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牙科微立体光刻制造的不同 coping 装置的可重复性:金属 coping 边缘和内部间隙的评估。

Reproducibility of different coping arrangements fabricated by dental micro-stereolithography: Evaluation of marginal and internal gaps in metal copings.

作者信息

Kim Dong-Yeon, Jeong Il-Do, Kim Ji-Hwan, Kim Hae-Young, Kim Woong-Chul

机构信息

Department of Dental Laboratory Science and Engineering, College of Health Science, Korea University, Seoul, Republic of Korea.

Department of Public Health Science, Graduate School & BK21 + Program in Public Health Sciences, Korea University, Seoul, Republic of Korea.

出版信息

J Dent Sci. 2018 Sep;13(3):220-225. doi: 10.1016/j.jds.2017.06.006. Epub 2017 Nov 20.

Abstract

BACKGROUND/PURPOSE: To evaluate the reproducibility of the marginal and internal gaps of metal copings fabricated using dental micro-stereolithography (μ-SLA), which is an additive manufacturing system.

MATERIALS AND METHODS

A study cast of abutment tooth 46 was made from type-IV dental stone and was scanned to create a standard triangulation language file. Arrays of one (ORM), three (TRM), and six (SRM) resin copings were then fabricated on the μ-SLA build platform using investment, burnout, and casting ( = 12). The marginal and internal gaps of these metal copings were measured using a silicone-replica technique with a digital microscope (×160). The data obtained were analyzed using a non-parametric Kruskal-Wallis H test, a post-hoc Mann-Whitney U test, and a Bonferroni correction.

RESULTS

The mean and standard deviation of the marginal gap for each group were measured and found to be 81.1 and 53.2 μm, 68.3 and 44.8 μm, and 90.3 and 57.7 μm for ORM, TRM, and SRM, respectively. There were no statistical differences in the marginal gaps of the three groups ( > 0.05).

CONCLUSION

The marginal and internal gap of ORM, TRM and SRM groups were considered clinically acceptable.

摘要

背景/目的:评估使用牙科微立体光刻技术(μ-SLA,一种增材制造系统)制作的金属基底冠边缘和内部间隙的可重复性。

材料与方法

用IV型牙科石膏制作46号基牙的研究模型,并进行扫描以创建标准三角测量语言文件。然后在μ-SLA构建平台上使用包埋、焙烧和铸造工艺制作一组(ORM)、三组(TRM)和六组(SRM)树脂基底冠(n = 12)。使用带有数字显微镜(×160)的硅橡胶复制技术测量这些金属基底冠的边缘和内部间隙。使用非参数Kruskal-Wallis H检验、事后Mann-Whitney U检验和Bonferroni校正对获得的数据进行分析。

结果

测量每组边缘间隙的平均值和标准差,发现ORM、TRM和SRM组分别为81.1和53.2μm、68.3和44.8μm以及90.3和57.7μm。三组的边缘间隙无统计学差异(P>0.05)。

结论

ORM、TRM和SRM组的边缘和内部间隙在临床上被认为是可接受的。

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