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激光增材制造宏微納結(jié)構(gòu)植入物 版權(quán)信息
- ISBN:9787564644697
- 條形碼:9787564644697 ; 978-7-5646-4469-7
- 裝幀:一般膠版紙
- 冊數(shù):暫無
- 重量:暫無
- 所屬分類:>>
激光增材制造宏微納結(jié)構(gòu)植入物 內(nèi)容簡介
本書在國家自然科學(xué)基金、國家973計劃等項(xiàng)目的支持下, 針對目前人工骨存在的生物力學(xué)性能差、多孔結(jié)構(gòu)制備難、組織再生能力弱等問題, 開展了高性能多孔人工骨結(jié)構(gòu)設(shè)計和精細(xì)制造及與之對應(yīng)的誘導(dǎo)成骨機(jī)理的研究。
激光增材制造宏微納結(jié)構(gòu)植入物 目錄
Chapter I Laser additive manufacturing
Additive manufacturing of bone scaffolds
A combined strategy to enhance the properties of Zn by laser rapid solidification and laser alloying
Selective laser melting of Zn-Ag alloys for bone repair: microstructure, mechanical properties and degradation behavior
Chapter II Macro/micro/nanostructure implants
A multi-material scaffold with tunable properties: towards bone tissue repair
A multi-scale porous scaffold fabricated by a combined additive manufacturing and chemical etching process for bone tissue engineering
Fabricating the nanostructured surfaces of CaSiO3 scaffolds
Chapter III Mechanical properties
Carbon nanotubes, graphene and boron nitride nanotubes reinforced bioactive ceramics for bone repair
Mechanical and biological properties of novel molybdenum disulfide nanoplatelets reinforced bioceramics scaffolds
Interfacial reinforcement in a poly-L-lactic acid/mesoporous bioactive glass scaffold via polydopamine
Chapter IV Biological properties
A graphene oxide-Ag co-dispersing nanosystem: dual synergistic effects on antibacterial activities and mechanical properties of polymer scaffolds
Nd-induced honeycomb structure of intermetallic phase enhances the corrosion resistance of Mg alloys for bone implants
Antibacterial capability, physicochemical properties, and biocompatibility of nTiO2 incorporated polymeric scaffolds
Additive manufacturing of bone scaffolds
A combined strategy to enhance the properties of Zn by laser rapid solidification and laser alloying
Selective laser melting of Zn-Ag alloys for bone repair: microstructure, mechanical properties and degradation behavior
Chapter II Macro/micro/nanostructure implants
A multi-material scaffold with tunable properties: towards bone tissue repair
A multi-scale porous scaffold fabricated by a combined additive manufacturing and chemical etching process for bone tissue engineering
Fabricating the nanostructured surfaces of CaSiO3 scaffolds
Chapter III Mechanical properties
Carbon nanotubes, graphene and boron nitride nanotubes reinforced bioactive ceramics for bone repair
Mechanical and biological properties of novel molybdenum disulfide nanoplatelets reinforced bioceramics scaffolds
Interfacial reinforcement in a poly-L-lactic acid/mesoporous bioactive glass scaffold via polydopamine
Chapter IV Biological properties
A graphene oxide-Ag co-dispersing nanosystem: dual synergistic effects on antibacterial activities and mechanical properties of polymer scaffolds
Nd-induced honeycomb structure of intermetallic phase enhances the corrosion resistance of Mg alloys for bone implants
Antibacterial capability, physicochemical properties, and biocompatibility of nTiO2 incorporated polymeric scaffolds
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