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Influence of volumetric shrinkage and curing light intensity on proximal contact tightness of class II resin composite restorations: in vitro study.

机译:体积收缩率和固化光强度对II类树脂复合修复体近端接触紧密度的影响:体外研究。

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BACKGROUND : Proximal contact tightness of class II resin composite restorations is influenced by a myriad of factors. Previous studies investigated the role of matrix band type and thickness, consistency of resin composite, and technique of placement. However, the effect of volumetric shrinkage of resin and intensity of curing light has yet to be determined. Thus, the aim of this study was to identify the influence of these factors on the proximal contact tightness when restoring class II cavity preparations in vitro. METHODS : Sixty artificial molars were restored with either a low-shrinkage (Filtek Silorane, 3M ESPE) or a conventional (Z100, 3M ESPE) composite and polymerized with low-intensity (Smartlite IQ2, Dentsply) or high-intensity light curing units (Demi(TM), Kerr). Proximal contact tightness was measured using the Tooth Pressure Meter. Data were statistically analyzed using one-way analysis of variance and Tukey post hoc test. RESULTS : Use of low-shrinkage composite (Filtek Silorane) resulted in significantly tighter proximal contacts compared to the use of conventional composite (Z100) when cured with the same polymerization unit (p<0.001). Moreover, the low-intensity curing unit (IQ2) resulted in significantly tighter contacts than the high-intensity unit when material is constant (p<0.001). CONCLUSIONS : Low-shrinkage resin composite and low curing light intensity is associated with tighter proximal contact values.
机译:背景:II类树脂复合材料修复体的近接触紧密度受多种因素影响。先前的研究调查了基带类型和厚度,树脂复合材料的稠度以及放置技术的作用。但是,树脂的体积收缩率和固化光强度的影响尚待确定。因此,本研究的目的是确定在体外恢复II类腔体制剂时这些因素对近端接触紧密度的影响。方法:用低收缩率(Filtek Silorane,3M ESPE)或常规(Z100,3M ESPE)复合材料修复60颗人工磨牙,并用低强度(Smartlite IQ2,Dentsply)或高强度光固化装置( Demi TM,Kerr)。使用牙齿压力计测量近端接触紧密度。使用单向方差分析和Tukey post hoc检验对数据进行统计分析。结果:与使用相同聚合单元进行固化的传统复合材料(Z100)相比,使用低收缩复合材料(Filtek Silorane)导致近端接触紧密得多(p <0.001)。此外,当材料恒定时,低强度固化单元(IQ2)的接触要比高强度单元显着更紧密(p <0.001)。结论:低收缩树脂复合材料和低固化光强度与更紧密的近端接触值相关。

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