首页> 外文期刊>American journal of dentistry >Influence of CAD/CAM scanning method and tooth-preparation design on the vertical misfit of zirconia crown copings.
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Influence of CAD/CAM scanning method and tooth-preparation design on the vertical misfit of zirconia crown copings.

机译:CAD / CAM扫描方法和牙齿准备设计对氧化锆冠顶盖垂直不匹配的影响。

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摘要

PURPOSE: To evaluate the influence of scanning method, finish line type and occlusal convergence angle of the teeth preparations on the vertical misfit of zirconia crown copings. METHODS: 20 standardized stainless-steel master dies were machined simulating full-crown preparations. The total convergence angle was 15 degrees or 20 degrees (n=10 each). Two of the finish line types: a chamfer (CH) and a shoulder (SH) were prepared around the contour of each abutment. Over these dies, 20 structures were made by CAD/CAM (Cercon, Dentsply). An optical laser digitized the wax patterns of 10 single-unit copings (WS), and 10 abutments were direct-scanned to design the cores by computer (DS). Zirconia milled caps were luted onto the models under constant seating pressure. Vertical discrepancy was assessed by SEM. Misfit data were analyzed using ANOVA and Student-Newman-Keuls (SNK) test for multiple comparisons at alpha = 0.05. RESULTS: Vertical gap measurements of WS copings were significantly higher than those of DS frames (P < 0.0001). SH exhibited statistically higher discrepancies than CH when combined with a 15-degree occlusal convergence angle regardless of the scanning method (P < 0.05). The taper angle of the preparation (15 degrees vs. 20 degrees) had no effect on the marginal adaptation of chamfered samples.
机译:目的:评估扫描方法,终点线类型和牙齿准备的咬合会聚角对氧化锆冠顶盖垂直不匹配的影响。方法:对20个标准化的不锈钢母模进行了加工,以模拟全冠制备。总会聚角为15度或20度(每个n = 10)。围绕每个基台的轮廓准备了两种终点线类型:倒角(CH)和肩部(SH)。在这些模具上,通过CAD / CAM(Cercon,Dentsply)制造了20种结构。光学激光数字化了10个单孔顶盖(WS)的蜡模,并通过计算机(DS)直接扫描了10个基台以设计岩心。在恒定的阀座压力下,将氧化锆研磨的瓶盖吸引到模型上。通过SEM评估垂直差异。使用方差分析和Student-Newman-Keuls(SNK)测试分析了不当数据,以进行alpha = 0.05的多次比较。结果:WS顶盖的垂直间隙测量值显着高于DS框架(P <0.0001)。不论采用哪种扫描方式,与15度咬合角相结合时,SH的统计学差异均比CH更高(P <0.05)。制品的锥角(15度对20度)对倒角样品的边缘适应没有影响。

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