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Dental composite polymerization: a three different sources comparison

机译:牙科复合聚合:三种不同来源的比较

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The introduction of photo-activators, with absorption spectra in the violet region, in composite resins raised interest in the use of 405 nm diode lasers for polymerization. The purpose of this research is the evaluation of the resins polymerization by means of violet diode laser compared to traditional lamps. Two different resins have been used for the experiments: Filtek Supreme XT flow (3M ESPE, USA) and Tetric Evo flow (Ivoclar, Vivadent). The photo-activator used is Camphoroquinone, alone, or in combination with Lucirin TPO. The resins have been cured with an halogen lamp (Heliolux DXL, Vivadent Ivoclar, Austria), a broadband LED curing light (Valo Ultradent, USA) and a 405 nm laser (Euphoton, Italy). The measure of cure depth, of the volumetric shrinkage, and the conversion degree (DC%) of the double bond during the curing process have been evaluated. A composite layer of 3 mm was cured in Filtek Supreme resin (Camphoroquinone activator), lower if compared to the use of the other two light sources. Tests on Tetric Evo (Camphoroquinone + Lucirin) didn't show any improvement of the use of laser compared to the halogen lamp and the broadband LED. By measuring the volumetric shrinkage the laser induced the lower change with both the composites, In terms of DC% the lower performance was obtained with the laser. Considering that the polymerization process strongly depends on the kind of composite used the effectiveness of 405 nm laser proved to be lower than halogen lamps and broadband LEDs.
机译:在复合树脂中引入具有紫色区域吸收光谱的光活化剂引起了人们对使用405 nm二极管激光器进行聚合的兴趣。这项研究的目的是与传统灯相比,通过紫光二极管激光器评估树脂的聚合反应。实验中使用了两种不同的树脂:Filtek Supreme XT流程(3M ESPE,美国)和Tetric Evo流程(Ivoclar,Vivadent)。所用的光活化剂是樟脑醌,单独使用或与Lucirin TPO组合使用。用卤素灯(Heliolux DXL,奥地利Vivadent Ivoclar),宽带LED固化灯(Valo Ultradent,美国)和405 nm激光(意大利Euphoton)固化树脂。已经评估了固化深度,体积收缩率以及固化过程中双键的转化度(DC%)的量度。在Filtek Supreme树脂(樟脑醌活化剂)中固化3毫米的复合层,与使用其他两种光源相比,该复合层的厚度更低。与卤素灯和宽带LED相比,在Tetric Evo(樟脑醌+琉璃素)上进行的测试并未显示出激光使用方面的任何改善。通过测量体积收缩率,激光诱导了两种复合材料的较低变化。就DC%而言,激光获得了较低的性能。考虑到聚合过程在很大程度上取决于所使用的复合材料的种类,事实证明,405 nm激光的有效性低于卤素灯和宽带LED。

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