首页> 外文期刊>Photomedicine and laser surgery >Sealing capacity of a flowable composite, as a protective base, with different conditioning methods in nonvital bleaching.
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Sealing capacity of a flowable composite, as a protective base, with different conditioning methods in nonvital bleaching.

机译:可流动复合材料的密封能力,作为保护基质,在非活体漂白中采用不同的调节方法。

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OBJECTIVE: The purpose of this in vitro study was to determine the microleakage of a nano-flowable composite used as a protective base, applied with different conditioning methods in nonvital bleaching. MATERIALS AND METHODS: Forty root-filled teeth were divided into four treatment groups (n = 10 per group): group 1--Er:YAG laser etching + Adper Single Bond 2; group 2-37 phosphoric acid + Adper Single Bond 2; group 3--Adper Prompt L-Pop; and group 4--No treatment. A nano-flowable composite (Filtek Supreme Flow) base was used in each group. For a 24-h period, 40 hydrogen peroxide solution was applied to the pulp chambers, and they were subsequently subjected to a dye (silver nitrate) challenge for 4 h. After the dye was washed out with water, each tooth was cut in half and both halves were exposed to sunlight for 2 h to promote oxidation of the dye, turning it black. Finally the sections were examined under 4x magnification to determine the degree of leakage as assessed with a four-point scale. Statistical analysis was performed with the Mann-Whitney U test. RESULTS: There were no significant differences between groups 1, 2, and 3 (p > 0.05), but the teeth in group 4 had significantly higher microleakage scores than the teeth in the other groups (p < 0.05). CONCLUSION: Self-etching adhesive application, Er:YAG laser etching, and phosphoric acid etching combined with an adhesive system all showed similar microleakge scores when a nano-flowable composite was applied as a protective base in nonvital bleaching.
机译:目的:本体外研究的目的是确定用作保护基质的纳米可流动复合材料的微泄漏,在非活体漂白中采用不同的调节方法。材料与方法:将40颗牙根填充牙齿分为4个治疗组(每组n=10个):第1组--Er:YAG激光蚀刻+Adper单键2;基团 2-37% 磷酸 + Adper 单键 2;第 3 组--Adper Prompt L-Pop;第 4 组 - 不治疗。每组均使用纳米可流动复合材料(Filtek Supreme Flow)基材。在24小时内,将40%的过氧化氢溶液施加到纸浆室中,然后对其进行染料(硝酸银)攻击4小时。染料用水洗净后,将每颗牙齿切成两半,两半暴露在阳光下2小时,促进染料氧化,使其变黑。最后,在4倍放大倍率下检查切片,以确定用四点量表评估的泄漏程度。使用Mann-Whitney U检验进行统计分析。结果:第 1、2 和 3 组之间没有显着差异 (p > 0.05),但第 4 组牙齿的微渗漏评分显着高于其他组的牙齿 (p < 0.05)。结论:在非活体漂白中,使用纳米可流动复合材料作为保护基材时,自蚀胶应用、Er:YAG激光蚀刻和磷酸蚀刻结合胶粘剂体系均显示出相似的微渗漏得分。

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