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首页> 外文期刊>The Journal of Prosthetic Dentistry >Microleakage of different sealing materials in access holes of internal connection implant systems
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Microleakage of different sealing materials in access holes of internal connection implant systems

机译:内部连接植入系统的进入孔中不同密封材料的微泄漏

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Statement of problem: Current implant systems cannot completely prevent microleakage from the access holes of screw-retained implant prostheses, which may constitute risks to the clinical success of the implants. Purpose: The purpose of this study was to evaluate the levels of microleakage through the access holes of screw-retained implant prostheses sealed with different materials. Material and methods: An implant with an internal hexagonal configuration was connected to a temporary abutment with an acrylic resin crown. The apical 6.5 mm of the access hole was filled with 1 of the following materials: cotton pellet, silicone sealing material, vinyl polysiloxane, or gutta-percha. The remaining coronal 3 mm was sealed with composite resin. Cyclic loading with 21 N at 1 Hz was applied 16000 times to the specimens in 0.5 basic fuchsin solution according to the long axis of the tooth. Basic fuchsin dye which penetrated into the internal wall of the abutment through the access hole was dissolved with methyl alcohol. Then the absorbance was measured by a spectrophotometer at 540 nm to evaluate the degree of microleakage. The results were statistically analyzed with 1-way ANOVA and the Tukey HSD test. Results: From greatest to least, the levels of microleakage were in the following order: cotton pellet, silicone sealing material, vinyl polysiloxane, and gutta-percha. The microleakage associated with gutta-percha was not significantly different from that of vinyl polysiloxane. Conclusions: When sealing the access holes of screw-retained implant prostheses, gutta-percha or vinyl polysiloxane would help reduce microleakage.
机译:问题陈述:当前的植入物系统无法完全防止螺钉固位的植入物假体的进入孔发生微泄漏,这可能构成植入物临床成功的风险。目的:本研究的目的是评估通过用不同材料密封的螺钉固定的植入物假体的通孔的微渗漏水平。材料和方法:将具有内部六边形配置的植入物连接到带有丙烯酸树脂牙冠的临时基台。入口的顶部6.5毫米处填充了以下材料之一:棉球,硅酮密封材料,乙烯基聚硅氧烷或古塔胶。用复合树脂密封剩余的3mm冠状面。根据牙齿的长轴,在0.5碱性品红溶液中向样品施加16000次21 N的循环载荷。通过访问孔渗入基台内壁的碱性品红染料用甲醇溶解。然后用分光光度计在540nm处测量吸光度以评估微渗漏程度。使用1向ANOVA和Tukey HSD测试对结果进行统计分析。结果:从最小到最大,微渗漏的程度按以下顺序排列:棉球,硅酮密封材料,乙烯基聚硅氧烷和古塔胶。与胶粘剂相关的微渗漏与乙烯基聚硅氧烷的微渗漏没有显着差异。结论:当密封螺钉固定的假体的进入孔时,牙胶或乙烯基聚硅氧烷将有助于减少微渗漏。

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