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Influence of physical assessment of different light-curing units on irradiance and composite microhardness top/bottom ratio

机译:不同光固化单元的物理评估对辐照度和复合显微硬度上/下比的影响

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The aim of this study was to evaluate the influence of the physical assessment of different light-curing units from 55 dental offices on the irradiance and composite microhardness top/bottom ratio, and the influence of the radiometers for LED or QTH light sources on irradiance measurement. The irradiance of each light-curing unit was evaluated with two radiometers, either for LED or QTH light. A questionnaire regarding the type of source (LED or QTH), time of use, date of last maintenance and light-curing performance assessment applied. The physical assessments were evaluated regarding damage or debris on the light tip. For each light-curing unit, three composite specimens were made (diameter = 7 mm; thickness = 2 mm) with polymerizing time of 20 s, in order to perform the microhardness (Knoop) test. Data were analyzed by Kruskal-Wallis and Dunn test (alpha = 0.01). There was wide variation in irradiance (0-1000 mW/cm(2)). Approximately 50 % of the light-curing units presented radiation lower than 300 mW/cm(2); 10 % of light-curing units, especially those with LED source, presented values higher than 800 mW/cm(2), and 43 % of light-curing units worked with adequate irradiance between 301 and 800 mW/cm(2). In almost 60 % of cases, no maintenance of light-curing units was performed in a period of 3 to 10 years. The age of the light-curing units and the use of inadequate tips interfered negatively in irradiance. The data emphasize the importance of periodic maintenance of light-polymerizing, light-curing units.
机译:这项研究的目的是评估来自55个牙科诊所的不同光固化单元的物理评估对辐照度和复合显微硬度上下比的影响,以及LED或QTH光源的辐射计对辐照度测量的影响。 。用两个辐射计针对LED或QTH光评估每个光固化单元的辐照度。一份有关光源类型(LED或QTH),使用时间,最后维护日期和光固化性能评估的调查表。对灯头上的损坏或碎片进行了物理评估。对于每个光固化单元,制备三个复合样品(直径= 7 mm;厚度= 2 mm),聚合时间为20 s,以进行显微硬度(努氏)测试。数据通过Kruskal-Wallis和Dunn检验进行分析(α= 0.01)。有很大的辐照度差异(0-1000 mW / cm(2))。大约50%的光固化单元的辐射低于300 mW / cm(2)。 10%的光固化单元(尤其是带有LED光源的光固化单元)的值高于800 mW / cm(2),而43%的光固化单元在301至800 mW / cm(2)的辐照度下工作。在近60%的情况下,在3到10年的时间内没有对光固化单元进行维护。光固化单元的年龄和使用不适当的笔尖会对辐照度产生负面影响。数据强调了定期维护光聚合光固化单元的重要性。

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