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Evaluation of the curing depth of two translucent composite materials using a halogen and two LED curing units.

机译:使用卤素和两个LED固化单元评估两种半透明复合材料的固化深度。

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摘要

This in vitro study evaluated the influence of one halogen and two light-emitting diode (LED) curing units on the curing depth of a conventional hybrid and two translucent resin composites by measuring the Knoop microhardness. In the first part of the study, a conventional hybrid resin composite and three curing units (one halogen: 40 s polymerization time, two LEDs: 10 and 20 s) were used. Ten cylindrical resin composite samples were prepared for each curing unit and each polymerization time tested. After polymerization, the soft part of the samples was removed. The samples were embedded in a polyacrylic resin and separated in the middle towards the direction, top-bottom. On the section plane, Knoop microhardness measurements were performed every 1 mm, starting at 0.5 mm under the surface. In the second part of the study, two translucent resin composites and a conventional hybrid composite resin were cured with the three curing units, and the microhardness was measured as mentioned above. The difference between the curing units tested was found statistically significant (p = 0.0009), as well as the difference between the materials concerning curing depth (p = 0.0001). Both translucent materials achieved microhardness values equal to the 80% of the surface values, in depths 3.5-5.5 mm, depending on the curing units used.
机译:这项体外研究通过测量努氏显微硬度,评估了一个卤素和两个发光二极管(LED)固化单元对常规混合材料和两种半透明树脂复合材料固化深度的影响。在研究的第一部分中,使用了常规的杂化树脂复合材料和三个固化单元(一个卤素:40 s聚合时间,两个LED:10和20 s)。对于每个固化单元准备十个圆柱形树脂复合材料样品,并测试每个聚合时间。聚合后,除去样品的软部分。将样品包埋在聚丙烯酸酯树脂中,并在中间朝顶部的方向分开。在剖面上,从表面下的0.5 mm开始,每1 mm进行一次努氏显微硬度测量。在研究的第二部分中,使用三个固化单元固化了两个半透明树脂复合材料和常规的杂化复合树脂,并如上所述测量了显微硬度。发现测试的固化单元之间的差异具有统计学显着性(p = 0.0009),并且材料之间的固化深度差异(p = 0.0001)。两种半透明材料在3.5-5.5 mm的深度内均达到等于表面值80%的显微硬度值,具体取决于所使用的固化单位。

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