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首页> 外文期刊>Journal of dentistry >Misfit and microleakage of implant-supported crown copings obtained by laser sintering and casting techniques, luted with glass-ionomer, resin cements and acrylic/urethane-based agents
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Misfit and microleakage of implant-supported crown copings obtained by laser sintering and casting techniques, luted with glass-ionomer, resin cements and acrylic/urethane-based agents

机译:通过激光烧结和浇铸技术获得的植入物支撑的冠状帽盖的失配和微渗漏,并与玻璃离聚物,树脂胶粘剂和丙烯酸/氨基甲酸酯基剂腐蚀

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Objectives: This study evaluated the marginal misfit and microleakage of cement-retained implant-supported crown copings. Methods: Single crown structures were constructed with: (1) laser-sintered Co-Cr (LS); (2) vacuum-cast Co-Cr (CC) and (3) vacuum-cast Ni-Cr-Ti (CN). Samples of each alloy group were randomly luted in standard fashion onto machined titanium abutments using: (1) GC Fuji PLUS (FP); (2) Clearfil Esthetic Cement (CEC); (3) RelyX Unicem 2 Automix (RXU) and (4) DentoTemp (DT) (n = 15 each). After 60 days of water ageing, vertical discrepancy was SEM-measured and cement microleakage was scored using a digital microscope. Misfit data were subjected to two-way ANOVA and Student-Newman-Keuls multiple comparisons tests. Kruskal-Wallis and Dunn's tests were run for microleakage analysis (?? = 0.05). Results: Regardless of the cement type, LS samples exhibited the best fit, whilst CC and CN performed equally well. Despite the framework alloy and manufacturing technique, FP and DT provide comparably better fit and greater microleakage scores than did CEC and RXU, which showed no differences. Conclusions: DMLS of Co-Cr may be a reliable alternative to the casting of base metal alloys to obtain well-fitted implant-supported crowns, although all the groups tested were within the clinically acceptable range of vertical discrepancy. No strong correlations were found between misfit and microleakage. Notwithstanding the framework alloy, definitive resin-modified glass-ionomer (FP) and temporary acrylic/urethane- based (DT) cements demonstrated comparably better marginal fit and greater microleakage scores than did 10-methacryloxydecyl-dihydrogen phosphate-based (CEC) and self-adhesive (RXU) dual-cure resin agents. ? 2012 Elsevier Ltd.
机译:目的:本研究评估了水泥固位的种植体支撑冠冠的边缘错位和微渗漏。方法:采用以下方法构造单冠结构:(1)激光烧结Co-Cr(LS); (2)真空铸造的Co-Cr(CC)和(3)真空铸造的Ni-Cr-Ti(CN)。使用以下方法,将每种合金组的样品以标准方式随机吸引到机加工的钛基台上:(1)GC Fuji PLUS(FP); (2)Clearfil美学水泥(CEC); (3)RelyX Unicem 2自动混音(RXU)和(4)DentoTemp(DT)(每个n = 15)。水老化60天后,通过SEM测量垂直差异,并使用数字显微镜对水泥的微渗漏进行评分。错误的数据接受了两次方差分析和Student-Newman-Keuls多重比较测试。进行了Kruskal-Wallis和Dunn检验以进行微渗漏分析(Δε= 0.05)。结果:不管水泥类型如何,LS样品都表现出最佳的贴合度,而CC和CN的表现同样出色。尽管采用框架合金和制造技术,但FP和DT与CEC和RXU相比,提供了更好的贴合性和更大的微渗漏评分,后者没有差异。结论:尽管所有测试组均在临床上可接受的垂直差异范围内,但Co-Cr的DMLS可能是铸造贱金属合金以获得适合的植入物支撑牙冠的可靠替代方法。在失配和微渗漏之间未发现强相关性。尽管使用了骨架合金,但与10-甲基丙烯酰氧癸基-磷酸二氢酯基(CEC)和自身相比,确定的树脂改性玻璃离聚物(FP)和临时丙烯酸/氨基甲酸酯(DT)水泥显示出更好的边缘配合和更大的微渗漏评分。 -粘合剂(RXU)双固化树脂剂。 ? 2012爱思唯尔有限公司

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