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不同边缘线设计的烤瓷冠边缘精度的数字化评价。

Digital assessment of marginal accuracy in ceramic crowns fabricated with different marginal finish line configurations.

机构信息

Department of Prosthodontics, College of Dentistry, Jouf University, Saudi Arabia.

Department of Preventive Dentistry, College of Dentistry, Jouf University, Saudi Arabia.

出版信息

J Esthet Restor Dent. 2022 Jul;34(5):789-795. doi: 10.1111/jerd.12822. Epub 2021 Oct 19.

Abstract

AIM

To digitally evaluate the marginal adaptation of different types of all-ceramic crowns on two different marginal configurations such as Shoulder and Chamfer of the prepared teeth.

METHODS

The marginal fit of the crown specimens on the model of the prepared teeth were assessed using the dual scan replica technique. Two plastic teeth were prepared; one having a Shoulder finishing line (A), while the other with a Chamfer finish line (B). Three types of different all-ceramic crowns, layered zirconia, monolithic zirconia, and pressed lithium disilicate, were fabricated for each prepared tooth (A) and (B). Measurements for assessing the marginal discrepancy were done on four designated points on the mesial, distal, buccal, and palatal surface of the superimposed image.

RESULTS

The average marginal gap was the largest in the layered zirconia group, followed by monolithic zirconia, while pressed lithium disilicate crowns showed the least marginal gaps. Crowns with Chamfer finish lines were better fitting (less marginal gap) than the shoulder finish lines across all the groups.

CONCLUSIONS

Chamfer finish lines produced better fitting restorations, and heat-pressed lithium disilicate crowns showed better adaptation at the margins than both layered zirconia and monolithic zirconia.

摘要

目的

通过双重扫描复制技术,对两种不同预备牙边缘形态(肩台和倒角)的不同全瓷冠进行边缘适合性的数字化评估。

方法

采用双重扫描复制技术对牙体预备模型上的冠试件的边缘适合性进行评估。预备两颗塑料牙,一颗具有肩台边缘线(A),另一颗具有倒角边缘线(B)。为每个预备牙(A)和(B)制作三种不同的全瓷冠,分层氧化锆、整体氧化锆和热压铸硅酸锂。在重叠图像的近中、远中、颊侧和舌侧的四个指定点上进行评估边缘差异的测量。

结果

分层氧化锆组的平均边缘间隙最大,其次是整体氧化锆,而热压铸硅酸锂冠的边缘间隙最小。在所有组中,具有倒角边缘线的冠比具有肩台边缘线的冠更贴合(边缘间隙更小)。

结论

倒角边缘线产生更好的修复体拟合,热压铸硅酸锂冠在边缘适应性方面优于分层氧化锆和整体氧化锆。

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