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首页> 外文期刊>Journal of dentistry >Bonding of low-shrinking composites in high C-factor cavities
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Bonding of low-shrinking composites in high C-factor cavities

机译:低收缩复合材料在高C系数腔中的粘合

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Objectives: Polymerization shrinkage causes stress at the tooth-restoration interface. The magnitude of the stress depends upon several factors, such as the configuration factor (C-factor) of the cavity, the polymerization-conversion rate and filling technique. The aim of this study was to investigate the effect of curing time and filling method when high C-factor cavities were filled with low-shrinking composites. Methods: Three low-shrinking (Filtek Silorane, 3M ESPE: FS; N'Durance, Septodont: N'D; Kalore, GC: Ka) and one conventional composite (Z100, 3M ESPE) were bonded into standardized occlusal Class-I cavities using either a two-step self-etch adhesive (Silorane System Adhesive, 3M ESPE: SSA) or a one-step self-etch adhesive (G-Bond, GC: GB). Five experimental groups were formed according to the employed adhesive/composite combination (SSA/FS, SSA/Z100, GB/N'D, GB/Ka, GB/Z100), and further divided into three subgroups conforming to curing time and filling technique (20 s/bulk; 80 s/bulk; 80 s/layered). For each subgroup, non-trimmed 1 mm × 1 mm sticks were prepared from five teeth to measure the micro-tensile bond strength (μTBS) to cavity-bottom dentine. Results: The two-step self-etch adhesive SSA generated higher bond strengths than the one-step self-etch adhesive GB, irrespective of the filling method. When GB was used, bulk filling with a low-shrinking composite revealed the highest bond strengths. For all composites, the layering method provided the highest bond strengths. Significance: The two-step self-etch adhesive Silorane System Adhesive (3M ESPE) performed better than the one-step self-etch adhesive G-Bond (GC), regardless of the composite used. When the latter all-in-one adhesive was used, effects of shrinkage stress became more apparent.
机译:目标:聚合收缩在牙齿修复界面处引起应力。应力的大小取决于几个因素,例如型腔的构型因素(C因素),聚合转化率和填充技术。这项研究的目的是研究当高C因子型腔填充低收缩率复合材料时固化时间和填充方法的影响。方法:将三种低收缩率的产品(Filtek Silorane,3M ESPE:FS; N'Durance,Septondont:N'D; Kalore,GC:Ka)和一种常规的复合材料(Z100,3M ESPE)粘合到标准的I类咬合腔使用两步自蚀刻粘合剂(Silorane System Adhesive,3M ESPE:SSA)或单步自蚀刻粘合剂(G-Bond,GC:GB)。根据所使用的胶粘剂/复合材料组合物分为五个实验组(SSA / FS,SSA / Z100,GB / N'D,GB / Ka,GB / Z100),并根据固化时间和填充技术进一步分为三个亚组。 (20秒/批量; 80秒/批量; 80秒/分层)。对于每个亚组,用五颗牙齿准备未修剪的1 mm×1 mm牙棒,以测量牙槽底牙本质的微拉伸粘结强度(μTBS)。结果:无论填充方法如何,两步自蚀刻粘合剂SSA均比一步自蚀刻粘合剂GB产生更高的粘结强度。当使用GB时,用低收缩复合材料大量填充显示出最高的粘结强度。对于所有复合材料,分层方法可提供最高的粘合强度。启示:无论使用哪种复合材料,两步自蚀刻粘合剂Silorane System Adhesive(3M ESPE)的性能均优于一步自蚀刻粘合剂G-Bond(GC)。当使用后者的多合一粘合剂时,收缩应力的影响变得更加明显。

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