大块填充树脂基复合材料与三种材料对玻璃纤维增强桩胶结性能的比较。

Carlos Alberto Kenji Shimokawa, Paula Mendes Acatauassú Carneiro, Tamile Rocha da Silva Lobo, Roberto Ruggiero Braga, Míriam Lacalle Turbino, Adriana Bona Matos
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引用次数: 0

摘要

目的:本研究验证了使用可流动的大块填充复合材料(BF)粘合玻璃纤维增强桩的可能性,并将其推出粘结强度和显微硬度与3种材料的这些特性进行了比较。材料和方法:使用60根经根管治疗的牛根。桩采用常规双固化水泥(CC)进行胶结;自粘水泥(SA);双固化复合材料;和男朋友。保存1周和4个月后分别进行推出粘结强度(n = 10)和显微硬度(n = 5)测试。采用双向重复测量方差分析(ANOVA)、单因素方差分析、t检验和Tukey事后检验对推出粘结强度和显微硬度结果进行检验;采用Pearson相关检验验证推出粘结强度与显微硬度结果的相关性(α = 0.05)。结果:老化前,BF在宫颈三分之一处的推出粘结强度高于CC和SA (p < 0.01)。所有材料老化前后的推出粘结强度均无差异(p = 0.84)。硬度方面,只有SA时效前高于时效后(p < 0.01)。RC和BF在顶端区域的硬度都没有达到最大硬度的80%。材料的推出粘结强度与显微硬度呈极显著正相关(p < 0.01, R2 = 0.7912)。结论:BF的推出粘结强度和显微硬度与luting材料相当或更高,可用于光固化条件下的树脂桩胶结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparison between a bulk-fill resin-based composite and three luting materials on the cementation of fiberglass-reinforced posts.

Comparison between a bulk-fill resin-based composite and three luting materials on the cementation of fiberglass-reinforced posts.

Comparison between a bulk-fill resin-based composite and three luting materials on the cementation of fiberglass-reinforced posts.

Comparison between a bulk-fill resin-based composite and three luting materials on the cementation of fiberglass-reinforced posts.

Objectives: This study verified the possibility of cementing fiberglass-reinforced posts using a flowable bulk-fill composite (BF), comparing its push-out bond strength and microhardness with these properties of 3 luting materials.

Materials and methods: Sixty endodontically treated bovine roots were used. Posts were cemented using conventional dual-cured cement (CC); self-adhesive cement (SA); dual-cured composite (RC); and BF. Push-out bond strength (n = 10) and microhardness (n = 5) tests were performed after 1 week and 4 months of storage. Two-way repeated measures analysis of variance (ANOVA), 1-way ANOVA, t-test, and Tukey post-hoc tests were applied for the push-out bond strength and microhardness results; and Pearson correlation test was applied to verify the correlation between push-out bond strength and microhardness results (α = 0.05).

Results: BF presented higher push-out bond strength than CC and SA in the cervical third before aging (p < 0.01). No differences were found between push-out bond strength before and after aging for all the luting materials (p = 0.84). Regarding hardness, only SA presented higher values measured before than after aging (p < 0.01). RC and BF did not present 80% of the maximum hardness at the apical regions. A strong positive correlation was found between the luting materials' push-out bond strength and microhardness (p < 0.01, R2 = 0.7912).

Conclusions: The BF presented comparable or higher push-out bond strength and microhardness than the luting materials, which indicates that it could be used for cementing resin posts in situations where adequate light curing is possible.

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