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不同 CAD/CAM 陶瓷材料制作的超薄贴面的激光去黏结。

Laser debonding of ultrathin occlusal veneers fabricated from different CAD/CAM ceramic materials.

机构信息

Department of Fixed Prosthodontics, Faculty of Dentistry, Ain Shams University, African Unity St, Cairo, Egypt.

出版信息

BMC Oral Health. 2024 May 15;24(1):570. doi: 10.1186/s12903-024-04314-6.

Abstract

BACKGROUND

Erbium lasers safely offer the possibility of reuse for debonded restorations. Since these lasers have a high affinity for water molecules, they are absorbed by resin cement causing explosive ablation of the cement and thus, the restoration debonds. The efficiency of this process depends on many factors, including the ceramic type, its chemical composition and thickness. Therefore, this study was designed to test the time taken to debond ultrathin occlusal veneers made of three types of milled ceramic materials and evaluate the integrity of these restorations after debonding.

METHODS

Three ceramic types were evaluated in this study: lithium disilicate (IPS Emax CAD), highly condensed lithium disilicate (GC initial®LiSi), and translucent zirconia (Katana zirconia STML). Each group consisted of 8 occlusal veneers of 0.5 mm thickness. The samples were cemented to the occlusal surfaces of the upper molar teeth. An Er; Cr: YSGG laser was applied to the occlusal veneers using the scanning method, and time until debonding was calculated. The debonded samples were then inspected under a stereomicroscope for possible damage. Numerical data are presented as the mean with 95% confidence interval (CI), standard deviation (SD), minimum (min.) and maximum (max.) values. Normality and variance homogeneity assumptions were confirmed using Shapiro-Wilk's and Levene's tests, respectively. Data were normally distributed and were analyzed using one-way ANOVA followed by Tukey's post hoc test. The significance level was set at p < 0.05 for all tests. Statistical analysis was performed with R statistical analysis software version 4.3.2 for Windows (R Core Team (2023). R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. URL https://www.R-project.org/).

RESULTS

There was no significant difference in debonding time between the different materials (p = 0.995). The longest debonding time was found for Katana STML (87.52 ± 20.45) (seconds), followed by Emax (86.94 ± 20.63) (seconds), while the lowest value was found for LiSi initial (86.14 ± 25.16) (seconds). In terms of damage to the debonded veneers, The Emax and zirconia samples showed no damage. However, 40% of the LiSi samples fractured during debonding, and 20% exhibited cracks. Only 40% of the LiSi samples were sound after debonding.

CONCLUSION

Er; Cr: YSGG laser can be used efficiently to remove ceramic occlusal veneers. However, its effect on LiSi restorations needs further research.

摘要

背景

铒激光安全地为脱粘修复体提供了再利用的可能性。由于这些激光对水分子有很强的亲和力,它们被树脂水门汀吸收,导致水门汀的爆炸式烧蚀,从而使修复体脱粘。这个过程的效率取决于许多因素,包括陶瓷的类型、其化学成分和厚度。因此,本研究旨在测试三种类型的铣削陶瓷材料制成的超薄牙颌面修复体脱粘所需的时间,并评估脱粘后这些修复体的完整性。

方法

本研究评估了三种陶瓷类型:锂硅二硅酸锂(IPS Emax CAD)、高度浓缩的锂硅二硅酸锂(GC initial®LiSi)和半透明氧化锆(Katana 氧化锆 STML)。每组由 8 个 0.5 毫米厚的牙颌面修复体组成。样本被粘接到上颌磨牙的牙合面。采用扫描法将 Er;Cr:YSGG 激光应用于牙颌面修复体,计算脱粘时间。然后在立体显微镜下检查脱粘的样本,检查是否有损坏。数值数据以平均值和 95%置信区间(CI)、标准差(SD)、最小值(min.)和最大值(max.)表示。使用 Shapiro-Wilk 检验和 Levene 检验分别确认正态性和方差同质性假设。数据呈正态分布,采用单因素方差分析(ANOVA),然后进行 Tukey 事后检验。所有检验的显著性水平均设为 p<0.05。统计分析使用 Windows 版 R 统计分析软件版本 4.3.2(R Core Team (2023). R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. URL https://www.R-project.org/)。

结果

不同材料之间的脱粘时间无显著差异(p=0.995)。Katana STML 的脱粘时间最长(87.52±20.45)(秒),其次是 Emax(86.94±20.63)(秒),而 LiSi initial 的最低值为(86.14±25.16)(秒)。就脱粘牙颌面修复体的损坏情况而言,Emax 和氧化锆样本无损坏。然而,40%的 LiSi 样本在脱粘过程中发生断裂,20%的样本出现裂纹。只有 40%的 LiSi 样本在脱粘后完好无损。

结论

Er;Cr:YSGG 激光可有效去除陶瓷牙颌面修复体。然而,其对 LiSi 修复体的影响需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0aa5/11129369/75d989548802/12903_2024_4314_Fig1_HTML.jpg

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