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多步粘结剂粘结与一步粘结剂粘结:机械循环前后纤维桩与牙根牙本质之间的推出粘结强度

Multi-step adhesive cementation versus one-step adhesive cementation: push-out bond strength between fiber post and root dentin before and after mechanical cycling.

作者信息

Amaral Marina, Rippe Marilia Pivetta, Bergoli Cesar Dalmolin, Monaco Carlo, Valandro Luiz Felipe

机构信息

Faculty of Odontology, Sao Paulo State University (UNESP), Sao Jose dos Campos, Brazil.

出版信息

Gen Dent. 2011 Sep-Oct;59(5):e185-91.

PMID:22313828
Abstract

This study evaluated the effects of mechanical cycling on resin push-out bond strength to root dentin, using two strategies for fiber post cementation. Forty bovine roots were embedded in acrylic resin after root canal preparation using a custom drill of the fiber post system. The fiber posts were cemented into root canals using two different strategies (N = 20): a conventional adhesive approach using a three-step etch-and-rinse adhesive system combined with a conventional resin cement (ScotchBond Multi Purpose Plus + RelyX ARC ), or a simplified adhesive approach using a self-adhesive resin cement (RelyX U100). The core was built up with composite resin and half of the specimens from each cementation strategy were submitted to mechanical cycling (45 degree angle; 37 degrees C; 88 N; 4 Hz; 700,000 cycles). Each specimen was cross-sectioned and the disk specimens were pushed-out. The means from every group (n = 10) were statistically analyzed using a two-way ANOVA and a Tukey test (P = 0.05). The cementation strategy affected the push-out results (P < 0.001), while mechanical cycling did not (P = 0.3716). The simplified approach (a self-adhesive resin cement) had better bond performance despite the conditioning. The self-adhesive resin cement appears to be a good option for post cementation. Further trials are needed to confirm these results.

摘要

本研究采用两种纤维桩黏结策略,评估了机械循环对树脂与牙根牙本质推出黏结强度的影响。使用纤维桩系统定制钻进行根管预备后,将40颗牛牙根嵌入丙烯酸树脂中。采用两种不同策略(N = 20)将纤维桩黏结到根管中:一种是传统黏结方法,使用三步酸蚀冲洗黏结系统并结合传统树脂水门汀(ScotchBond Multi Purpose Plus + RelyX ARC);另一种是简化黏结方法,使用自黏结树脂水门汀(RelyX U100)。用复合树脂构建核,每种黏结策略的一半标本进行机械循环(45度角;37℃;88 N;4 Hz;700,000次循环)。将每个标本进行横断面切割,并推出圆盘状标本。使用双向方差分析和Tukey检验(P = 0.05)对每组(n = 10)的平均值进行统计学分析。黏结策略影响推出结果(P < 0.001),而机械循环未产生影响(P = 0.3716)。尽管经过预处理,简化方法(自黏结树脂水门汀)仍具有更好的黏结性能。自黏结树脂水门汀似乎是桩黏结的一个良好选择。需要进一步试验来证实这些结果。

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