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Impact of post and core materials on the apical extension of root fracture in root canal treated teeth

机译:后核和核心材料对根管治疗牙齿根骨骨折顶端延伸的影响

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Compared with vital teeth, changes in chemical and physical properties along with alterations in tooth structure after root canal treatment increase the possibility of root fracture. These aspects need to be considered in selecting materials used in the restoration of endodontically treated teeth, specifically the fabrication of posts and cores for this purpose. This study aimed to measure the apical extension of fracture in teeth subjected to root canal treatment and restoration by post- and core-fabricated materials. Forty extracted maxillary central incisors were included in the experiment and subdivided into experimental and control groups. Root canal treatment was performed for teeth in the control group, and the accessed cavity was restored with direct composite restoration. The experimental groups were restored using computer-aided design/computer-aided manufacturing (CAD/CAM) milled posts and cores of polymer-infiltrated ceramic network (PICN), zirconia and metal. Then, the cores were restored with metal crowns, subjected to a compression test to record the fracture resistance, and examined to evaluate the extension of root fracture apically. The results of the compression test were expressed in Newtons. The extension of root fracture was measured in millimeters using metric pictures of the samples taken by stereomicroscopy. The data were analyzed using ANOVA with Tukey's HSD, and a P-value of <0.05 was considered significant. Compared to PICN, zirconia and metal groups showed a non-significant increase in fracture resistance. However, the difference in resistance to fracture between the control group and PICN group was significant, with a P value of 0.02. The apical extension of root fracture in metal (3.72?±?0.41) and zirconia (3.77?±?0.96) was significantly higher than that in PINC (2.02?±?1.44) (p?=?0.003 and 0.002, respectively). In comparison to zirconia and metal samples, the samples in the PICN group showed less extension of root fracture apically. PICN would be an acceptable material of choice for restoring anterior teeth when post and core are required.
机译:与生命牙齿相比,在根管治疗后,化学和物理性质的变化以及牙齿结构的变化增加了根部骨折的可能性。在选择恢复脊髓处理牙齿的选择材料中,需要考虑这些方面,特别是为此目的制造柱和芯。本研究旨在测量通过后核制造材料进行根管治疗和恢复的牙齿骨折的顶端延伸。 40分萃取的上颌中央门牙被包括在实验中并细分为实验和对照组。对对照组中的牙齿进行根管治疗,并通过直接复合修复来恢复进入的腔。使用计算机辅助设计/计算机辅助制造(CAD / CAM)铣削柱和核心渗透陶瓷网络(PICN),氧化锆和金属核来恢复实验组。然后,用金属冠恢复核心,经过压缩试验以记录裂缝抗性,并检查以评估根部骨折的延伸。压缩试验的结果在牛顿中表达。使用立体镜检查的样品的度量图片以毫米测量根部骨折的延伸。使用具有Tukey的HSD的ANOVA分析数据,P值为<0.05被认为是显着的。与PICN,氧化锆和金属基团显示出不显着的裂缝抗性增加。然而,对照组和PICN组之间的抗性抗性差异是显着的,P值为0.02。金属根部骨折的顶端突出(3.72〜±0.41)和氧化锆(3.77?±0.96)显着高于π(2.02≤α1.44)(P?= 0.003和0.002)。与氧化锆和金属样品相比,PICN组中的样品在顶部的根部骨折延伸较少。 PICN将是一种可接受的材料,用于在需要柱子和核心时恢复前齿。

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