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Impact of light-cure protocols on the porosity and shrinkage of commercial bulk fill dental resin composites with different flowability

机译:光固化方案对不同流动性不同流动性填充牙科树脂复合材料孔隙率和收缩的影响

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摘要

This research aimed to probe the degree of conversion (DoC), porosity and polymerization shrinkage strain (PSS) from three different commercial bulk fill resin composites (BFRCs) with different flowability submitted to two different irradiation protocols. Samples (n = 3) of Tetric N-Ceram (TNF), Opus Bulk Fill (OBF) and Filltek Bulk Fill Flow (FBFF) were studied by FT-IR (for DoC) and micro-CT (for porosity and PSS analysis) after submitted to the following light-cure protocols: P1 (1000mW/cm(2)for 20 s) and P2 (3200mW/cm(2)for 6 s). All data were statistically treated. The material's viscosity interfered on its porosity, as well as in the response to the irradiation protocol. Furthermore, data showed that the greater the polymerization shrinkage strain the lower the porosity. On the other hand, the lower the DoC the greater the polymerization shrinkage strain. We conclude that samples of high viscosity composites submitted to extended curing time with lower irradiation showed best physical characteristics for clinical use. The low viscosity FBFF and high power light-cure protocol should be used carefully since it presented the poorest results, which may result in undesirable clinical outcomes.
机译:该研究旨在探讨来自三种不同的商业散装树脂复合材料(BFRC)的转化率(DOC),孔隙率和聚合收缩菌株(PSS),其不同的流动性提交到两种不同的辐照方案。通过FT-IR(用于DOC)和Micro-CT(用于孔隙度和PSS分析)研究了Tetric N-Ceram(TNF),Opus填充(OBF)和Filltek批量填充流(FBFF)的样品(n = 3)提交到以下光固化协议:P1(20s / cm(2)秒为20秒)和P2(3200mW / cm(2),6秒)。所有数据都在统计学治疗。材料的粘度干扰其孔隙率,以及对辐射方案的响应。此外,数据显示聚合收缩率越大,孔隙率降低。另一方面,DOC越低,聚合收缩菌株越大。我们得出结论,提交较低照射的延长固化时间的高粘度复合材料的样品显示出临床使用的最佳物理特征。由于它提出了最贫困的结果,因此应仔细使用低粘度FBFF和高功率光固化协议,这可能导致不希望的临床结果。

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