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用卤素灯、发光二极管和氩离子激光光固化的微混合复合树脂的显微硬度评估。

Micro-hardness evaluation of a micro-hybrid composite resin light cured with halogen light, light-emitting diode and argon ion laser.

作者信息

Rode Katia M, de Freitas Patricia M, Lloret Patricia R, Powell Lynn G, Turbino Miriam L

机构信息

Departamento de Dentística, Faculdade de Odontologia de São Paulo - USP, Universidade de São Paulo (USP), São Paulo, Brazil.

出版信息

Lasers Med Sci. 2009 Jan;24(1):87-92. doi: 10.1007/s10103-007-0527-x. Epub 2007 Dec 5.

Abstract

This in vitro study aimed to determine whether the micro-hardness of a composite resin is modified by the light units or by the thickness of the increment. Composite resin disks were divided into 15 groups (n = 5), according to the factors under study: composite resin thickness (0 mm, 1 mm, 2 mm , 3 mm and 4 mm) and light units. The light activation was performed with halogen light (HL) (40 s, 500 mW/cm(2)), argon ion laser (AL) (30 s, 600 mW/cm(2)) or light-emitting diode (LED) (30 s, 400 mW/cm(2)). Vickers micro-hardness tests were performed after 1 week and were carried out on the top surface (0 mm-control) and at different depths of the samples. Analysis of variance (ANOVA) and Tukey tests (P < or = 0.05) revealed no statistically significant difference among the light units for the groups of 0 mm and 1 mm thickness. At 2 mm depth, the AL was not statistically different from the HL, but the latter showed higher micro-hardness values than the LED. In groups with 3 mm and 4 mm thickness, the HL also showed higher micro-hardness values than the groups activated by the AL and the LED. Only the HL presented satisfactory polymerization with 3 mm of thickness. With a 4 mm increment no light unit was able to promote satisfactory polymerization.

摘要

本体外研究旨在确定复合树脂的显微硬度是否会因光固化设备或增量厚度而改变。根据研究因素,将复合树脂圆盘分为15组(n = 5):复合树脂厚度(0毫米、1毫米、2毫米、3毫米和4毫米)以及光固化设备。使用卤素灯(HL)(40秒,500毫瓦/平方厘米)、氩离子激光(AL)(30秒,600毫瓦/平方厘米)或发光二极管(LED)(30秒,400毫瓦/平方厘米)进行光激活。1周后进行维氏显微硬度测试,并在样品的顶面(0毫米——对照)和不同深度处进行。方差分析(ANOVA)和Tukey检验(P≤0.05)显示,对于厚度为0毫米和1毫米的组,光固化设备之间无统计学显著差异。在2毫米深度处,AL与HL无统计学差异,但HL的显微硬度值高于LED。在厚度为3毫米和4毫米的组中,HL的显微硬度值也高于由AL和LED激活的组。只有HL在3毫米厚度时呈现出令人满意的聚合效果。当增量为4毫米时,没有光固化设备能够促进令人满意的聚合。

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