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Immediate versus water-storage performance of Class V flowable composite restoratives

机译:V级可流动复合修复剂的即时性能与蓄水性能

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Objectives. The aims of this investigation were to clarify the effects of 24 h water-storage and finishing time on mechanical properties and marginal adaptation to a Class V cavity of eight modern flowable resin-composites. Methods. Eight flowable composites, plus two controls (one microfilled and one hybrid composite), were investigated with specimen sub-groups (n = 10) for each property measured. The principal series of experiments was conducted in model Class V cavities with interfa-cial polishing either immediately (3 min) after setting or after 24 h water-storage. After the finishing procedure, each tooth was sectioned in a buccolingual direction through the center of the restoration, and the presence or absence of marginal-gaps was measured (and then summed for each cavity) at 14 points (each 0.5 mm apart) along the cavity restoration interface (n = 10 per group; total points measured = 140). The shear bond-strengths to enamel and to dentin, and flexural strengths and moduli data were also measured at 3 min and after 24 h water-storage. Results. For all flowable composites, polished immediately after setting, 14-30 summed gaps were observed (controls: 64 and 42). For specimens polished after 24h, a significantly (p < 0.05) reduced number of 8-17 summed gaps occurred for only 3 flowable composites; whereas for 5 flowable composites there were non-significantly-different (p > 0.05) numbers (11-17) of summed gaps (controls: 28 and 22). After 24h storage, shear bond-strengths to enamel and to dentin, flexural strengths and moduli increased highly significantly (p < 0.001) for all materials, except Silux Plus. Significance. A post-cure interval of 24 h resulted in enhanced mechanical and adhesive properties of flowable dental composites. In a minority of cases there was also a reduced incidence of marginal-gap formation. However the latter effect may be partly attributed to 24 h delayed polishing, even though such a delay is not usual clinical practice.
机译:目标。这项研究的目的是阐明24小时储水和精加工时间对八种现代可流动树脂复合材料的V级腔体力学性能和边缘适应性的影响。方法。对八个可流动复合材料,以及两个对照(一个微填充和一个混合复合材料),对每个测量的特性进行了样本子组(n = 10)的研究。主要的实验系列是在模型V型腔中进行定型后立即(3分钟)或储水24小时后进行界面抛光。修整后,将牙齿沿颊骨方向切开整个修复体的中心,并沿着牙齿的14个点(每个相距0.5毫米)测量(是否累加)每个边缘的间隙(然后将其相加)。腔体修复界面(每组n = 10;测量的总点数= 140)。储水24小时后的3分钟,还测量了牙釉质和牙本质的抗剪强度,抗弯强度和模量数据。结果。对于所有可流动的复合材料,在固化后立即进行抛光,观察到总共有14至30个间隙(对比例:64和42)。对于24小时后抛光的样品,仅3种可流动复合材料的缝隙减少了8-17个,明显减少了(p <0.05)。而对于5种可流动的复合材料,其求和的间隙(对照组:28和22)的差异不显着(p> 0.05)(11-17)。储存24小时后,除Silux Plus外,所有材料的剪切强度与牙釉质和牙本质的抗剪强度,弯曲强度和模量均显着提高(p <0.001)。意义。后固化间隔24小时可提高可流动牙科复合材料的机械性能和粘合性能。在少数情况下,边缘间隙形成的发生率也降低了。但是,后一种效果可能部分归因于延迟抛光24小时,即使这种延迟不是通常的临床实践。

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