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不同复合调制方案对大块充填树脂修复体的转化率和聚合应力分布的影响。

Effect of different composite modulation protocols on the conversion and polymerization stress profile of bulk-filled resin restorations.

机构信息

Federal University of Rio Grande do Sul, Porto Alegre, RS, Brazil.

Federal University of Rio Grande do Sul, Porto Alegre, RS, Brazil.

出版信息

Dent Mater. 2020 Jul;36(7):829-837. doi: 10.1016/j.dental.2020.03.019. Epub 2020 May 20.

Abstract

OBJECTIVE

The aim of this in vitro study was to test the effect of different composite modulation protocols (pre-heating, light-curing time and oligomer addition) for bulk filling techniques on resin polymerization stress, intra-pulpal temperature change and degree of conversion.

METHODS

Class I cavities (4mm depth×5mm diameter) were prepared in 48 extracted third molars and divided in 6 groups. Restorations were completed with a single increment, according to the following groups: (1) Filtek Z250XT (room temperature - activated for 20s); (2) Filtek Z250XT (at room temperature - activated for 40s); (3) Filtek Z250XT (pre-heated at 68°C - activated for 20s); (4) Filtek Z250XT (pre-heated at 68°C - activated for 40s); (5) Filtek BulkFill (at room temperature - activated for 20s); (6) Filtek Z250XT (modified by the addition of a thio-urethane oligomer at room temperature - activated for 40s). Acoustic emission test was used as a real-time polymerization stress (PS) assessment. The intra-pulpal temperature change was recorded with a thermocouple and bottom/top degree of conversion (DC) measured by Raman spectroscopy. Data were analyzed with one-way ANOVA/Tukey's test (α=5%).

RESULTS

Pre-heating the resin composite did not influence the intra-pulpal temperature (p=0.077). The thio-urethane-containing composite exhibited significantly less PS, due to a lower number of acoustic events. Groups with pre-heated composites did not result in significantly different PS. Filtek BulkFill and the thio-urethane experimental composite presented significantly higher DC.

SIGNIFICANCE

Resin composite pre-heating was not able to reduce polymerization stress in direct restorations. However, thio-urethane addition to a resin composite could reduce the polymerization stress while improving the DC.

摘要

目的

本体外研究旨在测试不同复合调制方案(预加热、光固化时间和低聚物添加)对块状充填技术的树脂聚合应力、牙髓内温度变化和转化率的影响。

方法

在 48 颗拔除的第三磨牙中制备 I 类窝洞(4mm 深×5mm 直径),并分为 6 组。根据以下分组用单增量完成修复:(1)Filtek Z250XT(室温下激活 20s);(2)Filtek Z250XT(室温下激活 40s);(3)Filtek Z250XT(68°C 预加热-激活 20s);(4)Filtek Z250XT(68°C 预加热-激活 40s);(5)Filtek BulkFill(室温下激活 20s);(6)Filtek Z250XT(在室温下添加硫代尿烷低聚物改性-激活 40s)。声发射试验被用作实时聚合应力(PS)评估。热电偶记录牙髓内温度变化,拉曼光谱测量底部/顶部转化率(DC)。采用单因素方差分析/Tukey 检验(α=5%)进行数据分析。

结果

树脂复合材料的预加热不会影响牙髓内温度(p=0.077)。含硫代尿烷的复合材料由于声发射事件较少,表现出显著较低的 PS。预加热复合材料的各组之间 PS 无显著差异。Filtek BulkFill 和硫代尿烷实验性复合材料的 DC 显著较高。

意义

直接修复中,树脂复合材料的预加热不能降低聚合应力。然而,向树脂复合材料中添加硫代尿烷可以降低聚合应力,同时提高 DC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8117/7305981/ed9e27f172fd/nihms-1581462-f0001.jpg

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