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Fracture resistance and marginal gap formation of post-core restorations: influence of different fiber-reinforced composites

机译:核心后修复后的断裂抗性和边缘间隙形成:不同纤维增强复合材料的影响

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Objectives The aim was to explore the fracture behavior and marginal gap within the root canal of endodontically treated (ET) premolars restored with different fiber-reinforced post-core composites (FRCs). Further aim was to evaluate the composite curing at different depths in the canal. Materials and methods Eighty-seven intact upper premolars were collected and randomly divided into six groups. After endodontic procedure, standard MOD cavities were prepared and restored with their respective fiber-reinforced post-core materials: group 1: prefabricated unidirectional FRC-post + conventional composite core; group 2: prefabricated unidirectional FRC-post + short fiber composite (SFRC) core; group 3: individually formed unidirectional FRC-post + conventional composite core; group 4: randomly oriented SFRC directly layered as post and core; group 5: individually formed unidirectional FRC + randomly oriented SFRC as post and core. After restorations were completed, teeth (n = 3/group) were sectioned and then stained. Specimens were viewed under a stereo microscope and the percentage of microgaps within the root canal was calculated. Fracture load was measured using universal testing machine. Results SFRC application in the root canal (groups 4 and 5) showed significantly higher fracture load (876.7 N) compared to the other tested groups (512-613 N) (p < 0.05). Post/core restorations made from prefabricated FRC-post (group 1) exhibited the highest number of microgaps (35.1%) at the examined interphase in the root canal. Conclusions The restoration of ET premolars with the use of SFRC as post-core material displayed promising performance in matter of microgap and load-bearing capacity.
机译:目标目的是探讨用不同纤维增强的后核复合材料(FRC)恢复的脊髓治疗的根管内的断裂行为和边缘间隙。进一步的目的是评估运河中不同深度的复合固化。材料和方法收集87个完整的上磨牙,并随机分为六组。在牙髓手术后,使用它们各自的纤维增强后核材料制备并恢复标准MOD腔:第1组:预制的单向FRC-POST +常规复合核心;第2组:预制的单向FRC-POST +短纤维复合(SFRC)核心;第3组:单独形成单向FRC-POST +常规复合核心;第4组:随机定向的SFRC直接分层为柱和核心;第5组:单独形成单向FRC +随机定向的SFRC作为柱和核心。修复后完成后,切割牙齿(n = 3 /组)然后染色。在立体显微镜下观察标本,并计算根管内的微量胶剂百分比。使用通用试验机测量裂缝载荷。结果在根管(组4和5)中的SFRC应用显示与其他测试基团(512-613 N)相比显示出显着更高的骨折载荷(876.7 n)(P <0.05)。由预制的FRC-POST(组1)制成的柱/核修复件在根管中的检查间相互作用中展示了最多的微量油脂(35.1%)。结论使用SFRC作为核心后材料的恢复恢复,可在微脂和承载能力下显示有希望的性能。

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