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根管封闭剂类型与充填方法的抗折性比较分析

Comparative Analysis of Fracture Resistance of Endodontic Sealer Types and Filling Methods.

作者信息

Song Yun, Kim Kee-Deog, Jung Bock-Young, Park Wonse, Pang Nan-Sim

机构信息

Department of Advanced General Dentistry, College of Dentistry, Yonsei University, Seoul 03722, Republic of Korea.

出版信息

Materials (Basel). 2024 Dec 26;18(1):40. doi: 10.3390/ma18010040.

Abstract

With the advent of bioceramic sealers, sealers have become a more important filling material for endodontic treatment. When a solid sealer, rather than an elastic gutta-percha, occupies a significant portion of the root canal, it is unclear whether the tooth structure will be strengthened to withstand stress or whether the increased stiffness will transmit the load directly to the entire root, potentially causing root fracture. This study compared the fracture resistance and fracture patterns of roots filled with various root canal sealers, including bioceramic sealers, and each corresponding filling technique. Five groups ( = 10) were tested, including no endodontic treatment, no canal obturation, resin-based sealers with continuous-wave compaction, bioceramic sealers with single-cone technique, and mineral trioxide aggregate (MTA) orthograde obturation. The specimens were radiographed to assess the filling quality. After embedding the specimens in acrylic resin, fracture resistance was tested by a universal testing machine, and fracture features were examined microscopically. The results showed that the bioceramic sealer group using the single-cone technique had the highest fracture strength. Radiographic analysis revealed that achieving void-free filling was more difficult with MTA orthograde obturation compared to resin-based and bioceramic sealer groups. No significant variation in fracture features was observed across the groups.

摘要

随着生物陶瓷封闭剂的出现,封闭剂已成为牙髓治疗中更为重要的充填材料。当一种固体封闭剂而非弹性牙胶占据根管的很大一部分时,尚不清楚牙齿结构是否会得到加强以承受应力,或者增加的硬度是否会将负荷直接传递至整个牙根,从而可能导致牙根折断。本研究比较了用包括生物陶瓷封闭剂在内的各种根管封闭剂充填的牙根的抗折性和折裂模式,以及每种相应的充填技术。测试了五组(每组 = 10),包括未进行牙髓治疗、未进行根管充填、采用连续波热压充填的树脂基封闭剂、采用单锥技术的生物陶瓷封闭剂以及三氧化矿物凝聚体(MTA)正压充填。对标本进行射线照相以评估充填质量。将标本嵌入丙烯酸树脂后,用万能试验机测试抗折性,并在显微镜下检查折裂特征。结果表明,采用单锥技术的生物陶瓷封闭剂组具有最高的抗折强度。射线照相分析显示,与树脂基和生物陶瓷封闭剂组相比,MTA正压充填实现无空隙充填更为困难。各组之间在折裂特征方面未观察到显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1be/11721019/f413c77e76a1/materials-18-00040-g001.jpg

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