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首页> 外文期刊>Journal of Research in Dental Sciences >An Experimental Study on the Effect of Heptane Food Simulating Liquid on the Micro-hardness of Four Different Resin Composites
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An Experimental Study on the Effect of Heptane Food Simulating Liquid on the Micro-hardness of Four Different Resin Composites

机译:庚烷模拟食品液对四种不同树脂复合材料显微硬度影响的实验研究

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Aim and Background: One of the problems encountered in the restorative dentistry is the degradation of composites in the presence of foods, saliva, and their interaction. In view of that, this study evaluates the effect of Heptane food simulating liquid on the micro-hardness of four different Z250, Z350XT, P60, and P90 composites.Materials and Methods: In this experimental-in vitro study, 20 disks of 2 mm in height and 5 mm in diameter are prepared from each composite (leading to a total number of 80 samples). Using an LED light cure unit, the specimens are carefully polymerized for 40 seconds under a 1000 mw/cm2 light radiation and then immediately polished under water spray by means of subsequent application of coarse to super-fine aluminum oxide disks. These samples are immersed in a 37ºC distilled water dark tank for 24 hours. Next, samples of each composite are randomly put into two equal groups of ten. The micro-hardness of each sample is then measured in a Vickers microhardness testing machine. Next, keeping temperature at 37 ºC, the first (control) group and the second (test) group are immersed for 7 days in distilled water and Heptane food simulating liquid, respectively, and the micro-hardness is re-evaluated for each disk. Finally, the recorded data are analyzed using one-way analysis of variance (ANOVA) and Tukey's multiple comparison tests with significance level of lower than 0.05 in SPSS V20 software.Results: It is found that immersing composite disks in distilled water meaningfully increases the micro-hardness of samples ( P0.05). The same finding has been confirmed for the P90 disks which are kept in Heptane.(p=0.01) The micro-hardness of other composites ( Z250, Z350XT, and P60) is also increased in the presence of Heptane but none of them was significant ( P0.05). Conclusions: The micro-hardness of samples is increased in the presence of both distilled water and Heptane food simulating liquid but the amount of this increase totally depends on the type of composite and also the sample storage environment.
机译:目的和背景:在修复牙科中遇到的问题之一是在食物,唾液及其相互作用下复合材料的降解。有鉴于此,本研究评估了庚烷食品模拟液对四种不同的Z250,Z350XT,P60和P90复合材料的显微硬度的影响。材料和方法:在这项体外实验中,使用20个2 mm的盘片由每种复合材料制备高度为5毫米,直径为5毫米的样品(总共80个样品)。使用LED光固化装置,将样品在1000 mw / cm2的光辐射下小心地聚合40秒,然后在水喷雾下立即抛光,随后再使用粗的至超细的氧化铝盘。将这些样品浸入37ºC蒸馏水深色水箱中24小时。接下来,将每种复合材料的样本随机分为两组,每组十个。然后在维氏显微硬度测试仪中测量每个样品的显微硬度。接下来,将温度保持在37ºC,将第一组(对照组)和第二组(测试)分别浸入蒸馏水和庚烷食品模拟液中7天,并重新评估每个圆盘的显微硬度。最后,使用SPSS V20软件使用单向方差分析(ANOVA)和显着性水平低于0.05的Tukey多重比较测试对记录的数据进行分析。结果:发现将复合圆盘浸入蒸馏水中会显着提高微观-样品的硬度(P <0.05)。对于保存在庚烷中的P90圆盘,也确认了相同的发现。(p = 0.01)在庚烷的存在下,其他复合材料(Z250,Z350XT和P60)的显微硬度也有所提高,但它们均不显着(P> 0.05)。结论:在存在蒸馏水和庚烷食品模拟液的情况下,样品的显微硬度有所提高,但这种增加的量完全取决于复合材料的类型以及样品的存储环境。

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