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Bulk-Fill Resin Composites: Polymerization Contraction, Depth of Cure, and Gap Formation

机译:填充树脂复合材料:聚合收缩,固化深度和间隙形成

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摘要

The bulk-filling of deep, wide dental cavities is faster and easier than traditional incremental restoration. However, the extent of cure at the bottom of the restoration should be carefully examined in combination with the polymerization contraction and gap formation that occur during the restorative procedure. The aim of this study, therefore, was to compare the depth of cure, polymerization contraction, and gap formation in bulk-fill resin composites with those of a conventional resin composite. To achieve this, the depth of cure was assessed in accordance with the International Organization for Standardization 4049 standard, and the polymerization contraction was determined using the bonded-disc method. The gap formation was measured at the dentin margin of Class II cavities. Five bulk-fill resin composites were investigated: two high-viscosity (Tetric EvoCeram Bulk Fill, SonicFill) and three low-viscosity (x-tra base, Venus Bulk Fill, SDR) materials. Compared with the conventional resin composite, the high-viscosity bulk-fill materials exhibited only a small increase (but significant for Tetric EvoCeram Bulk Fill) in depth of cure and polymerization contraction, whereas the low-viscosity bulk-fill materials produced a significantly larger depth of cure and polymerization contraction. Although most of the bulk-fill materials exhibited a gap formation similar to that of the conventional resin composite, two of the low-viscosity bulk-fill resin composites, x-tra base and Venus Bulk Fill, produced larger gaps.
机译:与传统的增量修复相比,深而宽的牙腔的批量填充更快,更容易。但是,应结合修复过程中发生的聚合收缩和缝隙形成,仔细检查修复体底部的固化程度。因此,本研究的目的是比较填充树脂复合材料中的固化深度,聚合收缩和缝隙形成与常规树脂复合材料的固化深度,聚合收缩和缝隙形成。为此,根据国际标准化组织4049标准评估固化深度,并使用粘结圆盘法确定聚合收缩率。在II类腔的牙本质边缘处测量间隙形成。研究了五种填充树脂复合材料:两种高粘度(Tetric EvoCeram填充,SonicFill)和三种低粘度(x-tra基础,维纳斯填充,SDR)材料。与常规树脂复合材料相比,高粘度填充材料的固化和聚合收缩深度仅增加了一点点(对于Tetric EvoCeram填充材料而言却很显着),而低粘度填充材料则产生了更大的增长固化深度和聚合收缩。尽管大多数块状填充材料都显示出与常规树脂复合材料相似的间隙形成,但是两种低粘度的块状填充树脂复合材料x-tra base和Venus块状填充产生了较大的间隙。

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