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Two-year color changes of light-cured composites: influence of different light-curing units.

机译:光固化复合材料的两年颜色变化:不同光固化单元的影响。

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This study determined color changes in a composite cured with various types of curing units after two years. A hybrid (Clearfil AP-X) composite was cured with a conventional halogen, a high intensity halogen, a plasma arc and a light emitting diode unit. The specimens were stored in light-proof boxes after the curing procedure to avoid further exposure to light and stored in 37 degrees C in 100% humidity. Colorimetric values of the specimens immediately after curing and after two years were measured using a colorimeter. The CIE 1976 L*a*b color system was used to determine color differences. Differences from baseline were calculated as deltaE*ab. Data were analyzed with two-way analysis of variance (p<0.05). The deltaE*ab values varied significantly, depending on the curing unit used. The specimens cured with a plasma arc curing unit induced significantly higher color changes than any other specimen and the color differences were also visually appreciable by the non-skilled operator (deltaE*ab >2.5). The specimens cured with a high intensity halogen curing unit produced the lowest color change; however, there were no statistically significant differences among the color changes of specimens cured with conventional halogen, high intensity halogen and the light emitting diode unit, and the color changes were not clinically relevant (deltaE*ab <2.5). The results of this study suggest that composite materials undergo measurable changes due to curing unit exposure. The specimens cured with a plasma arc light showed the highest color changes as compared to specimens cured with other curing units.
机译:这项研究确定了两年后用各种类型的固化单元固化的复合材料的颜色变化。用常规卤素,高强度卤素,等离子弧和发光二极管单元固化混合(Clearfil AP-X)复合材料。为了避免进一步暴露在光下,样品应在固化步骤后存储在不透光的盒子中,并在37°C的100%湿度下存储。使用比色计测量固化后和两年后样品的比色值。使用CIE 1976 L * a * b颜色系统确定色差。与基线的差异计算为deltaE * ab。数据采用方差的双向分析(p <0.05)。取决于所使用的固化单元,ΔE* ab值变化很大。用等离子弧固化装置固化的标本比其他任何标本所引起的显着更高的颜色变化,并且非熟练操作人员在视觉上也可以看到色差(deltaE * ab> 2.5)。用高强度卤素固化装置固化的样品产生最低的颜色变化。然而,用常规卤素,高强度卤素和发光二极管单元固化的样品的颜色变化在统计学上没有显着差异,并且颜色变化与临床无关(deltaE * ab <2.5)。这项研究的结果表明,由于固化单元的暴露,复合材料会发生可测量的变化。与用其他固化单元固化的样品相比,用等离子弧光固化的样品显示出最大的颜色变化。

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