Ozturk Bora, Cobanoglu Nevin, Cetin Ali Rıza, Gunduz Beniz
Department of Restorative Dentistry, Faculty of Dentistry, Selcuk University, Konya, TURKIYE.
Eur J Dent. 2013 Jan;7(1):102-9.
The objective of this study was to compare the conversion degree of six different composite materials (Filtek Z 250, Filtek P60, Spectrum TPH, Pertac II, Clearfil AP-X, and Clearfil Photo Posterior) using three different light sources (blue light-emitting diode [LED], plasma arc curing [PAC], and conventional halogen lamp [QTH]).
Composites were placed in a 2 mm thick and 5 mm diameter Teflon molds and light cured from the top using three methods: LED for 40 s, PAC for 10 s, and QTH for 40 s. A Fourier Transform Infrared Spectroscopy (FTIR) was used to evaluate the degree of conversion (DC) (n=5). The results were analyzed with two-way analysis of variance and Tukey HSD test.
DC was significantly influenced by two variables, light source and composite (P<.05). QTH revealed significantly higher DC values than LED (P<.05). However, there were no significant differences between DC values of QTH and PAC or between DC values of LED and PAC (P>.05). The highest DC was observed in the Z 250 composite specimens following photopolymerization with QTH (70%). The lowest DC was observed in Clearfil Photo Posterior composite specimens following photo-polymerization with LED (43%).
The DC was found to be changing according to both light sources and composite materials used. Conventional light halogen (QTH) from light sources and Filtek Z 250 and Filtek P 60 among composite materials showed the most DC performance.
本研究的目的是比较六种不同复合材料(Filtek Z 250、Filtek P60、Spectrum TPH、Pertac II、Clearfil AP-X和Clearfil Photo Posterior)在三种不同光源(蓝光发光二极管[LED]、等离子弧固化[PAC]和传统卤素灯[QTH])下的固化转化率。
将复合材料放入2毫米厚、5毫米直径的聚四氟乙烯模具中,使用三种方法从顶部进行光固化:LED照射40秒、PAC照射10秒、QTH照射40秒。采用傅里叶变换红外光谱(FTIR)评估固化转化率(DC)(n = 5)。结果采用双向方差分析和Tukey HSD检验进行分析。
固化转化率受到光源和复合材料这两个变量的显著影响(P <.05)。QTH显示出的固化转化率值显著高于LED(P <.05)。然而,QTH和PAC的固化转化率值之间或LED和PAC的固化转化率值之间没有显著差异(P >.05)。在用QTH光聚合后的Z 250复合材料试样中观察到最高的固化转化率(70%)。在用LED光聚合后的Clearfil Photo Posterior复合材料试样中观察到最低的固化转化率(43%)。
发现固化转化率会因所使用的光源和复合材料的不同而变化。光源中的传统卤素灯(QTH)以及复合材料中的Filtek Z 250和Filtek P 60表现出最高的固化转化率。