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首页> 外文期刊>European Journal of Dentistry >Microhardness of composite resin cured through different primary tooth thicknesses with different light intensities and curing times: In vitro study
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Microhardness of composite resin cured through different primary tooth thicknesses with different light intensities and curing times: In vitro study

机译:通过不同的牙齿强度,不同的光强度和固化时间固化的复合树脂的显微硬度:体外研究

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摘要

Objective: The aim of this study was to evaluate the effect of increased exposure time and light intensity on microhardness of cured composite through different thicknesses of tooth structure in primary teeth. Materials and Methods: One hundred and seventy cylindrical resin composite specimens were prepared. All specimens were divided into 17 experimental and control groups. “Light-emitting diode” light curing unit (LCU) applied directly or through 1, 2, and 3 mm thicknesses tooth slices for experimental groups. The irradiation protocols were 25 and 50 s at 650 mW/cm2 and 15 and 30 s at 1100 mW/cm2. The “quartz-tungsten-halogen” LCU (400 mW/cm2) for 40 s was used in control group. Microhardness was measured by the Vickers hardness test. Results: Indirectly cured specimens and those cured through a 1 mm thick tooth structure, an increase in intensity caused hardness drop. In the specimens cured through 2 and 3 mm thick tooth structures, increased intensity and/or exposure time did not show any appropriate changes on microhardness. Conclusion: Irradiation through a 1.0 mm thick tooth slice resulted in reduced microhardness although it was still within the clinically acceptable level. The hardness values of the specimens cured through 2 or 3 mm thick tooth slices fell below the clinically acceptable level even after doubling the exposure time and/or light intensity.
机译:目的:本研究的目的是评估暴露时间和光照强度增加对通过不同厚度的乳牙牙齿结构的固化复合材料显微硬度的影响。材料与方法:制备了一百七十个圆柱形树脂复合材料试样。将所有标本分为17个实验组和对照组。将“发光二极管”光固化装置(LCU)直接或通过厚度为1、2和3毫米的牙齿切片应用在实验组中。辐照方案在650 mW / cm 2 下分别为25和50 s,在1100 mW / cm 2 下分别为15和30 s。对照组使用“石英-钨-卤素” LCU(400 mW / cm 2 )持续40 s。显微硬度通过维氏硬度测试测量。结果:间接固化的标本和通过1毫米厚的牙齿结构固化的标本,强度的增加会导致硬度下降。在通过2毫米和3毫米厚的牙齿结构固化的样品中,增加的强度和/或暴露时间并未显示出显微硬度的任何适当变化。结论:尽管厚度仍在临床可接受的水平,但通过1.0 mm厚的牙齿切片进行的辐照导致显微硬度降低。即使将曝光时间和/或光强度加倍,通过2毫米或3毫米厚的牙齿切片固化的样品的硬度值也低于临床可接受的水平。

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