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Effect of Various Surface Treatments on the Push-Out Bond Strength of Fiber Posts to Root Dentin

硅烷化 粘结强度 材料科学 胶粘剂 牙本质 立体显微镜 牙科 筛子(范畴论) 纤维 复合材料 牙科粘接 数学 医学 组合数学 图层(电子)
作者
Janani Karunakaran,Deepa Natesan Thangaraj,Sebeena Mathew,Karthick Kumaravadivel,Boopathi Thangavel
出处
期刊:Cureus [Cureus, Inc.]
卷期号:15 (12): e51323-e51323 被引量:1
标识
DOI:10.7759/cureus.51323
摘要

Background This study aimed to evaluate the effect of various surface treatments on the push-out bond strength of fiber posts to root dentin. Methodology A total of 96 single-rooted premolars were decoronated and obturated and post spaces were prepared for 9 mm. The canals were irrigated with 17% ethylenediaminetetraacetic acid followed by distilled water. The samples were divided into the two following groups based on the type of fiber posts used: Group I - glass fiber post (Reforpost size 1) and Group II: quartz fiber post (Quartzix Added Posts number 1). Further, each group was divided into four subgroups based on the surface treatments (A: no treatment (control); B: silanization; C: 4% titanium tetrafluoride (four minutes) followed by silanization; D: sandblasting followed by silanization). After surface treatments, posts were cemented using self-adhesive resin cement (RelyX U200). Three 2 mm thick slices were obtained and push-out tests were done. Failure modes were analyzed under a stereomicroscope. The surface morphology of the posts was analyzed with a scanning electron microscope. Data were analyzed using a one-way analysis of variance. Results Treating the posts with airborne particle abrasion (sandblasting) followed by silanization showed the highest bond strength. The coronal level of the root showed the highest bond strength compared to the middle and apical levels. Adhesive failures between the resin cement and dentin were found to be the highest. Conclusions Sandblasting followed by silanization produced the highest bond strength. The coronal level of the root showed the highest bond strength. Adhesive failures were the highest followed by mixed failures.
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