首页> 外文期刊>Journal of dentistry >Microhardness and chemical analysis of high-viscous glass-ionomer cement after 10 years of clinical service as ART restorations.
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Microhardness and chemical analysis of high-viscous glass-ionomer cement after 10 years of clinical service as ART restorations.

机译:高粘度玻璃离聚物水泥作为ART修复体临床使用10年后的显微硬度和化学分析。

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OBJECTIVES: The aim of this study was to evaluate the Knoop microhardness (KHN) and chemical composition of high-viscous glass-ionomer cement (HVGIC) after 10 years of clinical service. METHODS: Six HVGIC samples were cut from 10-year ART restorations. The sections were embedded in acrylic moulds with their longitudinal profile exposed. KHN was determined by performing three sequences of five indentations at 10, 30, 50, 70 and 90 mum of HVGIC outer surface. For the control group (n=6), HVGIC specimens were stored in distilled water for 24 months. Hardness measurements were taken at days 7, 30, 60, 120, 180, 360, and 720. For chemical analysis using SEM-EDX, 10-year and control specimens were dehydrated and coated with carbon. Data were analysed using T-test and ANOVA/Tukey's test (p<0.05). RESULTS: A significant KHN increase was observed in the control group up to the 180-day period. From this point the values stabilized and no more significant differences were found between the 10-year and the control KHN values. No statistical differences were observed amongst the KHN from inner distances compared to the outer surface of the 10-year HVGIC specimens. In one 10-year specimen, SEM-images identified the transformation of HVGIC in an altered layer with no glass filler particles detectable, and raised Ca, K and P contents. CONCLUSIONS: KHN values of ten-year HVGIC specimens were similar to the control group values at 180-day storage period. Except for one 10-year specimen in that an altered layer could be seen, chemical composition was similar amongst the depths evaluated.
机译:目的:本研究的目的是评估临床使用10年后的努氏显微硬度(KHN)和高粘度玻璃离聚物水泥(HVGIC)的化学成分。方法:从10年的ART修复中切出6个HVGIC样品。将这些部分埋入丙烯酸模具中,使其纵向轮廓暴露出来。 KHN是通过在HVGIC外表面的10、30、50、70和90毫米处执行三个压痕的三个序列来确定的。对于对照组(n = 6),HVGIC标本在蒸馏水中保存24个月。在第7、30、60、120、180、360和720天进行硬度测量。对于使用SEM-EDX进行的化学分析,将10年和对照样品脱水并涂上碳。使用T检验和ANOVA / Tukey检验分析数据(p <0.05)。结果:直到180天,对照组的KHN明显增加。从这一点开始,这些值稳定了,并且在10年和对照KHN值之间没有发现更多的显着差异。与10年HVGIC标本的外表面相比,内部距离与KHN之间没有统计学差异。在一个10年的样本中,SEM图像确定了HVGIC在未检测到玻璃填料颗粒的蚀变层中的转变,并增加了Ca,K和P含量。结论:十年HVGIC标本的KHN值与180天储存期的对照组值相似。除了一个10年的标本可以看到一个改变的层外,在所评估的深度之间化学成分是相似的。

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