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首页> 外文期刊>The Journal of Advanced Prosthodontics >Comparative analysis of transmittance for different types of commercially available zirconia and lithium disilicate materials
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Comparative analysis of transmittance for different types of commercially available zirconia and lithium disilicate materials

机译:不同类型的市售氧化锆和二硅酸锂材料的透射率比较分析

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摘要

PURPOSE Translucency and colour stability are two most important aspects for an aesthetic dental restoration. Glass ceramic restorations are popular amongst clinicians because of their superior aesthetic properties. In the last decade, zirconia has generated tremendous interest due to its favorable mechanical and biological properties. However, zirconia lacks the translucency that lithium disilicate materials possess and therefore has limitations in its use, especially in esthetically demanding situations. There has been a great thrust in research towards developing translucent zirconia materials for dental restorations. The objective of the study was to evaluate and compare the transmittance of a translucent variant of zirconia to lithium disilicate. MATERIALS AND METHODS Two commercially available zirconia materials (conventional and high translucency) and 2 lithium disilicate materials (conventional and high translucency) with standardized dimensions were fabricated. Transmittance values were measured for all samples followed by a microstructural analysis using a finite element scanning electron microscope. One way analysis of variance combined with a Tukey-post hoc test was used to analyze the data obtained ( P =.05). RESULTS High translucency lithium disilicate showed highest transmittance of all materials studied, followed by conventional lithium disilicate, high translucency zirconia and conventional zirconia. The difference between all groups of materials was statistically significant. The transmittance of the different materials correlated to their microstructure analysis. CONCLUSION Despite manufacturers' efforts to make zirconia significantly more translucent, the transmittance values of these materials still do not match conventional lithium disilicate. More research is required on zirconia towards making the material more translucent for its potential use as esthetic monolithic restoration.
机译:目的半透明和颜色稳定性是美观的牙齿修复的两个最重要的方面。玻璃陶瓷修复体因其卓越的美学特性而在临床医生中广受欢迎。在过去的十年中,氧化锆因其良好的机械和生物学特性而引起了人们的极大兴趣。然而,氧化锆缺乏二硅酸锂材料所具有的半透明性,因此在其使用中存在局限性,特别是在审美要求较高的情况下。在开发用于牙齿修复体的半透明氧化锆材料方面有很大的研究重点。该研究的目的是评估和比较氧化锆的半透明变体对二硅酸锂的透射率。材料和方法制造了两种具有标准化尺寸的市售氧化锆材料(常规和高透明性)和2种二硅酸锂材料(常规和高透明性)。测量所有样品的透射率值,然后使用有限元扫描电子显微镜进行显微结构分析。使用方差分析与Tukey-post hoc检验相结合的一种方法来分析获得的数据(P = .05)。结果高透明性的二硅酸锂在所有研究的材料中显示出最高的透射率,其次是常规的二硅酸锂,高透明性的氧化锆和常规的氧化锆。所有材料组之间的差异具有统计学意义。不同材料的透射率与其微观结构分析相关。结论尽管制造商努力使氧化锆变得更加半透明,但这些材料的透射率值仍不匹配常规的二硅酸锂。对于氧化锆,需要做更多的研究,以使其更透明,以使其有可能用作美学整体修复体。

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