...
【24h】

Fracture resistance of roots obturated with a novel calcium silicate-based endodontic sealer (BioRoot RCS)

机译:新型硅酸钙基牙髓封闭剂(BioRoot RCS)封闭的根的抗断裂性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The aim of this ex vivo study was to evaluate the vertical-fracture resistance of roots obturated with a newly developed tricalcium silicate cement (BioRoot RCS; Septodont, Saint Maur Des Fosses, France) using cold lateral compaction technique (LC) or matched-taper single-cone gutta-percha technique (SC). Decoronated 82 single-rooted mandibular premolars were chemo-mechanically prepared and then randomly divided into 6 experimental groups (n = 12) and 2 control groups (n = 5): Group 1 iRoot SP-LC; Group 2 iRoot SP-SC; Group 3 MTA Fillapex-LC; Group 4 MTA Fillapex-SC; Group 5 BioRoot RCS-LC and Group 6 BioRoot RCS-SC. In the positive-control group, roots were instrumented but not filled, and in the negative-control group, roots were neither instrumented nor filled. All samples were incubated for two weeks and then subjected to vertical loading force (1 mm/min) until fracture. The force required to fracture each specimen were determined, and the data were statistically analyzed. The highest significant fracture resistance was recorded for the iRoot SP-LC, iRoot SP-SC, BioRoot RCS-LC, and BioRoot RCS-SC groups, with no significant difference among them (p > 0.05) when compared with the positive-control group (p < 0.05), whereas the lowest significant values were observed in the MTA Fillapex-LC and MTA Fillapex-SC groups (p < 0.05). The vertical fracture resistance of roots obturated with BioRoot RCS and iRoot SP sealers using either LC or SC technique was found to be similar to that of intact teeth. BioRoot RCS, newly developed tricalcium silicate cement, might have the potential to reinforce the instrumented teeth against vertical root fracture.
机译:这项离体研究的目的是使用冷侧向压实技术(LC)或匹配锥度评估用新开发的硅酸三钙硅酸盐水泥(BioRoot RCS; Septodont,Saint Maur Des Fosses,法国)封闭的根的垂直抗裂性单锥牙胶技术(SC)。用化学机械方法制备82个单根下颌前磨牙,然后随机分为6个实验组(n = 12)和2个对照组(n = 5):第1组iRoot SP-LC;第2组。组2 iRoot SP-SC;第3组MTA Fillapex-LC;第4组MTA Fillapex-SC;第5组BioRoot RCS-LC和第6组BioRoot RCS-SC。在阳性对照组中,有根但没有填充根,在阴性对照组中,既没有根也没有填充根。将所有样品孵育两周,然后承受垂直加载力(1毫米/分钟)直至断裂。确定使每个样品断裂所需的力,并对数据进行统计分析。 iRoo​​t SP-LC,iRoot SP-SC,BioRoot RCS-LC和BioRoot RCS-SC组的最高抗断裂性最高,与阳性对照组相比,差异无统计学意义(p> 0.05) (p <0.05),而在MTA Fillapex-LC和MTA Fillapex-SC组中观察到最低的显着值(p <0.05)。发现使用LC或SC技术用BioRoot RCS和iRoot SP封闭剂封闭的牙根的垂直断裂阻力与完整牙齿的相似。 BioRoot RCS是新开发的硅酸三钙水泥,可能具有增强器械牙齿抵抗垂直牙根骨折的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号