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研究新型低收缩树脂复合材料的填料形态和力学性能。

Investigating filler morphology and mechanical properties of new low-shrinkage resin composite types.

机构信息

School of Dentistry and Stomatology, Université catholique de Louvain, Brussels, Belgium.

出版信息

J Oral Rehabil. 2010 May 1;37(5):364-76. doi: 10.1111/j.1365-2842.2010.02066.x. Epub 2010 Feb 19.

DOI:10.1111/j.1365-2842.2010.02066.x
PMID:20202096
Abstract

Three types of low-shrinkage composites are today commercially available: Ormocers, cationic ring-opening curing systems and highly filled methacrylate-based materials, which cure via free-radical polymerization mechanisms. The aim of this study was to characterize the inorganic fraction of materials belonging to each type and to compare their mechanical properties. Two Ormocers (Admira and an experimental Ormocer V35694), one ring-opening composite (Filtek Silorane) and five methacrylate-based composites [Filtek Supreme XT, Tetric EvoCeram, Grandio, Synergy D6 (Coltène-Whaledent, Langenau, Germany) and an experimental material, V34930] were tested. Inorganic fillers were quantified by thermogravimetric analysis and morphologically characterized by scanning electron microscopy. Dynamic modulus was determined by an impulse excitation technique, static elastic moduli and flexural strength by a three-point bending method. The results were analyzed using ANOVA tests (P < 0.05) and linear correlations. Grandio, V34930 and V35694 exhibited significantly higher filler mass fractions. Both dynamic and static moduli of Grandio and V34930 were significantly higher than the other materials (P < 0.05), although no significant difference in flexural strength was observed between material type (P > 0.05). From the present findings, it was suggested that V35694 and Filtek Silorane exhibit comparable properties to conventional methacrylate-based composites, although clinically the cavity type and location must guide material choice. Under high occlusal load, the use of Grandio and V34930 might be favoured. For small cavities, alternative technologies could be preferred as the need for mechanical resistance is lower and the potential for stress generation is greater.

摘要

目前市售的低收缩复合材料主要有三种类型

Ormocers、阳离子开环固化体系和高度填充的甲基丙烯酸酯基材料,它们通过自由基聚合机制固化。本研究的目的是对属于每种类型的材料的无机部分进行表征,并比较它们的机械性能。测试了两种 Ormocers(Admira 和一种实验性 Ormocer V35694)、一种开环复合材料(Filtek Silorane)和五种甲基丙烯酸酯基复合材料[Filtek Supreme XT、Tetric EvoCeram、Grandio、Synergy D6(Coltène-Whaledent,德国朗根奥)和一种实验性材料 V34930]。通过热重分析定量测定无机填料,通过扫描电子显微镜对其形态进行表征。通过脉冲激励技术测定动态模量,通过三点弯曲法测定静态弹性模量和弯曲强度。使用方差分析(P<0.05)和线性相关对结果进行分析。Grandio、V34930 和 V35694 的填料质量分数明显较高。Grandio 和 V34930 的动态和静态模量均明显高于其他材料(P<0.05),但不同材料类型的弯曲强度无显著差异(P>0.05)。从目前的研究结果来看,V35694 和 Filtek Silorane 与传统的甲基丙烯酸酯基复合材料具有相当的性能,但临床中必须根据窝洞类型和位置来指导材料选择。在高咬合负荷下,可能更倾向于使用 Grandio 和 V34930。对于小窝洞,可以选择替代技术,因为对机械阻力的需求较低,产生应力的潜力更大。

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