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Performance of two blue light-emitting-diode dental light curing units with distance and irradiation-time

机译:两个蓝色发光二极管牙科光固化机在距离和照射时间方面的性能

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Objectives. To assess the performance of two blue light-emitting-diode (LED) curing units, in terms of their spectral output and irradiance and the depth of cure (d_(cure)) produced in standard hybrid and modified composites, compared with a conventional quartz tungsten halogen (QTH) light curing unit. Methods. The following light curing units (LCUs) were studied: Elipar-Freelight-1 LED (LED-1) 3 M-ESPE, Ultralume-2 LED (LED-2) Optident, and the Optilux-500 QTH (QTH-1) Sybron-Kerr. For each LCU, using a UV-visible spectrophotometer, the output spectrum was measured and the irradiance of emitted light as a function of source-detector distance. Three composites were studied of similar formulation but differing in their initiator concentrations and/or opacity. These were: Tetric Ceram (A3), Tetric Ceram HB containing an additional photoinitiator responding to ~435 nm (A3) and Tetric Ceram Bleach (L). d_(cure) was measured using a calibrated digital needle-penetrometer, as a function of source-specimen distance and for irradiance periods of 10, 20 and 40 s. Results. Each unit delivered a single peak in the blue region of the visible spectrum. The wavelength maxima for LED-1, LED-2 and QTH-1 were 486.4, 458.2 and 495.2 nm, respectively. Cure-depth (d_(cure)) values varied significantly (p < 0.001) with irradiance times and source-specimen distance for both LED and QTH sources. The percentage reduction in d_(cure) values resulting from LED versus QTH irradiance increased with source-specimen distance. Significance. The LED-LCUs had an energy-efficient spectral output for conventional composite curing but had a lower irradiance compared with the QTH-LCU, leading to reduced performance in depths of cure. Design improvements to provide greater irradiance from the LED-1 and to a lesser extent LED-2, should result in increased performance.
机译:目标。为了评估两个蓝色发光二极管(LED)固化单元的性能,其光谱输出和辐照度以及与传统石英相比,在标准混合和改性复合材料中产生的固化深度(d_(cure))卤化钨(QTH)光固化单元。方法。研究了以下光固化单元(LCU):Elipar-Freelight-1 LED(LED-1)3 M-ESPE,Ultralume-2 LED(LED-2)Optident和Optilux-500 QTH(QTH-1)Sybron克尔对于每个LCU,使用紫外可见分光光度计测量输出光谱,并将发射光的辐照度作为源探测器距离的函数。研究了三种具有相似配方但引发剂浓度和/或不透明性不同的复合材料。它们是:Tetric Ceram(A3),Tetric Ceram HB包含对〜435 nm响应的附加光引发剂(A3)和Tetric Ceram Bleach(L)。 d_(固化)是使用校准的数字针刺仪测量的,它是光源-样品距离的函数,并且在10、20和40 s的辐照时间段内。结果。每个单元在可见光谱的蓝色区域中提供一个峰。 LED-1,LED-2和QTH-1的最大波长分别为486.4、458.2和495.2 nm。对于LED和QTH光源,固化深度(d_(cure))值随辐照时间和光源标本距离而显着变化(p <0.001)。 LED与QTH辐照度导致的d_(固化)值降低的百分比随光源-样品距离的增加而增加。意义。 LED-LCU具有常规复合固化的高能效光谱输出,但与QTH-LCU相比,辐照度较低,导致固化深度的性能下降。为了提供更大的LED-1辐照度和较小程度的LED-2辐照度而进行的设计改进应会提高性能。

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