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13篇 您的检索式:作者名="Roether JA"
    题名 作者 年代 出处 被引量
1Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and bioglass for tissue engineering applications显示文摘 Boccaccini AR Hench LL 2002Biomaterials2002,23,6:1
2Simple fabrication technique for muhilayered stratified composite scaffolds suitable for interface tissue engineering 显示文摘Liverani L Roether JA Nooeaid P 2012Mater Sci Eng A Struct Mater2012,557,:1
3Development and in vitro eharacterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and bioglass for tissue engineering applications 显示文摘Roether JA Boccaccini AR Hench LL 2002Biomaterials2002,23,6:1
4Novel bioresorbable and bioactive colnposites based on'bioactive glass and polylactide foams for bone tissue engineering显示文摘Roether JA Gough JE Boccaccini AP 2002J Mater Sci Mater Med2002,13,12:1
5Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and Bioglass for tissue engineering applications 显示文摘Roether JA Boccaccini AR Hench LL 2002Biomaterials2002,23,18:1
6Development and in vitro characterization of novel bioresorbable and bioactive composite materials based on polylactide foams and bioglass for tissue engineering applications显示文摘Roether JA Boccaccini AR Hench LL 0,,:1
7Development and in vitro characterization of novel bioresorbable and composite materials based oll polylactide foams and bioglass for tissue engineering application显示文摘Roether JA Boccaccini AR Hench LL 2002Biomaterials2002,23,:1
8Novel bioresorbable and bioactive composites based on bioactive glass and polylactide foams for bone tissue engineering 显示文摘Roether JA Cough JE Boccaccini AR 2002J Mater Sci Mater Med2002,13,12:1
9Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and Bioglass for tissue engineering applications显示文摘Roether JA Boccaccini AR Hench LL 2002Biomaterials2002,23,18:1
10Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on poly-lactid foams and Bioglassfortissue engineering applications 显示文摘Roether JA Boccaccini AR Hench LL 2002Biomaterials2002,23,18:1
11Effect of bioactive glasses on angiogenesis:a review of in vitro and in vivo evidences显示文摘Gorustovich AA Roether JA Boccaccini AR 0,,02:1
12Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and Bioglass for tissue engineering applications 显示文摘Roether JA Boccaccini AR Hench LL 2002Siomaterials2002,23,18:1
13Mechanical Behaviour of Composite Bioactive Bone Cements Consisting of Two Different Types of Surface Treated Hydroxyapatite as Filler显示文摘Bioactive bone cements based on a paste-paste system for orthopaedic applications were developed consisting of hydroxyapatite (HA) filler particles in a methacrylate matrix comprising urethane dimethacrylate (UDMA) and triethylene glycol dimethacrylate (TEGDMA). To improve the interface between inorganic filler and organic matrix the HA particles were subjected to two different surface treatment methods, using polyacrylic acid (PAA) and γ-methacryloxy propyl trimethoxy silane (γMPS). The aim of the present study was to determine the influence of surface treatment and the inclusion of multifunctional methacrylates on the mechanical properties, namely 3-point flexural strength (FS) and fracture toughness of the cements and the effect of ageing in simulated body fluid. Comparing the mechanical properties of the two cements, the γMPS-HA cement showed that the fracture toughness of the experimental bone cements were significantly greater (p<0.001) compared to that of the PMMA cement, whereas PAA-HA containing cement had strength values around 20% lower. Interestingly, PAA was found to be more effective in improving the interface as the PAA treated HA cement (UTHAPPA) maintained its strength on immersion in SBF, suggesting that PAA provided a coupling, which was less sensitive to moisture, a similar trend was also observed with the inclusion of the carboxyl containing multifunctional methacrylates.S Deb JA Roether 2005Journal of Wuhan University of Technology(Materials Science)2005,20,B12:0
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