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使用两种根管封闭剂评估不同根管充填技术对根管治疗后牙根抗折性的影响。

Evaluation of the effect of different root canal obturation techniques using two root canal sealers on the fracture resistance of endodontically treated roots.

作者信息

Ersoy Ibrahim, Evcil Mehmet Sinan

机构信息

Department of Endodontics, Faculty of Dentistry, Sifa University, Izmir, Turkey.

出版信息

Microsc Res Tech. 2015 May;78(5):404-7. doi: 10.1002/jemt.22487. Epub 2015 Mar 4.

Abstract

AIM

The aim of this study was to compare the fracture resistance of teeth filled with AH Plus and MTA Fillapex root canal sealers by using different root canal obturation techniques.

MATERIALS AND METHODS

One hundred and twenty pieces of single-rooted-and-canalled mandibular premolar teeth were selected. After the crowns were removed from the cemento-enamel junction, they were divided into 10 groups (n = 12). All the root canals except for the Group 1 were shaped until F4 file with ProTaper Nickel- Titanyum (Ni-Ti) rotary system. Group 1: was not instrumented. Group 2: the root canals were shaped but not filled. Group 3: roots were filled with cold lateral condensation technique (CLC) by using AH Plus. Group 4: roots were filled with CLC by using MTA Fillapex. Group 5: roots were filled with single cone technique by using AH Plus. Group 6: roots were filled with single cone technique by using MTA Fillapex. Group 7: roots were filled with AH Plus by using vertical compaction method with continuous heat. Group 8: roots were filled with MTA Fillapex by using vertical compaction method with continuous heat. Group 9: roots were filled with AH Plus by using thermoplastic core carrier method. Group 10: roots were filled with MTA Fillapex by using thermoplastic core carrier method. Before embedding the samples in acrylic resin after standing in an oven at 37°C for 2 weeks for the hardening of the root canal sealers the 5 mm apical portion of the roots were immersed in wax in order to imitate the surrounding tissues. Polyvinyl siloxane impression material was used for the samples which were embedded in acrylic resin in a way that the coronal 8 mm remained outside in order to imitate the periodontal ligament. Lateral force was applied to the samples with 1 mm/min speed in the Universal Tester. The maximum force values (F-max) which cause fractures in the examples were determined and the results were subjected to statistical evaluation by using one-way Anova and Tukey HSD tests with the significance set at (P < 0.05).

RESULTS

The control group showed the maximum fracture resistance (P < 0.05). Thermafil group showed higher fracture resistance than single cone technique, cold lateral condensation technique, and system B (P < 0.05).

CONCLUSIONS

It was concluded that shaping and widening of the root canals reduced the fracture resistance of teeth while Thermafil increased the resistance of roots against fracture.

摘要

目的

本研究旨在通过使用不同的根管充填技术,比较用AH Plus和MTA Fillapex根管封闭剂充填的牙齿的抗折性。

材料与方法

选取120颗单根单管的下颌前磨牙。从牙骨质-釉质界处去除牙冠后,将其分为10组(n = 12)。除第1组外,所有根管均用ProTaper镍钛(Ni-Ti)旋转系统预备至F4锉。第1组:未进行预备。第2组:根管已预备但未充填。第3组:用AH Plus通过冷侧方加压技术(CLC)充填根管。第4组:用MTA Fillapex通过CLC充填根管。第5组:用AH Plus通过单锥技术充填根管。第6组:用MTA Fillapex通过单锥技术充填根管。第7组:用AH Plus通过连续热垂直加压法充填根管。第8组:用MTA Fillapex通过连续热垂直加压法充填根管。第9组:用AH Plus通过热塑性核心载体法充填根管。第10组:用MTA Fillapex通过热塑性核心载体法充填根管。在37°C烤箱中放置2周以使根管封闭剂硬化后,将样本嵌入丙烯酸树脂之前,将牙根根尖5 mm部分浸入蜡中以模拟周围组织。使用聚硅氧烷印模材料对样本进行处理,将其嵌入丙烯酸树脂中,使冠方8 mm留在外面以模拟牙周韧带。在万能试验机上以1 mm/min的速度对样本施加侧向力。确定导致样本骨折的最大力值(F-max),并使用单向方差分析和Tukey HSD检验对结果进行统计学评估,显著性设定为(P < 0.05)。

结果

对照组显示出最大抗折性(P < 0.05)。Thermafil组显示出比单锥技术、冷侧方加压技术和System B更高的抗折性(P < 0.05)。

结论

得出的结论是,根管的预备和扩大会降低牙齿的抗折性,而Thermafil增加了牙根的抗折性。

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