本体填充树脂复合材料的单波和多波光固化:热机械老化后的转化程度和边际适应性。

Biomaterial investigations in dentistry Pub Date : 2021-07-26 eCollection Date: 2021-01-01 DOI:10.1080/26415275.2021.1937181
Sheila Celia Mondragón Contreras, Ana Luiza Barbosa Jurema, Evaniele Santos Claudino, Eduardo Bresciani, Taciana Marco Ferraz Caneppele
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引用次数: 5

摘要

目的:本研究旨在评估单波(MW)或多波(PW)光固化单元(LCU)聚合对普通体积填充树脂复合材料(RC) (Admira fusion X-tra Bulk Fill - AB)、甲基丙烯酸酯基体积填充树脂RC (tritric N-Ceram Bulk Fill - TB)和常规RC (tritric N-Ceram - TC)在热机械老化后的转化率(DC)和边缘适应性的影响。方法:采用傅里叶变换红外光谱法测定5个样品的DC。为了确定边际适应性,在60个牛门牙中制作了标准制剂,分为三组,根据RC。块状填充RC以4毫米的单增量插入。相比之下,常规RC以三次增量插入。热机械时效后评价边际间隙。数据分析采用双向方差分析(ANOVA)和多重比较的Tukey检验(α = 0.05)。结果:双因素方差分析显示显著影响(ppp)。结论:ormoer基填充体RC的DC高于甲基丙烯酸酯基填充体RC,但边际适应性相似。LCU、MW和PW对DC无显著影响,与边际适应无相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Monowave and polywave light-curing of bulk-fill resin composites: degree of conversion and marginal adaptation following thermomechanical aging.

Monowave and polywave light-curing of bulk-fill resin composites: degree of conversion and marginal adaptation following thermomechanical aging.

Monowave and polywave light-curing of bulk-fill resin composites: degree of conversion and marginal adaptation following thermomechanical aging.

Monowave and polywave light-curing of bulk-fill resin composites: degree of conversion and marginal adaptation following thermomechanical aging.

Aim: This study aimed to evaluate the effect of polymerization with either a monowave (MW) or a polywave (PW) light-curing unit (LCU) on the degree of conversion (DC) and marginal adaptation following thermomechanical aging of an ormocer bulk-fill resin composite (RC) (Admira fusion X-tra Bulk Fill - AB), a methacrylate-based bulk-fill RC (Tetric N-Ceram Bulk Fill - TB) and a conventional RC (Tetric N-Ceram - TC). Methods: DC was assessed in five samples of each RC using Fourier transform infrared spectroscopy. For determination of marginal adaptation, standard preparations were made in 60 bovine incisors, divided into three groups, according to the RC. The bulk-fill RC was inserted in a single increment of 4 mm. In contrast, the conventional RC was inserted in three increments. Marginal gap was evaluated after thermomechanical aging. Data were analyzed using a two-way analysis of variance (ANOVA) and Tukey's tests for multiple comparisons (α = 0.05). Results: The two-way ANOVA showed a significant effect (p<.05) of the RC factor but not of the LCU factor. The Tukey test showed that TB had the significantly lowest DC followed by TC, and with AB having the significantly highest DC. For the marginal adaptation, a significant effect was found for the LCU factor and the for the interaction RC × LCU (p<.05). Groups light-cured with PW showed significantly wider marginal gaps than MW. TC presented wider marginal gaps (17.36 µm) when cured with PW than when cured with MW (13.05 µm). The two bulk-fill RC resulted in similar marginal gap formation to each other. Conclusion: The ormocer-based bulk-fill RC showed a higher DC than the methacrylate-based bulk-fill RC but similar marginal adaptation. The LCU, MW or PW, had no significant influence on the DC, and no relevance on the marginal adaptation.

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