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使用可流动短纤维复合材料粘结固位的单个成型纤维桩的粘结

Adhesion of individually formed fiber post adhesively luted with flowable short fiber composite.

作者信息

Suni Anton O, Lassila Lippo V J, Tuokko Jarno K, Garoushi Sufyan, Vallittu Pekka K

机构信息

Department of Biomaterials Science and Turku Clinical Biomaterial Center (TCBC), Institute of Dentistry, University of Turku, Turku, Finland.

Wellbeing Services County of South-West Finland, Turku, Finland.

出版信息

Biomater Investig Dent. 2023 May 11;10(1):2209593. doi: 10.1080/26415275.2023.2209593. eCollection 2023.

Abstract

This laboratory study aimed to measure the push-out bond strength of individually formed fiber-reinforced composite (FRC) post luted with flowable short fiber-reinforced composite (SFRC) and to evaluate the influence of post coating with light-cured adhesive. Post spaces (Ø 1.7 mm) were drilled into 20 single-rooted decoronated premolar teeth. Post spaces were etched and treated with light-cured universal adhesive (G-Premio Bond). Individually formed FRC posts (Ø 1.5 mm, everStick) were luted either with light-cured SFRC (everX Flow) or conventional particulate-filled (PFC) dual-cure luting cement (G-CEM LinkForce). Half of the posts from each group were treated with dimethacrylate adhesive resin (Stick Resin) for 5 min before luting. After storage in water for two days, the roots were sectioned into 2 mm thick disks ( = 10/per group). Then, a push-out test-setup was used in a universal testing machine to measure the bond strength between post and dentin. The interface between post and SFRC was inspected using optical and scanning electron microscopy (SEM). Data were statistically analyzed using analysis of variance ANOVA ( = .05). Higher bond strength values ( < .05) were obtained when flowable SFRC was used as a post luting material. Resin coating of a post showed no significant effect ( > .05) on bond strength values. Light microscope images showed the ability of discontinuous short fibers in SFRC to penetrate into FRC posts. The use of flowable SFRC as luting material with individually formed FRC posts proved to be a promising method to improve the interface adhesion.

摘要

这项实验室研究旨在测量用可流动短纤维增强复合材料(SFRC)粘结的单独成型纤维增强复合材料(FRC)桩的推出粘结强度,并评估用光固化胶粘剂对桩进行涂层处理的影响。在20颗单根去冠前磨牙上钻出桩道(直径1.7毫米)。对桩道进行酸蚀并用光固化通用胶粘剂(G-Premio Bond)处理。单独成型的FRC桩(直径1.5毫米,everStick)用可流动光固化SFRC(everX Flow)或传统颗粒填充(PFC)双固化粘结水门汀(G-CEM LinkForce)粘结。每组一半的桩在粘结前用二甲基丙烯酸酯粘结树脂(Stick Resin)处理5分钟。在水中储存两天后,将牙根切成2毫米厚的薄片(每组=10片)。然后,在万能试验机上使用推出试验装置测量桩与牙本质之间的粘结强度。使用光学显微镜和扫描电子显微镜(SEM)检查桩与SFRC之间的界面。数据采用方差分析(ANOVA)进行统计学分析(α=0.05)。当使用可流动SFRC作为桩粘结材料时,获得了更高的粘结强度值(P<0.05)。桩的树脂涂层对粘结强度值没有显著影响(P>0.05)。光学显微镜图像显示了SFRC中不连续短纤维渗透到FRC桩中的能力。使用可流动SFRC作为单独成型FRC桩的粘结材料被证明是一种改善界面粘结的有前途的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92b2/10177680/83dcb6e0f45f/IABO_A_2209593_F0001_C.jpg

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