the biomedical Titanium-based substrates alloys provide higher bone functionality. Nevertheless, this class of materials still cannot meet all the clinical requirements and surface modifications that are required to promote the implant features, bone regeneration and healing process. Noways, Artificial Intelligence (AI) techniques were developed to model and optimize the various engineering processes with aim of obtaining enhanced characteristics. This book makes an effort to employ AI-methodology to largely improve the mechanical, corrosion and biological properties of nanoengineered Ti-6Al-7Nb implant with reinforced large-area novel mixed oxides biosurface.