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Effect of power density of curing unit, exposure duration, and light guide distance on composite depth of cure.

机译:固化单元的功率密度,曝光时间和光导距离对复合固化深度的影响。

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This in vitro study compared the depth of cure obtained with six quartz tungsten halogen and light-emitting diode curing units at different exposure times and light tip-resin composite distances. Resin composite specimens (Tetric Ceram, A3; diameter 4 mm, height 6 mm) were exposed from 0-, 3-, and 6-mm distance. The curing units (200-700 mW/cm2) were used for standard (20 and 40 s), pulse-delay mode (initial exposure of 3 s at 200 mW/cm2, followed by a resting period of 3 min and a final exposure of 10 or 30 s at 600 mW/cm2), or soft-start curing (40 s; exponential ramping). Curing depth was determined by measurement of Wallace hardness for each half millimeter starting at 0.5 mm from the top surface. For each specimen, a mean H(W) value was calculated from the H(W) values determined at the depths of 2.0 mm and less (0.5, 1.0, 1.5, and 2.0 mm, respectively). The depth of cure for each specimen was found by determining the greatest depth before an H(W) value exceeding the minimal H(W) value by 25% occurred. For all curing units, an increase in exposure time led to significantly higher depth of cure. Increasing the light tip-resin composite distance significantly reduced the depth of cure. With a light tip-resin composite distance of 6 mm, median values of depth of cure varied between 2.0 and 3.5 mm following a 20-s (or 3+10 s) exposure and between 3.0 and 4.5 mm following a 40-s (or 3+30 s) exposure. The composite situated above the depth of cure value cured equally well with all curing units. At both exposure times, Luxomax resulted in the significantly lowest depth of cure, and Astralis 7 yielded significantly higher depth. At both exposure times, a significant linear correlation was found between the determined power densities of the curing units and the pooled depth of cure values obtained. It seems that for the resin composite tested, the recommended exposure time of 40 s per 2-mm increment may be reduced to 20 s, or that increments may be increased from 2 to 3.5 mm. It may be that the absolute values of depth of cure found are material specific, but we believe that the relationships found between curing units, between exposure times, and between light guide distances are universal.
机译:这项体外研究比较了六个石英卤素卤素灯和发光二极管固化单元在不同的曝光时间和尖端树脂复合距离下获得的固化深度。树脂复合材料样本(Tetric Ceram,A3;直径4毫米,高度6毫米)从0、3和6毫米的距离暴露。将固化单元(200-700 mW / cm2)用于标准(20和40 s),脉冲延迟模式(200 mW / cm2的初始曝光时间为3 s,然后静置3分钟,最后曝光600 mW / cm2时10或30 s)或软启动固化(40 s;指数上升)。固化深度是通过测量距顶部表面0.5毫米开始每半毫米的华莱士硬度来确定的。对于每个样本,从在2.0毫米或更小深度(分别为0.5、1.0、1.5和2.0毫米)处确定的H(W)值计算出平均H(W)值。通过确定H(W)值超过最小H(W)值25%之前的最大深度来确定每个样品的固化深度。对于所有固化单元,暴露时间的增加导致固化深度明显增加。增加轻质尖端树脂复合材料的距离会显着降低固化深度。如果尖端树脂复合材料的距离为6 mm,则在20 s(或3 + 10 s)曝光后,固化深度的中值在2.0到3.5 mm之间变化,在40 s(或3s)以后在3.0到4.5 mm之间变化3 + 30 s)曝光。位于固化值深度以上的复合材料与所有固化单元均能很好地固化。在两个暴露时间,Luxomax的固化深度均显着最低,而Astralis 7的固化深度则显着较高。在两个暴露时间,在确定的固化单元的功率密度与所获得的固化值的合并深度之间发现显着的线性相关性。似乎对于测试的树脂复合材料,建议的每2毫米增量40 s的曝光时间可以减少到20 s,或者增量可以从2毫米增加到3.5毫米。可能发现的固化深度的绝对值是特定于材料的,但是我们认为固化单元之间,曝光时间之间以及光导距离之间的关系是通用的。

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