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复合高嵌体的光源和厚度对粘结性复合材料微硬度的影响。

Effect of Light-Sources and Thicknesses of Composite Onlays on Micro-Hardness of Luting Composites.

作者信息

De Angelis Francesco, Vadini Mirco, Capogreco Mario, D'Arcangelo Camillo, D'Amario Maurizio

机构信息

Unit of Restorative Dentistry and Endodontics, Department of Medical, Oral and Biotechnological Sciences, Dental School, "G. D'Annunzio" University of Chieti, 66100 Chieti, Italy.

Unit of Restorative Dentistry, Endodontics and Oral Pathology, Dental Clinic, Department of Life, Health and Environmental Sciences, University of L'Aquila, 67100 L'Aquila, Italy.

出版信息

Materials (Basel). 2021 Nov 13;14(22):6849. doi: 10.3390/ma14226849.

Abstract

The aim of this study was to compare three different light-curing-units (LCUs) and determine their effectiveness in the adhesive cementation of indirect composite restorations when a light-curing resin cement is used. Two resin composites were selected: Enamel Plus HRI (Micerium) and AURA (SDI). Three thicknesses (3 mm, 4 mm and 5 mm) were produced and applied as overlays and underlays for each resin composite. A standardized composite layer was placed between underlay and overlay surfaces. Light curing of the resin-based luting composites was attained through the overlay filters using LCUs for different exposure times. All specimens were allocated to experimental groups according to the overlay thickness, curing unit and curing time. Vickers Hardness (VH) notches were carried out on each specimen. Data were statistically evaluated. The curing unit, curing time and overlay thickness were significant factors capable of influencing VH values. The results showed significantly decreased VH values with increasing specimen thickness ( < 0.05). Significant differences in VH values were found amongst the LCUs for the various exposure times ( < 0.05). According to the results, a time of cure shorter than 80 s (with a conventional quartz-tungsten-halogen LCU) or shorter than 40 s (with a high-power light-emitting diode (LED) LCU) is not recommended. The only subgroup achieving clinically acceptable VH values after a short 20 s curing time included the 3 mm-thick overlays made out of the AURA composite, when the high-power LED LCU unit was used (VH 51.0). Composite thickness has an intense effect on polymerization. In clinical practice, light-cured resin cements may result in insufficient polymerization for high thickness and inadequate times. High-intensity curing lights can attain the sufficient polymerization of resin cements through overlays in a significantly shorter time than conventional halogen light.

摘要

本研究的目的是比较三种不同的光固化装置(LCU),并确定在使用光固化树脂水门汀时,它们在间接复合树脂修复体粘结固位中的有效性。选择了两种树脂复合材料:Enamel Plus HRI(Micerium公司)和AURA(SDI公司)。制作了三种厚度(3毫米、4毫米和5毫米),并将其作为每种树脂复合材料的覆盖层和底层。在底层和覆盖层表面之间放置一个标准化的复合层。使用LCU通过覆盖滤光片对树脂类粘结复合材料进行不同曝光时间的光固化。所有标本根据覆盖层厚度、固化装置和固化时间分配到实验组。对每个标本进行维氏硬度(VH)测试。对数据进行统计学评估。固化装置、固化时间和覆盖层厚度是能够影响VH值的重要因素。结果表明,随着标本厚度增加,VH值显著降低(P<0.05)。在不同曝光时间下,各LCU之间的VH值存在显著差异(P<0.05)。根据结果,不建议使用传统石英卤钨灯LCU时固化时间短于80秒,或使用高功率发光二极管(LED)LCU时固化时间短于40秒。在20秒短固化时间后达到临床可接受VH值的唯一亚组包括使用高功率LED LCU装置时,由AURA复合材料制成的3毫米厚覆盖层(VH为51.0)。复合材料厚度对聚合反应有强烈影响。在临床实践中,光固化树脂水门汀对于高厚度和不足的时间可能导致聚合不足。高强度固化灯通过覆盖层能够在比传统卤素灯显著更短的时间内实现树脂水门汀的充分聚合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afad/8618162/948fc5c0ed0e/materials-14-06849-g001.jpg

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