Department of Biomaterials Science, Graduate School of Medical and Dental Sciences, Kagoshima University, 8-35-1 Sakuragaoka, Kagoshima 890-8544, Japan.
Dent Mater J. 2011;30(2):151-7. doi: 10.4012/dmj.2010-114. Epub 2011 Mar 4.
A method for improving the uniformity of the radiation light from dental light-curing units (LCUs), and the effect on the polymerization of light-activated composite resin are investigated. Quartz-tungsten halogen, plasma-arc, and light-emitting diode LCUs were used, and additional optical elements such as a mixing tube and diffusing screen were employed to reduce the inhomogeneity of the radiation light. The distribution of the light intensity from the light guide tip was measured across the guide tip, as well as the distribution of the surface hardness of the light-activated resin emitted with the LCUs. Although the additional optical elements caused 13.2-25.9% attenuation of the light intensity, the uniformity of the light intensity of the LCUs was significantly improved in the modified LCUs, and the uniformity of the surface hardness of the resin was also improved. Our results indicate that the addition of optical elements to the LCU may be a simple and effective method for reducing inhomogeneity in radiation light from the LCUs.
研究了一种提高牙科光固化机(LCU)辐射光均匀性的方法,以及对光固化复合树脂聚合的影响。使用了石英钨卤素、等离子弧和发光二极管 LCU,并使用了混合管和扩散屏等附加光学元件来降低辐射光的不均匀性。测量了从导光尖端发出的光强度在导光尖端上的分布,以及与 LCU 一起发射的光活性树脂的表面硬度的分布。尽管附加光学元件导致光强度衰减了 13.2-25.9%,但在改良后的 LCU 中,光强度的均匀性得到了显著提高,树脂表面硬度的均匀性也得到了提高。我们的结果表明,向 LCU 添加光学元件可能是一种简单而有效的方法,可以减少 LCU 辐射光的不均匀性。