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使用石英钨卤素灯和新型高强度发光二极管固化装置时纳米混合树脂复合材料的最佳固化深度

Optimal depth of cure for nanohybrid resin composite using quartz tungsten halogen and new high intensity light-emitting diode curing units.

作者信息

Tanthanuch Saijai, Ruengsri Prapansri, Kukiattrakoon Boonlert

机构信息

Department of Conservative Dentistry, Faculty of Dentistry, Prince of Songkla University, Hat Yai, Songkhla, Thailand.

出版信息

Gen Dent. 2013 Aug;61(5):e14-7.

Abstract

This study sought to evaluate the effects of quartz tungsten halogen (QTH) and light-emitting diode (LED) photocuring units on the degree of conversion (DC) and surface microhardness of a resin composite that had been cured for optimal depth of cure (DoC) assessment. Two hundred and forty cylindrical specimens (4.0 mm in diameter, 2.0-4.0 mm thick) of shade A2 resin composite were prepared and cured with either a QTH or an LED. The DC and top and bottom surface hardness were recorded, and data were analyzed using 2-way ANOVA, Tukey's test, t-test (α = 0.05) and linear regression analysis. The results showed that surface microhardness values and DC were affected by light intensity (P < 0.01), and resin composite thickness (2, 3, and 4 mm) (P < 0.01). Resin composite polymerized by the QTH had an optimal DoC of 3 mm, compared to 4 mm for the LED.

摘要

本研究旨在评估石英钨卤素(QTH)光固化机和发光二极管(LED)光固化机对一种树脂复合材料的转化率(DC)和表面显微硬度的影响,该树脂复合材料已固化至最佳固化深度(DoC)进行评估。制备了240个A2色树脂复合材料圆柱形试样(直径4.0毫米,厚2.0 - 4.0毫米),并用QTH或LED进行固化。记录DC以及顶面和底面硬度,并使用双向方差分析、Tukey检验、t检验(α = 0.05)和线性回归分析对数据进行分析。结果表明,表面显微硬度值和DC受光强度(P < 0.01)和树脂复合材料厚度(2、3和4毫米)(P < 0.01)的影响。由QTH聚合的树脂复合材料的最佳DoC为3毫米,而LED为4毫米。

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