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研究老化过程对由不同材料制备的临时冠边缘适合性和断裂强度的影响。

Examination of the effect of aging process on marginal fit and fractute strength of temporary crowns prepared from different materials.

作者信息

Tüfekçi Bahriye Bahar, Yeşil Zeynep

机构信息

Prosthodontics Specialist, Trabzon Oral and Dental Health Hospital, Trabzon, Turkey.

Prof. Dr. Recep Tayyip Erdogan University, Ataturk University, Turkey.

出版信息

Heliyon. 2024 Feb 27;10(6):e26737. doi: 10.1016/j.heliyon.2024.e26737. eCollection 2024 Mar 30.

Abstract

AIM

The aim of this study is to investigate the effect of the aging process on the marginal fit and fracture resistance of temporary crowns prepared using different materials.

MATERIALS AND METHOD

The steel die to represent the maxillary first premolar used in this study was produced on a CNC turning machine to include an anatomical occlusal surface. A total of 160 epoxy resin dies were obtained by taking impressions with conventional impression methods on the metal die. Epoxy resin dies were randomly divided into four groups. Temporary crowns were prepared for each group from poly acrylic resin (Vita CADTemp®), bis-acryl composite resin (Protemp 4), poly methyl methacrylate (PMMA; Imident) and poly ethyl methacrylate (PEMA; Dentalon Plus) restorative materials. Half of the specimens (n = 20) in each group (n = 40) were randomly separated and the aging process was applied 5000 times in the device. Marginal gap measurements on epoxy resin dies were made using a stereomicroscope. The fracture strength test of the specimens was performed by using the Instron Universal Test Device. Jamovi 2.2.5 statistical program was used for statistical analysis.

RESULTS

When compared to temporary crowns prepared from all other materials, poly acrylic resin (Vita CADTemp ®) temporary crowns observed significantly lower marginal gap values (59,05 μm) regardless of the aging process, and a significantly higher fracture resistance (478,44 N) in the presence of aging process (p < .05 for each). While the highest marginal gap value was detected in PMMA (Imident) (120.36 μm) temporary crowns with aging process, the lowest marginal gap value was observed in poly acrylic resin (Vita CADTemp®) (59.05 μm) crowns without non-aging process. The marginal fit and fracture resistance of all temporary crowns were negatively affected by the aging process.

CONCLUSION

Our findings revealed the superiority of poly acrylic resin (Vita CADTemp®) crowns to the temporary crowns prepared from all other materials in terms of the significantly lower marginal gap in the absence of aging process, and the significantly higher fracture resistance in the presence of aging process. Marginal fit and fracture resistance values for all materials were found to be within clinically acceptable limits.

摘要

目的

本研究旨在探讨老化过程对使用不同材料制备的临时冠边缘适合性和抗折强度的影响。

材料与方法

本研究中用于代表上颌第一前磨牙的钢模在数控车床上制作,具有解剖学咬合面。通过在金属模上采用传统印模方法制取印模,共获得160个环氧树脂模。环氧树脂模随机分为四组。分别用聚丙烯酸树脂(Vita CADTemp®)、双丙烯酸复合树脂(Protemp 4)、聚甲基丙烯酸甲酯(PMMA;Imident)和聚乙基丙烯酸甲酯(PEMA;Dentalon Plus)修复材料为每组制备临时冠。每组(n = 40)中的一半标本(n = 20)随机分离,在装置中进行5000次老化处理。使用体视显微镜对环氧树脂模进行边缘间隙测量。标本的抗折强度测试使用英斯特朗万能测试装置进行。采用Jamovi 2.2.5统计软件进行统计分析。

结果

与用所有其他材料制备的临时冠相比,无论是否经过老化处理,聚丙烯酸树脂(Vita CADTemp®)临时冠的边缘间隙值均显著更低(59.05μm),并且在经过老化处理时抗折强度显著更高(478.44N)(每项p <.05)。老化处理时,PMMA(Imident)临时冠的边缘间隙值最高(120.36μm),未经过老化处理的聚丙烯酸树脂(Vita CADTemp®)冠的边缘间隙值最低(59.05μm)。老化过程对所有临时冠的边缘适合性和抗折强度均产生负面影响。

结论

我们的研究结果显示,在未经过老化处理时边缘间隙显著更低,以及在经过老化处理时抗折强度显著更高方面,聚丙烯酸树脂(Vita CADTemp®)冠优于用所有其他材料制备的临时冠。所有材料的边缘适合性和抗折强度值均在临床可接受范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9243/10945148/ec400b0dfa7e/gr1.jpg

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