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首页> 外文期刊>Journal of dentistry >Evaporating solvents with a warm air-stream: Effects on adhesive layer properties and resin-dentin bond strengths.
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Evaporating solvents with a warm air-stream: Effects on adhesive layer properties and resin-dentin bond strengths.

机译:用温暖的气流蒸发溶剂:对粘合剂层性能和树脂-牙本质粘合强度的影响。

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OBJECTIVES: This study evaluated the effect of a warm or cold air-dry stream for solvent evaporation on the microtensile resin-dentin bond strength (muTBS), nanoleakage pattern (SEM), degree of conversion (DC) and solvent evaporation rates (SE) of an ethanol/water- (Adper Single Bond, [SB] 3MESPE) and an acetone-based (Prime & Bond 2.1, [PB] Dentsply), two-step etch-and-rinse adhesive system. MATERIALS AND METHODS: Adhesives were applied on demineralized dentin surfaces. For SE, a warm or cold air-dry stream (10s) was applied prior to light-activation (10s). Bonded sticks (0.8mm(2)) were tested in tension (0.5mm/min). Two bonded sticks from each tooth were immersed in a 50% (w/v) solution of silver nitrate (24h), photodeveloped (8h) and analyzed by SEM. The DC and solvent evaporation rate of the adhesives were evaluated under FTIR and analytical balance, respectively. Data were analyzed by two-way ANOVA and Tukey test (alpha=0.05). RESULTS: Higher muTBS and lower nanoleakage were observed when the SE step was performed with warm air-dry stream. However, the DC of the adhesives was not altered by the use of a warm air-dry. CONCLUSIONS: The use of a warm air-dry stream seems to be a clinical tool to improve the bond strength and the quality of the hybrid layer (less nanoleakage infiltration), since it might reduce the number of pores within the adhesive layer.
机译:目的:本研究评估了用于溶剂蒸发的热风或冷风干燥流对微拉伸树脂-牙本质粘合强度(muTBS),纳米漏型(SEM),转化度(DC)和溶剂蒸发速率(SE)的影响乙醇/水-(Adper Single Bond,[SB] 3MESPE)和丙酮基(Prime&Bond 2.1,[PB] Dentsply)两步蚀刻和冲洗粘合系统。材料与方法:将粘合剂涂在脱矿质的牙本质表面上。对于SE,在进行光活化(10s)之前先施加暖风或冷风干流(10s)。测试了粘结棒(0.8mm(2))的拉伸强度(0.5mm / min)。将来自每个牙齿的两个粘结棒浸入50%(w / v)的硝酸银溶液中(24h),进行光显影(8h)并通过SEM分析。在FTIR和分析天平下分别评估粘合剂的DC和溶剂蒸发速率。数据通过双向方差分析和Tukey检验(alpha = 0.05)进行分析。结果:当使用热风干流进行SE步骤时,观察到更高的muTBS和更低的纳米泄漏。然而,通过使用热风干燥并没有改变粘合剂的DC。结论:使用暖风干流似乎是一种提高粘合强度和杂化层质量(减少纳米漏入)的临床工具,因为它可以减少粘合层中的孔数。

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