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Effect of different blue light-curing systems on the polymerization of nanocomposite resins.

机译:不同的蓝色光固化体系对纳米复合树脂聚合的影响。

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OBJECTIVES: To examine the degree of polymerization of nanocomposite resins to test the possibility of using a diode-pumped solid state (DPSS) laser as a light-curing source on behalf of the argon laser. BACKGROUND: DPSS lasers emitting light at 473 nm have many advantages over argon lasers on account of their compactness, efficiency, and price. MATERIALS AND METHODS: A 473-nm DPSS laser (LAS) was used with three other light-curing units (a quartz-tungsten-halogen lamp-based unit, a light emitting diode-based unit, and a xenon lamp-based plasma arc unit) to polymerize dental nanocomposite resins. The degree of polymerization was determined by measuring the microhardness, maximum polymerization shrinkage, and increase in temperature during and after light curing. The results were analyzed statistically. RESULTS: The specimens light cured with LAS showed a microhardness that was similar or superior to the values obtained from the specimens cured with the other light-curing units and maximum polymerization shrinkage values. The maximum increase in temperature by LAS was much lower than that induced by the other light-curing units. CONCLUSION: LAS effectively polymerizes dental nanocomposite resins to an extent similar to that of recently available light-curing units. The results suggest that LAS has good potential as a light source for light curing of dental nanocomposite resins.
机译:目的:研究纳米复合树脂的聚合度,以测试使用二极管泵浦固态(DPSS)激光器代替氩激光器作为光固化源的可能性。背景:由于其紧凑性,效率和价格,在473 nm处发射光的DPSS激光器比氩激光器具有许多优势。材料与方法:473 nm DPSS激光器(LAS)与其他三个光固化单元(基于石英钨卤素灯的单元,基于发光二极管的单元和基于氙气灯的等离子弧)一起使用单元)聚合牙科纳米复合树脂。聚合度通过测量光固化期间和之后的显微硬度,最大聚合收缩率和温度升高来确定。对结果进行统计学分析。结果:用LAS光固化的样品显示出的显微硬度与使用其他光固化单元固化的样品所获得的值相近或更高,并且具有最大的聚合收缩率。 LAS引起的最大温度升高远低于其他光固化单元引起的温度升高。结论:LAS有效地聚合了牙科纳米复合树脂,其程度与最近可用的光固化单元相似。结果表明,LAS具有作为牙科纳米复合树脂光固化光源的良好潜力。

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