Department of Conservative Dentistry and Dental Science Research Institute, School of Dentistry, Chonnam National University, Gwangju, Korea.
J Appl Oral Sci. 2012 Sep-Oct;20(5):576-80. doi: 10.1590/s1678-77572012000500014.
The aim of this study was to evaluate the effect of multiple layers of an infection control barrier on the micro-hardness of a composite resin.
One, two, four, and eight layers of an infection control barrier were used to cover the light guides of a high-power light emitting diode (LeD) light curing unit (LCU) and a low-power halogen LCU. The composite specimens were photopolymerized with the LCUs and the barriers, and the micro-hardness of the upper and lower surfaces was measured (n=10). The hardness ratio was calculated by dividing the bottom surface hardness of the experimental groups by the irradiated surface hardness of the control groups. The data was analyzed by two-way ANOVA and Tukey's HSD test.
The micro-hardness of the composite specimens photopolymerized with the LED LCU decreased significantly in the four- and eight-layer groups of the upper surface and in the two-, four-, and eight-layer groups of the lower surface. The hardness ratio of the composite specimens was <80% in the eight-layer group. The micro-hardness of the composite specimens photopolymerized with the halogen LCU decreased significantly in the eight-layer group of the upper surface and in the two-, four-, and eight-layer groups of the lower surface. However, the hardness ratios of all the composite specimens photopolymerized with barriers were <80%.
The two-layer infection control barrier could be used on high-power LCUs without decreasing the surface hardness of the composite resin. However, when using an infection control barrier on the low-power LCUs, attention should be paid so as not to sacrifice the polymerization efficiency.
本研究旨在评估多层感染控制屏障对复合树脂显微硬度的影响。
将一层、两层、四层和八层感染控制屏障分别覆盖在大功率发光二极管(LED)光固化器(LCU)和低功率卤素 LCU 的导光器上。用 LCUs 和屏障对复合试件进行光聚合,测量上下表面的显微硬度(n=10)。用实验组底面硬度除以对照组照射面硬度来计算硬度比值。采用双因素方差分析和 Tukey 的 HSD 检验对数据进行分析。
LED LCU 光聚合的复合试件上表面的四层和八层组以及下表面的两层、四层和八层组的显微硬度显著降低。八层组的复合试件硬度比值<80%。卤素 LCU 光聚合的复合试件上表面的八层组以及下表面的两层、四层和八层组的显微硬度显著降低。然而,所有用屏障光聚合的复合试件的硬度比值均<80%。
两层感染控制屏障可用于大功率 LCUs 而不会降低复合树脂的表面硬度。然而,在低功率 LCUs 上使用感染控制屏障时,应注意不要牺牲聚合效率。