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评估反复使用研磨车针对数字化制作的陶瓷贴面的表面粗糙度和贴合度的影响。

Evaluating the effect of repeated use of milling burs on surface roughness and adaptation of digitally fabricated ceramic veneers.

作者信息

Payaminia Leila, Moslemian Naeime, Younespour Shima, Koulivand Soudabeh, Alikhasi Marzieh

机构信息

Dental Research Center, Dental Implant Research Center, Dentistry Research Institute, Department of Prosthodontics, Tehran University of Medical Sciences, Tehran, Iran.

Department of Prosthodontics, School of Dentistry, Hamedan University of Medical Sciences, Hamedan, Iran.

出版信息

Heliyon. 2021 Apr 30;7(4):e06896. doi: 10.1016/j.heliyon.2021.e06896. eCollection 2021 Apr.

Abstract

OBJECTIVES

This study aimed to evaluate how repeated use of milling diamond burs with different coarseness affects surface roughness, and marginal and internal adaptation of CAD/CAM veneers.

METHODS

Forty leucite-reinforced glass-ceramic veneers were milled in 2 groups based on the milling mode (with fine or extra-fine bur sets). In each group, every 10 veneers were milled with a new bur set. All veneers were cemented to bovine teeth and then polished. Labial surface roughness was measured before cementation, and after polishing. Marginal and internal discrepancies were measured using a field emission scanning electron microscope. Three-way and two-way mixed repeated measures ANOVA were applied to assess changes in surface roughness values of veneers and discrepancy values, respectively. The Bonferroni correction was applied for multiple comparisons.

RESULTS

Repeated use of a milling diamond bur set had a significant effect on surface roughness of the veneers (P < .001). Mean surface roughness of the fine milling mode was significantly higher in comparison to that of extra-fine mode before (P = .002) and after (P = .01) polishing. After polishing a significant decrease in surface roughness occurred in fine (P = .02), but not in extra-fine milling mode (P = .99). Repeated use of milling burs significantly affected marginal and internal adaptation between some repeated uses.

CONCLUSIONS

Marginal and internal adaptation were significantly affected by repeated use of milling diamond burs up to 10 times between some repeated uses. However, no specific pattern could be established.

CLINICAL SIGNIFICANCE

Repeated use of milling burs could affect surface roughness, surface microcracks, critical defects, and adaptation of CAD/CAM restorations. Therefore, it plays a major role in clinical success of the restorations.

摘要

目的

本研究旨在评估重复使用不同粗糙度的研磨金刚石车针如何影响CAD/CAM贴面的表面粗糙度、边缘及内部适合性。

方法

根据研磨模式(使用细粒度或超细粒度车针组)将40个白榴石增强型玻璃陶瓷贴面分为2组进行研磨。每组中,每10个贴面使用一套新的车针进行研磨。所有贴面粘结到牛牙上,然后进行抛光。在粘结前和抛光后测量唇面粗糙度。使用场发射扫描电子显微镜测量边缘和内部差异。分别应用三因素和双因素混合重复测量方差分析来评估贴面表面粗糙度值和差异值的变化。采用Bonferroni校正进行多重比较。

结果

重复使用研磨金刚石车针组对贴面的表面粗糙度有显著影响(P <.001)。在抛光前(P =.002)和抛光后(P =.01),细粒度研磨模式的平均表面粗糙度显著高于超细粒度模式。抛光后,细粒度研磨模式的表面粗糙度显著降低(P =.02),而超细粒度研磨模式则无显著变化(P =.99)。重复使用研磨车针在某些重复使用之间对边缘和内部适合性有显著影响。

结论

在某些重复使用之间,重复使用研磨金刚石车针达10次对边缘和内部适合性有显著影响。然而,无法确定具体模式。

临床意义

重复使用研磨车针会影响表面粗糙度、表面微裂纹、关键缺陷以及CAD/CAM修复体的适合性。因此,它在修复体的临床成功中起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9246/8105639/fea9f2eb84ca/gr1.jpg

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