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矿物三氧化物聚合体(MTA)根尖塞厚度对年轻恒牙根折抗力的影响。

Effect of Mineral Trioxide Aggregate Apical Plug Thickness on Fracture Resistance of Immature Teeth.

机构信息

Private Clinic, Samsun, Turkey.

Oral Health Center, Karabük, Turkey.

出版信息

J Endod. 2017 Oct;43(10):1697-1700. doi: 10.1016/j.joen.2017.05.007. Epub 2017 Jul 20.

Abstract

INTRODUCTION

The aim of this study was to compare the fracture resistance of simulated immature teeth after using different thicknesses of mineral trioxide aggregate (MTA) apical plugs.

METHODS

Fifty-two human maxillary anterior teeth were used. Five teeth were the positive control group; they were prepared using Peeso reamers to simulate immature teeth without any access cavity preparation. Access cavities of the 47 teeth were prepared, and the canals were instrumented with Peeso reamers. Five teeth served as the negative control; they were filled with calcium hydroxide. Forty-two teeth were divided into 3 groups; in groups 1, 2, and 3, MTA was placed into canals as a 3-mm and a 6-mm apical plug and a thorough canal length, respectively. The rest of the canals in groups 1 and 2 were filled with gutta-percha and AH Plus sealer (Dentsply DeTrey, Konstanz, Germany). After the storage period, the roots were covered with a polyether impression material and were embedded into self-curing resin blocks. Each specimen was then subjected to fracture testing using a universal testing machine. Data were analyzed using 1-way analysis of variance with the Tukey post hoc test for multiple comparisons.

RESULTS

The negative group showed the lowest fracture resistance compared with the other groups. The 3-mm apical plug group showed the highest fracture resistance (P < .05). No significant differences were found between the 3-mm and 6-mm apical plug groups (P > .05).

CONCLUSIONS

MTA should be used as an apical plug instead of root canal filling material to increase the fracture resistance of immature teeth.

摘要

简介

本研究的目的是比较使用不同厚度的矿化三氧化物聚合体(MTA)根尖塞治疗模拟未成熟牙的抗折能力。

方法

共使用 52 颗上颌前磨牙。5 颗为阳性对照组,使用 Peeso 扩孔钻模拟未成熟牙,不制备任何开髓腔。47 颗牙制备开髓腔,用 Peeso 扩孔钻预备根管。5 颗牙为阴性对照组,用氢氧化钙填充。42 颗牙分为 3 组;第 1、2 和 3 组分别将 MTA 作为 3-mm 和 6-mm 的根尖塞和彻底的根管长度填入根管。第 1 组和第 2 组其余根管用牙胶和 AH Plus 密封剂(Dentsply DeTrey,Konstanz,德国)填充。储存期结束后,将牙根用聚醚印模材料覆盖,嵌入自固化树脂块中。然后使用万能试验机对每个标本进行断裂测试。使用单因素方差分析和 Tukey 事后检验进行多重比较来分析数据。

结果

阴性组的抗折力最低,与其他组相比。3-mm 根尖塞组的抗折力最高(P<.05)。3-mm 和 6-mm 根尖塞组之间无显著差异(P>.05)。

结论

MTA 应作为根尖塞而不是根管充填材料,以提高未成熟牙的抗折能力。

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