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首页> 外文期刊>Dental Materials Journal >Micro-computed tomography evaluation of volumetric polymerization shrinkage and degree of conversion of composites cured by various light power outputs
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Micro-computed tomography evaluation of volumetric polymerization shrinkage and degree of conversion of composites cured by various light power outputs

机译:微型计算机体层摄影术评估各种光功率输出固化的复合材料的体积聚合收缩率和转化率

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This study evaluated the influence of different light-curing modes on the volumetric polymerization shrinkage and degree of conversion of a composite resin at different locations using micro-computed tomography and Fourier transform infrared spectroscopy (FTIR). Specimens were divided into 4 groups based on the light-curing mode used (Bluephase 20i): 1 —High (1,200 mW/cm~(2)); 2 —Low (650 mW/cm~(2)); 3 —Soft-start (650–1,200 mW/cm~(2)); and 4 —Turbo (2,000 mW/cm~(2)). Degree of conversion was calculated by the measurement of the peak absorbance height of the uncured and cured materials at the specific wavenumbers, and was performed by FTIR 48 h after curing resin samples. Degree of conversion was analyzed using two-way ANOVA. No significant differences were observed independent of the region of the restoration investigated (p >0.05). Different curing modes did not influence volumetric shrinkage neither degree of conversion of class I composite resin restorations.
机译:这项研究使用微计算机断层扫描和傅立叶变换红外光谱(FTIR)评估了不同光固化方式对复合树脂在不同位置的体积聚合收缩率和转化率的影响。根据所使用的光固化模式(蓝相20i)将标本分为4组:1-高(1200 mW / cm〜(2)); 2-低(650 mW / cm〜(2)); 3-软启动(650-1,200 mW / cm〜(2));和4-Turbo(2,000 mW / cm〜(2))。通过测量未固化和固化材料在特定波数下的峰吸收高度来计算转化度,并在树脂样品固化后48小时通过FTIR进行测定。使用双向方差分析分析转化度。独立于所研究的修复体的区域,未观察到显着差异(p> 0.05)。不同的固化方式不会影响体积收缩率,也不会影响I类复合树脂修复体的转化度。

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