首页> 外文期刊>Journal of dentistry >Colour stability and opacity of resin cements and flowable composites for ceramic veneer luting after accelerated ageing.
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Colour stability and opacity of resin cements and flowable composites for ceramic veneer luting after accelerated ageing.

机译:加速老化后用于陶瓷贴面胶合的树脂胶粘剂和可流动复合材料的颜色稳定性和不透明性。

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OBJECTIVES: Colour changes of the luting material can become clinically visible affecting the aesthetic appearance of thin ceramic laminates. The aim of this in vitro study was to evaluate the colour stability and opacity of light- and dual-cured resin cements and flowable composites after accelerated ageing. METHODS: The luting agents were bonded (0.2 mm thick) to ceramic disks (0.75 mm thick) built with the pressed-ceramic IPS Aesthetic Empress (n=7). Colour measurements were determined using a FTIR spectrophotometer before and after accelerated ageing in a weathering machine with a total energy of 150 kJ. Changes in colour (DeltaE) and opacity (DeltaO) were obtained using the CIE L*a*b* system. The results were submitted to one-way ANOVA, Tukey HSD test and Student's t test (alpha=5%). RESULTS: All the materials showed significant changes in colour and opacity. The DeltaE of the materials ranged from 0.41 to 2.40. The highest colour changes were attributed to RelyX ARC and AllCem, whilst lower changes were found in Variolink Veneer, Tetric Flow and Filtek Z350 Flow. The opacity of the materials ranged from -0.01 to 1.16 and its variation was not significant only for Opallis Flow and RelyX ARC. CONCLUSIONS: The accelerated ageing led to colour changes in all the evaluated materials, although they were considered clinically acceptable (DeltaE<3). Amongst the dual-cured resin cements, Variolink II demonstrated the highest colour stability. All the flowable composites showed proper colour stability for the luting of ceramic veneers. After ageing, an increase in opacity was observed for most of the materials.
机译:目的:色浆材料的颜色变化在临床上可以看到,从而影响薄陶瓷层压板的美学外观。这项体外研究的目的是评估加速老化后光固化和双固化树脂水泥和可流动复合材料的颜色稳定性和不透明度。方法:将诱剂(0.2毫米厚)粘结到用压制IPS IPS美学女皇(n = 7)制成的陶瓷盘(0.75毫米厚)上。在总能量为150 kJ的耐候机中加速老化之前和之后,使用FTIR分光光度计确定颜色测量值。使用CIE L * a * b *系统获得颜色(DeltaE)和不透明度(DeltaO)的变化。将结果提交给单向方差分析,Tukey HSD测试和Student t检验(alpha = 5%)。结果:所有材料均显示出明显的颜色和不透明度变化。材料的DeltaE在0.41至2.40之间。最高的颜色变化归因于RelyX ARC和AllCem,而在Variolink单板,Tetric Flow和Filtek Z350 Flow中发现的变化较小。材料的不透明度范围为-0.01至1.16,并且其变化仅对于Opallis Flow和RelyX ARC并不明显。结论:加速老化导致所有评估材料的颜色发生变化,尽管它们在临床上被认为是可接受的(DeltaE <3)。在双固化树脂水泥中,Variolink II表现出最高的颜色稳定性。所有可流动的复合材料都具有适当的颜色稳定性,可用于陶瓷贴面的着色。老化后,观察到大多数材料的不透明度增加。

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