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内间隙宽度和粘结剂类型对拉伸试验中氧化锆全冠固位力的影响。

Influence of internal-gap width and cement type on the retentive force of zirconia copings in pullout testing.

机构信息

Department of Prosthodontics, Gangnam Severance Dental Hospital, College of Dentistry, Yonsei University, Seoul, South Korea.

出版信息

J Dent. 2012 Oct;40(10):866-72. doi: 10.1016/j.jdent.2012.07.007. Epub 2012 Jul 20.

Abstract

OBJECTIVES

The purpose of this study was to evaluate the influence of internal-gap width and cement type on the retentive force of zirconia copings.

METHODS

A CAD/CAM system was used to mill 48 identical abutments on extracted human molars and fabricate 48 zirconia copings. The internal-gap width for cement was set to 40 μm or 160 μm (n=24 each). Three cement types (Panavia F, RelyX Unicem, and RelyX Luting) were used with each internal-gap width (n=8/cement type). The intaglio surfaces of the copings were airborne-particle abraded, and each coping was cemented onto the corresponding abutment using the indicated luting agent. After 10,000 cycles of thermocycling, the retentive force was evaluated by pullout tests. Kruskal-Wallis and Wilcoxon Rank Sum tests were used for data analysis (α=0.05).

RESULTS

In the 40-μm gap groups, Panavia F had the highest mean retentive force compared to RelyX Unicem and RelyX Luting (P<0.000). In 160-μm gap groups, RelyX Unicem had the highest mean retentive force compared to Panavia F and RelyX Luting (P<0.000).

CONCLUSIONS

With the increase in internal gap width, a resin cement with self-etching agents as a co-initiator for autopolymerization resulted in significantly decreased retentive force, whereas a resin-modified glass ionomer cement or a self-adhesive resin cement did not. Use of resin cements rather than resin-modified glass ionomer cements improved the retentive force of zirconia copings regardless of the amount of internal gap width.

摘要

目的

本研究旨在评估内间隙宽度和粘结剂类型对氧化锆全瓷覆盖体固位力的影响。

方法

使用 CAD/CAM 系统在离体人磨牙上制备 48 个相同的基台,并制作 48 个氧化锆全瓷覆盖体。粘结剂层的内间隙宽度设置为 40μm 或 160μm(每组 24 个)。采用 3 种粘结剂(Panavia F、RelyX Unicem 和 RelyX Luting),每种粘结剂对应两种内间隙宽度(每组 8 个)。全瓷覆盖体的印模面采用喷砂处理,每种粘结剂均使用指定的粘结剂粘结到相应的基台上。经过 10000 次热循环后,通过拔出试验评估固位力。采用 Kruskal-Wallis 和 Wilcoxon 秩和检验进行数据分析(α=0.05)。

结果

在 40μm 间隙组中,Panavia F 的平均固位力显著高于 RelyX Unicem 和 RelyX Luting(P<0.000)。在 160μm 间隙组中,RelyX Unicem 的平均固位力显著高于 Panavia F 和 RelyX Luting(P<0.000)。

结论

随着内间隙宽度的增加,具有自酸蚀剂作为自聚合引发剂的树脂粘结剂会显著降低固位力,而树脂改性玻璃离子粘结剂或自粘结树脂粘结剂则不会。无论内间隙宽度如何,使用树脂粘结剂而非树脂改性玻璃离子粘结剂均可提高氧化锆全瓷覆盖体的固位力。

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