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预处理和热循环对树脂核材料与各种纤维增强复合桩粘结强度的影响。

Effects of pretreatment and thermocycling on bond strength of resin core materials to various fiber-reinforced composite posts.

作者信息

Bitter Kerstin, Neumann Konrad, Kielbassa Andrej M

机构信息

Department of Operative Dentistry and Periodontology, University School of Dental Medicine, CharitéCentrum 3, Charité-Universitätsmedizin Berlin, Berlin, Germany.

出版信息

J Adhes Dent. 2008 Dec;10(6):481-9.

Abstract

PURPOSE

To evaluate the effects of pretreatment (silanization) and thermocycling on bond strengths of 2 core materials to 3 different types of fiber posts.

MATERIALS AND METHODS

Bond strengths of prefabricated glass (group 1), quartz (group 2), and individually formed glass fiber posts (group 3) to either a flowable or a highly viscous composite resin core material were measured using a push-out design. All posts were investigated with or without the application of a silane. Half of the specimens were stored in distilled water for 28 days, and were subsequently subjected to thermocycling (5000 cycles, 5 to 55 degrees C), whereas the other half was investigated after 24-h water storage.

RESULTS

Bond strengths were significantly affected by thermocycling (p < 0.0005), post type (p < 0.0005), and pretreatment (p < 0.0005), but not by the core material (p = 0.149; four-way ANOVA). Posts of group 3 demonstrated significantly higher bond strengths than all other posts, even after thermocycling (p < 0.05; Tukey-B).

CONCLUSION

While silanization had negligible effects, thermocycling drastically reduced bond strengths regardless of pretreatment, post type, or core material. The higher bond strengths between the group 3 posts and the flowable composite resin core material might result in improved stability of the core for postendodontic restorations.

摘要

目的

评估预处理(硅烷化)和热循环对两种核材料与三种不同类型纤维桩之间粘结强度的影响。

材料与方法

采用推出试验设计,测量预制玻璃纤维桩(第1组)、石英纤维桩(第2组)和个体化成型玻璃纤维桩(第3组)与可流动或高粘性复合树脂核材料之间的粘结强度。所有桩均在使用或未使用硅烷的情况下进行研究。一半标本在蒸馏水中储存28天,随后进行热循环(5000次循环,5至55摄氏度),而另一半标本在储存24小时后进行研究。

结果

热循环(p < 0.0005)、桩类型(p < 0.0005)和预处理(p < 0.0005)对粘结强度有显著影响,但核材料对其无显著影响(p = 0.149;四因素方差分析)。即使在热循环后,第3组的桩仍显示出比所有其他桩显著更高的粘结强度(p < 0.05;Tukey-B检验)。

结论

虽然硅烷化的影响可忽略不计,但无论预处理、桩类型或核材料如何,热循环都会显著降低粘结强度。第3组桩与可流动复合树脂核材料之间较高的粘结强度可能会提高根管治疗后修复体核的稳定性。

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