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Polymerization of a dual-cured cement through ceramic: LED curing light vs halogen lamp

机译:通过陶瓷聚合双固化水泥:LED固化灯与卤素灯

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The aim of this study was to investigate the influence of light source, LED unit and halogen lamp (HL), on the effectiveness of Enforce dual-cured cement cured under a ceramic disc. Three exposure times (60, 80 and 120 s) were also evaluated. Two experimental groups, in which the polymerization of the dual-cured cement was performed through a ceramic disc, and two control groups, in which the polymerization of the dual-cured cement was performed directly without presence of ceramic disc were subdivided into three subgroups (three different exposure times), with five specimens each: G1A- HL 60s; G1B- HL 80s; G1C- HL 120s; G2A- LED 60s; G2B- LED 80s; G2C- LED 120s; and control groups: G3A- HL 60s; G3B- HL 80s; G3C- HL 120s; G4A- LED 60s; G4B- LED 80s and G4C- LED 120s. Cement was applied in a steel matrix (4mm diameter, 1.2mm thickness). In the experimental groups, a ceramic disc was placed on top. The cement was light-cured through the ceramic by a HL and LED, however, the control groups were cured without the ceramic disc. The specimens were stored in a light-proof container at 37oC for 24 hours, then Vickers hardness was determined. A four-way ANOVA and Tukey test (p£ 0.05) were performed. All specimens cured by LED for 60s showed inferior values compared with the halogen groups. In general, light-curing by LED for 80s and 120s was comparable to halogen groups (60s and 80s) and their control groups. LED technology can be viable for light-curing through conventional ceramic indirect restorations, when curing time is increased in relation to HL curing time.
机译:这项研究的目的是研究光源,LED单元和卤素灯(HL)对在陶瓷盘下固化的Enforce双固化水泥的有效性的影响。还评估了三个曝光时间(60、80和120 s)。通过陶瓷盘进行双固化水泥聚合的两个实验组和不使用陶瓷盘直接进行双固化水泥聚合的两个对照组分为三个亚组(三种不同的曝光时间),每个都有五个标本:G1A- HL 60s; G1B- HL 80年代; G1C- HL 120s; G2A- LED 60s; G2B- LED 80s; G2C- LED 120s;对照组:G3A-HL 60s; G3B- HL 80s; G3C- HL 120s; G4A- LED 60s; G4B- LED 80s和G4C- LED 120s。将水泥涂在钢基质中(直径4mm,厚度1.2mm)。在实验组中,将陶瓷盘置于顶部。水泥通过HL和LED通过陶瓷进行光固化,但是对照组在没有陶瓷盘的情况下固化。将样品在37oC的避光容器中存放24小时,然后测定维氏硬度。进行了四向方差分析和Tukey检验(p £ 0.05)。与卤素基团相比,所有通过LED固化60s的样品均显示出较差的值。通常,LED光固化80s和120s与卤素基团(60s和80s)及其对照组相当。当相对于HL固化时间增加固化时间时,LED技术对于通过常规陶瓷间接修复体进行光固化可能是可行的。

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