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Correlating in vitro scratch test with in vivo contact free occlusal area wear of contemporary dental composites

机译:将当代牙科复合材料的体外划痕测试与体内无接触咬合区域磨损相关联

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摘要

Objectives. The aims of this study are to determine the extent to which the ranking order for clinical Contact-Free-Occlusal-Area (CFOA) wear performance of composites correlates with the ranking based on in vitro scratch hardness, and to analyze the extent to which the microstructure influences the overall trend. Materials and methods. The patient data and CFOA wear measurements of 16 Tetric-C, 17 Tetric-EC, 16 Gradia-DP, 18 Filtek Supreme, 19 Z100 restorations in 31 subjects (8 males, 23 females) of two randomized clinical trials were fitted in a mixed-effect model. The in vivo performance of the restoratives was summarized by ranking the estimated material-related coefficients in the model. Scratch tests on two specimens per composite were run at a constant speed of 0.05 mm/s under indenter with normal loads of 15, 25, and 35 mN. Scratch width, depth and hardness calculated by imaging the scratch tracks were summarized in a model, the material-related coefficients were ranked and correlated with that of in vivo ranking order. Results. The best in vivo model included as significant factors (p < 0.0001) the variables material, time/month, cavity type, and jaw type. The CFOA wear ranking order - Filtek Supreme, Z100 > Tetric-C, Tetric-EC > Gradia-DP-correlated closely (R~2 = 0.991) with the order of scratch hardness - Z100 > Filtek Supreme > Tetric-C, Tetric-EC > Gradia-DP. Significance. Scratch tests could roughly categorize a new material as to whether it will probably exhibit a high or low in vitro scratch resistance and/or clinical CFOA wear rate.
机译:目标。这项研究的目的是确定复合材料的临床无接触咬合区域(CFOA)磨损性能的排名顺序与基于体外划痕硬度的排名相关联,并分析该程度微观结构影响整体趋势。材料和方法。将两项随机临床试验的31位受试者(8位男性,23位女性)中的16位Tetric-C,17 Tetric-EC,16 Gradia-DP,18 Filtek Supreme,19 Z100修复体的患者数据和CFOA磨损量进行混合拟合效果模型。通过在模型中对估计的材料相关系数进行排名,总结了修复剂的体内性能。在15牛顿,25牛顿和35牛顿的正常载荷下,在压头下以0.05毫米/秒的恒定速度对每个复合物的两个样品进行划痕测试。通过对划痕轨迹成像计算出的划痕宽度,深度和硬度汇总在模型中,对材料相关系数进行排名,并与体内排名顺序相关。结果。最佳的体内模型包括以下重要因素(p <0.0001):材料,时间/月,型腔和下颌类型等变量。 CFOA磨损排名顺序-Filtek Supreme,Z100> Tetric-C,Tetric-EC> Gradia-DP相关性密切(R〜2 = 0.991),按划痕硬度顺序-Z100> Filtek Supreme> Tetric-C,Tetric- EC> Gradia-DP。意义。划痕测试可以对新材料进行粗略分类,以决定其在体外是否具有较高的抗划伤性和/或临床CFOA磨损率。

著录项

  • 来源
    《Dental materials》 |2013年第3期|259-268|共10页
  • 作者单位

    Leuven BIOMAT Research Cluster, Catholic University of Leuuen, Leuven, Belgium;

    Department of Metallurgy and Materials Engineering, Catholic University o/Leuuen, Leuven, Belgium;

    Leuven BIOMAT Research Cluster, Catholic University of Leuuen, Leuven, Belgium;

    Leuven BIOMAT Research Cluster, Catholic University of Leuuen, Leuven, Belgium;

    Leuven BIOMAT Research Cluster, Catholic University of Leuuen, Leuven, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wear; correlation; scratch tests;

    机译:穿;相关性划痕测试;
  • 入库时间 2022-08-18 03:47:02

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