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首页> 外文期刊>Operative dentistry >Battery Charge Affects the Stability of Light Intensity from Light-emitting Diode Light-curing Units
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Battery Charge Affects the Stability of Light Intensity from Light-emitting Diode Light-curing Units

机译:电池电量影响来自发光二极管光固化单元的光强度的稳定性

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摘要

This study investigated the influence of battery charge levels on the stability of light-emitting diode (LED) curing-light intensity by measuring the intensity from fully charged through fully discharged batteries. The micro-hardness of resin composites polymerized by the light-curing units at various battery charge levels was measured. The light intensities of seven fully charged battery LED light-curing units-1) LY-A180, 2) Bluephase, 3) Woodpecker, 4) Demi Plus, 5) Saab II, 6) Elipar S10, and 7) MiniLED-were measured with a radiometer (Kerr) after every 10 uses (20 seconds per use) until the battery was discharged. Ten 2-mm-thick cylindrical specimens of A3 shade nanofilled resin composite (PREMISE, Kerr) were prepared per LED light-curing unit group. Each specimen was irradiated by the fully charged light-curing unit for 20 seconds. The LED light-curing units were then used until the battery charge fell to 50%. Specimens were prepared again as described above. This was repeated again when the light-curing units' battery charge fell to 25% and when the light intensity had decreased to 400 mW/cm(2). The top/bottom surface Knoop hardness ratios of the specimens were determined. The microhardness data were analyzed by one-way analysis of variance with Tukey test at a significance level of 0.05. The Pearson correlation coefficient was used to determine significant correlations between surface hardness and light intensity. We found that the light intensities of the Bluephase, Demi Plus, and Elipar S10 units were stable. The intensity of the MiniLED unit decreased slightly; however, it remained above 400 mW/ cm(2). In contrast, the intensities of the LY-A180, Woodpecker, and Saab II units decreased below 400 mW/cm(2). There was also a significant decrease in the surface microhardnesses of the resin composite specimens treated with MiniLED, LY-A180, Woodpecker, and Saab II. In conclusion, the light intensity of several LED light-curing units decreased as the battery was discharged, with a coincident reduction in the units' ability to polymerize resin composite. Therefore, the intensity of an LED light-curing unit should be evaluated during the life of its battery charge to ensure that sufficient light intensity is being generated.
机译:该研究通过测量通过完全放电的电池来调测通过完全充电的强度来研究电池充电水平对发光二极管(LED)固化光强度的稳定性的影响。测量通过在各种电池电荷水平下通过光固化单元聚合的树脂复合材料的微硬度。七个完全充电电池LED光固化单元-1)LY-A180,2)Bluephace,3)啄木鸟,4)Demi Plus,5)Saab II,6)Elipar S10和7)测量 - 被测量每10种用过的辐射计(kerr)(每次使用20秒),直到电池放电。每LED光固化单元组制备10个2毫米厚的A3遮阳纳米氧化物树脂复合材料(前提,克尔)。通过完全带电的光固化单元照射每个样品20秒。然后使用LED光固化单元直至电池电量降至50%。如上所述再次制备标本。当光固化单元的电池电量降至25%时再次重复,当光强度降低至400mW / cm(2)时。测定样品的顶/底表面康氏硬度比。通过单向分析与Tukey测试的单向分析进行分析,显着分析了0.05的显着性水平。 Pearson相关系数用于确定表面硬度与光强度之间的显着相关性。我们发现Bluephase,Demi Plus和Elipar S10单元的光强度稳定。密闭装置的强度略微下降;但是,它保持在400 mW / cm以上(2)以上。相比之下,LY-A180,啄木鸟和Saab II单元的强度降低以下400 mW / cm(2)。用碎片,LY-A180,啄木鸟和Saab II处理的树脂复合标本的表面显微硬度也显着降低。总之,当电池排出时,几个LED光固化单元的光强度降低,单位的聚合树脂复合材料的能力一致减少。因此,应在其电池充电的寿命期间评估LED光固化单元的强度,以确保产生足够的光强度。

著录项

  • 来源
    《Operative dentistry》 |2017年第5期|共8页
  • 作者

    Tongtaksin A.; Leevailoj C.;

  • 作者单位

    Chulalongkorn Univ Dept Operat Dent Fac Dent Bangkok Thailand;

    Chulalongkorn Univ Esthet Restorat &

    Implant Dent Program Fac Dent Bangkok Thailand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

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