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通过牙科陶瓷的不同活化模式后的双树脂水门汀努氏硬度

Dual resin cement knoop hardness after different activation modes through dental ceramics.

作者信息

Valentino Thiago Assunção, Borges Gilberto Antonio, Borges Luis Henrique, Vishal Jain, Martins Luis Roberto Marcondes, Correr-Sobrinho Lourenço

机构信息

Department of Dental Materials and Restorative Dentistry, University of Uberaba, Uberaba, MG, Brazil.

出版信息

Braz Dent J. 2010;21(2):104-10. doi: 10.1590/s0103-64402010000200003.

Abstract

This study investigated the influence of ceramic compositions on Knoop Hardness Number (KHN) immediately and 24 h after polymerization and the effect of activation modes on the KHN of a resin cement. Ten Panavia F 2.0 resin cement discs were activated either directly using curing light, or chemically without light, or through 1.2-thick ceramic discs. The following ceramics were evaluated: Duceram, Cergogold, IPS Empress, IPS Empress 2, Procera, Cercon, In Ceram Alumina and In Ceram Zirconia. The KHN was obtained immediately and after 24-h testing time. Two-way ANOVA and Tukey's test were performed for statistical analysis (p<0.05). Direct activation showed higher KHN than activation through ceramics and chemical activation for both immediate and 24-h post activation. The KHN for 24-h post activation time was higher than that of the immediate post activation time except for the direct activation mode. The glass and di-silicate based ceramics showed higher KHN than alumina- and zirconia-based ceramics, immediately and after 24-h. The reinforced and opaque ceramics had the lowest KHN. The ceramic composition resulted in light attenuation, lower polymerization and lower KHN, and the 24-h testing time promoted an improvement of KHN except for direct activation mode.

摘要

本研究调查了陶瓷成分对树脂水门汀聚合后即刻及24小时努氏硬度值(KHN)的影响,以及活化方式对树脂水门汀KHN的影响。制备了10个Panavia F 2.0树脂水门汀圆盘,分别通过使用固化灯直接活化、无光化学活化或通过1.2毫米厚的陶瓷圆盘进行活化。评估了以下几种陶瓷:Duceram、Cergogold、IPS Empress、IPS Empress 2、Procera、Cercon、In Ceram Alumina和In Ceram Zirconia。在测试即刻及24小时后获取KHN。采用双向方差分析和Tukey检验进行统计分析(p<0.05)。对于聚合后即刻及24小时,直接活化显示出比通过陶瓷活化和化学活化更高的KHN。除直接活化模式外,24小时后活化时间的KHN高于聚合后即刻的KHN。基于玻璃和二硅酸盐的陶瓷在聚合后即刻及24小时显示出比基于氧化铝和氧化锆的陶瓷更高的KHN。增强型和不透明陶瓷的KHN最低。陶瓷成分导致光衰减、聚合程度降低以及KHN降低,并且除直接活化模式外,24小时的测试时间促进了KHN的提高。

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