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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Coronal Microleakage of Teeth Restored with Cast Posts and Cores Cemented with Four Different Luting Agents after Thermocycling
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Coronal Microleakage of Teeth Restored with Cast Posts and Cores Cemented with Four Different Luting Agents after Thermocycling

机译:用铸造柱和核心恢复牙齿的冠状微透镜,并在热循环后用四种不同的戒断剂固化

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摘要

Purpose The apical seal provided by a root canal filling may be breached via coronal leakage. This study aimed to compare the teeth restored with custom-made cast metal posts and cores cemented with different luting agents in terms of coronal microleakage after thermocycling. Materials and Methods This in vitro study was conducted on 32 extracted single-canal teeth. Root canals were prepared by step-back technique and filled with gutta percha and sealer. The coronal 7 mm of gutta percha was removed, and post space was prepared using peeso reamers #2 and #3 consecutively. After fabricating the acrylic resin patterns of the posts and cores, they were cast using Ni-Cr metal alloy. The specimens were divided into 4 groups in which the castings were cemented using one of the following luting agents: zinc phosphate (ZP), glass ionomer (GI), Panavia F 2.0, and Speed CEM. After cementation, the teeth were immersed in distilled water and incubated for 7 days. Then, the teeth were subjected to thermocycling, immersed in silver nitrate for 6 hours, and finally sectioned. The degree of dye penetration into the coronal part of the specimens was measured using a stereomicroscope. Data were analyzed using Kruskal-Wallis and Mann-Whitey U tests with significance level of 0.05. Results The median microleakage in ZP, Speed CEM, GI, and Panavia were 171.89, 114.76, 26.51, and 20.02 mu m, respectively. Pairwise comparisons among GI and ZP, GI, and Speed CEM, ZP and Panavia, ZP and Speed CEM, and Panavia and Speed CEM groups yielded significant differences (p 0.05). Conclusion Complete coronal seal was not achieved with any of the luting agents. The highest and the lowest degree of microleakage was yielded by ZP and Panavia luting agents, respectively.
机译:目的,由根管填充提供的顶端密封可以通过冠状泄漏突破。本研究旨在将牙齿与定制的铸造金属柱和核心在热循环后的冠状微透盖方面进行了定制的铸造金属柱和核心核心。材料和方法这种体外研究在32例提取的单管牙齿上进行。通过待存技术制备根部管,并填充Gutta PERCHA和密封剂。除去了Gutta PERCHA的冠状7mm,连续使用PEESO铰刀#2和#3制备柱空间。在制造柱和芯的丙烯酸树脂图案之后,使用Ni-Cr金属合金施放它们。将样品分成4组,其中使用以下延伸剂之一巩固铸件:磷酸锌(ZP),玻璃离聚物(GI),巴伐利亚F 2.0和速度CEM之一。在胶结之后,将牙齿浸入蒸馏水中并孵育7天。然后,将牙齿进行热循环,浸入硝酸银中6小时,最后切开。使用立体显微镜测量试样的染色部分的染料渗透程度。使用Kruskal-Wallis和Mann-Whityy U测试进行分析数据,其显着性水平为0.05。结果分别为ZP,速度CEM,GI和Panavia中的中位微漏分别为171.89,114.76,26.51和20.02 mu m。成对比较GI和ZP,GI和Speed CEM,ZP和Panavia,ZP和速度CEM以及巴伐利亚和速度CEM组产生显着差异(P 0.05)。结论除了任何戒断剂中未实现完全冠状密封。 ZP和巴伐利亚饲料剂分别产生最高和最低程度的微渗透。

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