首页> 外文期刊>Journal of investigative and clinical dentistry. >Fracture resistance, gap and void formation in root‐filled mandibular molars restored with bulk‐fill resin composites and glass‐ionomer cement base
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Fracture resistance, gap and void formation in root‐filled mandibular molars restored with bulk‐fill resin composites and glass‐ionomer cement base

机译:用块填充树脂复合材料和玻璃离聚物水泥碱恢复根填充下颌臼齿的断裂抗性,间隙和空隙形成

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Abstract Aim To evaluate fracture resistance and gap/void presence of root‐filled mandibular molars restored with 2 bulk‐fill and 1 conventional resin composites, with or without a glass‐ionomer cement (GIC) base. Methods Coronal access and mesio‐occlusal (MO) cavities were prepared, then root canal treatment was performed on 30?mol/L. The teeth were randomly divided, according to the cavity volume, into 6 experimental groups (N?=?5) and restored with conventional/light‐cured (Ceram‐X), bulk‐fill/light‐cured (SureFil SDR) or bulk‐fill/dual‐cured (Core‐X Flow) with/without a 2‐mm thick GIC base. Gaps and voids (%) were determined using microcomputed tomography. Intact teeth and unrestored teeth were used as negative and positive controls. Fracture load (N) was determined using a universal testing machine. Results No significant difference in fracture resistance or gap/void formation was found among the 3 resin composites. GIC‐base groups revealed significantly lower fracture strength than intact teeth, while fracture strengths of no GIC‐base groups were not significantly different from intact teeth. GIC‐base groups revealed significantly more gaps and voids in the area of the GIC than the resin composite. Conclusion Conventional and bulk‐fill resin composites provided similar fracture resistance and gaps/voids in root‐filled molars with MO cavities. Placing a GIC base decreased fracture resistance and increased gap/void formation.
机译:摘要旨在评估骨折和间隙/无效存在的根填充颌骨臼齿,其恢复为2个散装填充物和1个常规树脂复合材料,有或没有玻璃离聚物水泥(GIC)碱。方法制备冠状抵抗和中学咬合(Mo)腔,然后在30〜mol / l上进行根管处理。根据腔体积,将牙齿随机分成6个实验组(n?=Δ5)并用常规/光固化(CERAM-X),批量填充/光固化(SUREFIL SDR)或散装恢复 - 填充/双固化(Core-X流量),带有/没有2mm厚的GIC基础。使用微型断层扫描确定间隙和空隙(%)。完整的牙齿和未经致病的牙齿被用作阴性和阳性对照。使用通用试验机测定断裂载荷(n)。结果3树脂复合材料中发现了裂缝抗性或间隙/空隙形成显着差异。 GIC基团显示比完整牙齿显着降低骨折强度,而NO GIC基团的断裂强度与完整的牙齿没有显着差异。 GIC基团在GIC面积比树脂复合材料的情况下显着显示出更多的间隙和空隙。结论常规和块状填充树脂复合材料提供了具有Mo腔的根填充臼齿中类似的裂缝性和间隙/空隙。将GIC基部放置抗断裂性和增加的间隙/空隙形成。

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