首页> 美国卫生研究院文献>Journal of Applied Oral Science >INFLUENCE OF DIFFERENT CANTILEVER EXTENSIONS AND GLASS OR POLYARAMID REINFORCEMENT FIBERS ON FRACTURE STRENGTH OF IMPLANT-SUPPORTED TEMPORARY FIXED PROSTHESIS
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INFLUENCE OF DIFFERENT CANTILEVER EXTENSIONS AND GLASS OR POLYARAMID REINFORCEMENT FIBERS ON FRACTURE STRENGTH OF IMPLANT-SUPPORTED TEMPORARY FIXED PROSTHESIS

机译:不同悬臂延伸和玻璃纤维或聚酰胺纤维对植入物支撑临时固定假体的断裂强度的影响

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摘要

In long-term oral rehabilitation treatments, resistance of provisional crowns is a very important factor, especially in cases of an extensive edentulous distal space. The aim of this laboratorial study was to evaluate an acrylic resin cantilever-type prosthesis regarding the flexural strength of its in-balance portion as a function of its extension variation and reinforcement by two types of fibers (glass and polyaramid), considering that literature is not conclusive on this subject. Each specimen was composed by 3 total crowns at its mesial portion, each one attached to an implant component (abutment), while the distal portion (cantilever) had two crowns. Each specimen was constructed by injecting acrylic resin into a two-part silicone matrix placed on a metallic base. In each specimen, the crowns were fabricated with either acrylic resin (control group) or acrylic resin reinforced by glass (Fibrante, Angelus) or polyaramide (Kevlar 49, Du Pont) fibers. Compression load was applied on the cantilever, in a point located 7, 14 or 21 mm from the distal surface of the nearest crown with abutment, to simulate different extensions. The specimen was fixed on the metallic base and the force was applied until fracture in a universal test machine. Each one of the 9 sub-groups was composed by 10 specimens. Flexural strength means (in kgf) for the distances of 7, 14 and 21 mm were, respectively, 28.07, 8.27 and 6.39 for control group, 31.89, 9.18 and 5.16 for Kevlar 49 and 30.90, 9.31 and 6.86 for Fibrante. Data analysis ANOVA showed statistically significant difference (p<0.05) only regarding cantilever extension. Tukey's test detected significantly higher flexural strength for the 7 mm-distance, followed by 14 and 21 mm. Fracture was complete only on specimens of non-reinforced groups.
机译:在长期的口腔康复治疗中,临时牙冠的阻力是一个非常重要的因素,尤其是在远端无牙本质的远端空间中。这项实验室研究的目的是评估丙烯酸树脂悬臂式假体,其平衡部分的挠曲强度取决于其通过两种纤维(玻璃纤维和聚芳纶纤维)的延伸变化和增强而变化。在这个问题上没有定论。每个标本在其内侧部分由3个总冠组成,每个冠均附接到植入物组件(基台),而远端部分(悬臂)有2个冠。通过将丙烯酸树脂注入放置在金属基底上的两部分式有机硅基质中来构造每个样品。在每个样品中,冠部均用丙烯酸树脂(对照组)或玻璃纤维(Fibrante,Angelus)或聚芳酰胺(Kevlar 49,Du Pont)增强的丙烯酸树脂制成。在悬臂上施加压缩载荷,该位置距最近的带有基台的牙冠的远端表面7、14或21 mm,以模拟不同的延伸。将样品固定在金属底座上,并施加压力直到在万能试验机中断裂。 9个分组中的每个分组均由10个样本组成。距离为7、14和21毫米的抗弯强度平均值(单位为kgf),对照组分别为28.07、8.27和6.39,Kevlar 49分别为31.89、9.18和5.16,Fibrante为30.90、9.31和6.86。数据分析ANOVA仅在悬臂延伸方面显示出统计学上的显着差异(p <0.05)。 Tukey的测试在7毫米距离处检测到明显更高的抗弯强度,随后分别是14和21毫米。仅在非增强组的标本上才完成骨折。

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