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测量纤维桩与根管牙本质之间的粘结强度:不同测试方法的比较。

Measuring bond strength between fiber post and root dentin: a comparison of different tests.

机构信息

Department of Biomaterials and Oral Biochemistry, Dental School, University of Sao Paulo, São Paulo, SP, Brazil.

出版信息

J Adhes Dent. 2010 Dec;12(6):477-85. doi: 10.3290/j.jad.a17856.

Abstract

PURPOSE

the aim of this study was to evaluate the ability of bond strength tests to accurately measure the bond strength of fiber posts luted into root canals.

MATERIALS AND METHODS

the test methods studied were hourglass microtensile (HM), push-out (PS), modified pushout (MP), and pull-out (PL). The evaluated parameters were: bond strength values, reliability (using Weibull analysis), failure mode (using confocal microscopy), and stress distribution (using finite element analysis). Forty human intact single-rooted and endodontically treated teeth were divided into four groups. Each group was assigned one of the test methods. The samples in the HM and PS groups were 1.0 ± 0.1 mm thick; the HM samples were hourglass shaped and the PS samples were disk shaped. For the PL and MP groups, each 1-mm dentin slice was luted with a fiber post piece. Three-dimensional models of each group were made and stress was analyzed based on Von Mises criteria.

RESULTS

PL provided the highest values of bond strength, followed by MP, both of which also had greater amounts of adhesive failures. PS showed the highest frequency of cohesive failures. MP showed a more homogeneous stress distribution and a higher Weibull modulus.

CONCLUSION

the specimen design directly influences the biomechanical behavior of bond strength tests.

摘要

目的

本研究旨在评估粘结强度测试准确测量纤维桩粘结到根管内的粘结强度的能力。

材料与方法

研究的测试方法包括沙漏微拉伸(HM)、推出(PS)、改良推出(MP)和拔出(PL)。评估的参数包括:粘结强度值、可靠性(使用威布尔分析)、失效模式(使用共聚焦显微镜)和应力分布(使用有限元分析)。将 40 颗完整的人单根和根管治疗的牙齿分为四组。每组采用一种测试方法。HM 和 PS 组的样本厚度为 1.0±0.1mm;HM 样本为沙漏形,PS 样本为圆盘形。对于 PL 和 MP 组,每个 1mm 的牙本质片用纤维桩片粘结。制作每组的三维模型,并根据 Von Mises 标准分析应力。

结果

PL 提供了最高的粘结强度值,其次是 MP,两者都有更多的粘固失败。PS 显示出最高的内聚性失效频率。MP 显示出更均匀的应力分布和更高的威布尔模数。

结论

样本设计直接影响粘结强度测试的生物力学行为。

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