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间接椅旁复合树脂核支持的陶瓷全冠的抗折性能

Fracture Resistance of Ceramic Crowns Supported with Indirect Chair-side Composite Cores.

作者信息

Abdelaziz Khalid M, Keshk Cinderella K, Alshadidi Abdulkhaliq, Mafraq Salman, Murchison David F

机构信息

Department of Restorative Dental Sciences, College of Dentistry, King Khalid University, Abha, KSA.

BDS Program, Faculty of Oral and Dental Medicine, Al-Ahram Canadian University, 6 October City, Giza, Egypt.

出版信息

J Int Soc Prev Community Dent. 2018 Jan-Feb;8(1):34-40. doi: 10.4103/jispcd.JISPCD_381_17. Epub 2018 Feb 22.

Abstract

AIMS AND OBJECTIVES

To evaluate the influence of indirect chair-side polymerization of resin composite cores on the fracture resistance of overlaying IPS e.max Press crowns.

MATERIALS AND METHODS

Root canals of 60 extracted premolars were prepared to receive #2 fiber posts after the crowns were sectioned 2 mm above the cervical line. In Groups 1-3 ( = 10 each), posts were luted to the prepared dowel spaces using self-adhesive resin cement. Resin composite cores were then bonded and incrementally built-up using Filtek Z250 XT, Filtek P60, and Filtek P90 resin composites. In Groups 4-6 ( = 10 each), the fabricated post-core systems were subjected to post-curing heat and pressure treatment before cementation to their respective teeth using self-adhesive resin cement. Another 10 sound premolars served as control. All teeth in the test and control groups were then subjected to standardized preparation to receive IPS e.max Press crowns before testing their fracture resistance and the mode of restorations' failure. The collected results were statistically analyzed using ANOVA, Kruskal-Wallis, and Tukey's tests on the past software used at α = 0.05 to stand on the significance of the detected differences.

RESULTS

Significant differences were detected between the fracture resistance of teeth in different groups (ANOVA, = 2.857E-35). Crowns in Groups 4-6 provided higher fracture resistance than those in Groups 1-3 (Tukey's test, < 0.05). Crowns in Groups 4 and 6 provided higher fracture resistance than the control, while those in Groups 2 and 3 provided lower fracture resistance than the control (Tukey's test, < 0.05).

CONCLUSION

Indirect composite cores improved the fracture resistance of IPS e.max Press crowns when compared to directly fabricated post and cores. The directly and indirectly polymerized nanohybrid, methacrylate-based composite (Filtek Z250 XT) cores yielded the highest fracture resistance for the utilized all-ceramic crowns.

摘要

目的

评估树脂复合核间接椅旁聚合对覆盖的IPS e.max Press全瓷冠抗折性的影响。

材料与方法

60颗拔除的前磨牙在颈缘上方2mm处截冠后,预备根管以容纳#2纤维桩。在第1 - 3组(每组n = 10)中,使用自粘结树脂水门汀将纤维桩粘结至预备的桩道内。然后分别使用Filtek Z250 XT、Filtek P60和Filtek P90树脂复合材料粘结并逐层堆塑树脂复合核。在第4 - 6组(每组n = 10)中,制作的桩核系统在使用自粘结树脂水门汀粘结至各自牙齿之前,先进行后固化热压处理。另外10颗完好的前磨牙作为对照。测试组和对照组的所有牙齿在测试其抗折性和修复体失败模式之前,均进行标准化预备以容纳IPS e.max Press全瓷冠。使用ANOVA、Kruskal - Wallis和Tukey检验对收集到的结果进行统计分析,所用软件的α = 0.05,以确定检测到的差异的显著性。

结果

不同组牙齿的抗折性之间存在显著差异(ANOVA,P = 2.857E - 35)。第4 - 6组的全瓷冠比第1 - 3组的具有更高的抗折性(Tukey检验,P < 0.05)。第4组和第6组的全瓷冠比对照组具有更高的抗折性,而第2组和第3组的全瓷冠比对照组具有更低的抗折性(Tukey检验,P < 0.05)。

结论

与直接制作的桩核相比,间接复合核提高了IPS e.max Press全瓷冠的抗折性。直接和间接聚合的基于甲基丙烯酸酯的纳米混合复合树脂(Filtek Z250 XT)核为所使用的全瓷冠提供了最高的抗折性。

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