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Effect of total occlusal convergence on fit and fracture resistance of zirconia-reinforced lithium silicate crowns

机译:总咬合对氧化锆增强硅酸锂冠的贴合性和抗断裂性的影响

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Introduction: Computer-aided design (CAD) and computer-aided manufacturing (CAM) monolithic crowns are gaining momentum. Limited evidence exists about the effect of tooth preparation total occlusal convergence (TOC) on marginal and internal gap distances in -addition to load to fracture values. Aim: The aim of this study was to evaluate, by microcomputed tomography (μCT), the influence of 12° and 20° TOC on marginal and internal adaptation of zirconia-reinforced lithium silicate (ZLS) crowns. Moreover, values of load to fracture with and without initial cyclic loading (CL) were compared. Material and methods: Forty ZLS crowns were fabricated on dies with TOC of 12° and 20°, 20 crowns for each group. μCT was used to compare marginal and internal adaptation. Each specimen was measured at 140 points distributed on all tooth preparation surfaces for 2D gap distance assessment. 3D gap volume was also evaluated. Crowns were then cemented and divided into two subgroups; the first was stored in distilled water (no cyclic loading [NCL] subgroup), the second was subjected to CL (CL subgroup). Results: Factorial repeated measures ANOVA followed by Bonferroni post hoc in addition to independent and dependent t -tests were used for statistical analysis. Marginal gap, absolute marginal discrepancy, and occlusal gap measurements showed significant differences between the measurement sites. Static load to fracture values showed significant differences between TOC groups for both NCL ( P =0.011) and CL ( P =0.025) subgroups. Conclusion: An increase of TOC from 12° to 20° did not affect marginal and internal adaptation but resulted in higher values of load to fracture of ZLS crowns. CL simulating 1 year of service did not result in fatigue failure.
机译:简介:计算机辅助设计(CAD)和计算机辅助制造(CAM)单片牙冠正获得发展势头。关于预备牙合(TOC)对除骨折值外的边缘和内部间隙距离的影响,证据有限。目的:本研究的目的是通过微计算机断层扫描(μCT)评估12°和20°TOC对氧化锆增强硅酸锂(ZLS)冠的边缘和内部适应性的影响。此外,比较了有和没有初始循环载荷(CL)时的断裂载荷值。材料和方法:在模具上制造40个ZLS冠,TOC为12°和20°,每组20个冠。 μCT用于比较边缘和内部适应。在分布在所有牙齿准备表面上的140个点处测量每个样本,以进行2D间隙距离评估。还评估了3D间隙体积。然后将牙冠固结并分为两个子组。第一个存储在蒸馏水中(无循环负荷[NCL]子组),第二个进行CL(CL子组)。结果:除了独立和相关的t检验外,还使用因子重复测量ANOVA,然后进行Bonferroni post hoc进行统计分析。边缘间隙,绝对边缘差异和咬合间隙测量结果显示测量位置之间存在显着差异。 NCL(P = 0.011)和CL(P = 0.025)子组的TOC组之间的断裂静载荷值显示出显着差异。结论:TOC从12°增加到20°不会影响边缘和​​内部适应,但会导致ZLS冠骨折的载荷值更高。模拟1年服务的CL不会导致疲劳失效。

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