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Effect of preheating of low shrinking resin composite on intrapulpal temperature and microtensile bond strength to dentin

机译:低收缩树脂复合材料的预热对肺内温度和与牙本质的微拉伸粘合强度的影响

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摘要

The effect of preheating of the silorane-based resin composite on intrapulpal temperature (IPT) and dentin microtensile bond strength (μTBS) was evaluated. For the IPT, teeth (n = 15) were sectioned to obtain discs of 0.5 mm thickness (2 discs/tooth). The discs were divided into three groups (n = 10/group) according to the temperature of the Filtek LS™ silorane-based resin composite during its placement, either at room temperature (23 ± 1 °C) or preheated to 54 °C or 68 °C using a commercial Calset™ device. Discs were subjected to a simulated intrapulpal pressure (IPP) and placed inside a specially constructed incubator adjusted at 37 °C. IPT was measured before, during and after placement and curing of the resin composite using K-type thermocouple. For μTBS testing, flat occlusal middentin surfaces (n = 24) were obtained. P90 System Adhesive was applied according to manufacturer’s instructions then Filtek LS was placed at the tested temperatures (n = 6). Restorative procedures were done while the specimens were connected to IPP simulation. IPP was maintained and the specimens were immersed in artificial saliva at 37 °C for 24 h before testing. Each specimen was sectioned into sticks (0.9 ± 0.01 mm2). The sticks (24/group) were subjected to μTBS test and their modes of failure were determined using scanning electron microscope (SEM). For both preheated groups, IPT increased equally by 1.5–2 °C upon application of the composite. After light curing, IPT increased by 4–5 °C in all tested groups. Nevertheless, the IPT of the preheated groups required a longer time to return to the baseline temperature. One-way ANOVA revealed no significant difference between the μTBS values of all groups. SEM revealed predominately mixed mode of failure. Preheating of silorane-based resin composite increased the IPT but not to the critical level and had no effect on dentin μTBS.
机译:评估了硅烷基树脂复合材料的预热对肺内温度(IPT)和牙本质微拉伸粘合强度(μTBS)的影响。对于IPT,将牙齿(n = 15)切成薄片,以获得厚度为0.5毫米的椎间盘(每齿2个椎间盘)。根据Filtek LS™硅基硅烷基树脂复合材料在放置期间的温度(在室温(23±1°C)或预热到54°C或60°C或更高的温度下),将光盘分为三组(n = 10 /组)。使用商用Calset™设备在68°C下操作。将碟片置于模拟的肺内压力(IPP)之下,并置于调整为37°C的特殊构造的恒温箱中。使用K型热电偶在树脂复合材料放置和固化之前,之中和之后测量IPT。对于μTBS测试,获得了平坦的咬合中齿表面(n = 24)。根据制造商的说明使用P90系统胶粘剂,然后将Filtek LS置于测试温度下(n = 6)。在将标本连接到IPP模拟的同时,进行了修复程序。保持IPP并在测试前将样品浸入37°C的人造唾液中24小时。将每个样品切成棒状(0.9±0.01mm 2 )。对棒(24 /组)进行μTBS测试,并使用扫描电子显微镜(SEM)确定其破坏模式。对于两个预热组,应用复合材料后IPT均等地增加1.5–2°C。光固化后,所有测试组的IPT升高4-5°C。但是,预热组的IPT需要更长的时间才能恢复到基线温度。单向方差分析显示所有组的μTBS值之间无显着差异。 SEM显示主要是混合故障模式。基于硅氧烷的树脂复合材料的预热提高了IPT,但未达到临界水平,并且对牙本质μTBS没有影响。

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