Nilsen Bo Wold, Mouhat Mathieu, Jokstad Asbjørn
Department of Clinical Dentistry, UiT - The Arctic University of Norway, Tromsø, Norway.
Biomater Investig Dent. 2020 Jul 6;7(1):86-95. doi: 10.1080/26415275.2020.1784013.
To assess whether composite polymer resin delivered in compules include pores and the possible effect on the amount of porosity in dental restorations.
Original compules containing unpolymerised composite polymer resin (CPR) were scanned in a micro-CT. Four products were examined, which comprised universal composites (Herculite XRV Ultra, Ceram.X Universal, Tetric Evo Ceram) and a flowable bulk-fill composite (SDR) ( = 10 per group). The pore size distribution and amount of porosity (vol.%) were estimated for the unpolymerized and polymerized material used to restore a standardised cavity in a typodont tooth. Manufacturers' instructions were followed regarding material handling, and polymerisation by use of a calibrated light-curing unit. The pore characteristics and their size distribution, and the amount of porosity in the dental restoration were contrasted with the values measured in the compule. Non-parametric tests were used to analyse differences between the four products.
All the composite polymer resin compules contained unpolymerised material that included pores. The universal composite compules included pores predominantly in the sub-100 µm sizes. In contrast, the flowable bulk-fill compules included a few pores with a diameter >100 µm, which were assumed to be air-bubbles. The unpolymerised material within the compule included consistently more pores compared to the extruded portion from the compule tip, and in the final restoration ( < .001). The amount of porosity in the restorations differed amongst the tested materials, with the flowable bulk-fill composite showing the lowest amount of porosity ( < .01).
评估预混包装的复合树脂中是否存在孔隙以及其对牙科修复体孔隙率的可能影响。
对含有未聚合复合树脂(CPR)的原装预混包装在微型计算机断层扫描(micro-CT)下进行扫描。检测了四种产品,包括通用型复合树脂(Herculite XRV Ultra、Ceram.X Universal、Tetric Evo Ceram)和一种可流动的大块充填复合树脂(SDR)(每组 = 10个)。对用于修复标准牙模牙齿窝洞的未聚合和聚合材料的孔径分布和孔隙率(体积百分比)进行了估计。按照制造商的说明进行材料处理,并使用校准的光固化装置进行聚合。将牙科修复体中的孔隙特征及其尺寸分布以及孔隙率与预混包装中测得的值进行对比。使用非参数检验分析四种产品之间的差异。
所有复合树脂预混包装均含有包含孔隙的未聚合材料。通用型复合树脂预混包装中的孔隙主要为100 µm以下尺寸。相比之下,可流动的大块充填预混包装包含一些直径 >100 µm的孔隙,这些孔隙被认为是气泡。与从预混包装尖端挤出的部分相比,预混包装内的未聚合材料始终含有更多孔隙,并且在最终修复体中也是如此(<0.001)。不同测试材料修复体中的孔隙率有所不同,可流动的大块充填复合树脂的孔隙率最低(<0.01)。