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The in vitro wear behavior of experimental resin-based composites derived from a commercial formulation

机译:源自商业配方的实验性树脂基复合材料的体外磨损行为

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摘要

Objective. To investigate the short- and long-term in vitro wear resistance of experimental resin-based composites (RBCs) derived from a commercial formulation. Methods. Six experimental RBCs were manufactured by manipulating the monomeric resin composition and the filler characteristics of Grandio (Voco GmbH, Cuxhaven, Germany). The Oregon Health Sciences University (OHSU) oral wear simulator was used in the presence of a food-like slurry to simulate three-body abrasion and attrition wear for 50,000,150,000 and 300,000 cycles. A three-dimensional image of each wear facet was created and the total volumetric wear (mm~3) and maximum wear depth (μm) were quantified for the RBC and antagonist. Statistical analyses of the total volumetric wear and maximum wear depth data (two- and one-way analyses of variance (ANOVA), with Tukey's post hoc tests where required) and regression analyses, were conducted at p = 0.05. Results. Two-way ANOVAs identified a significant effect of RBC material x wear cycles, RBC material and wear cycles (all p < 0.0001). Regression analyses showed significant increases in the total volumetric wear (p ≤ 0.001) and maximum wear depth data (p ≤ 0.004) for all RBCs with increasing wear cycles. Significance. Differences between all RBC materials were evident after ≥150,000 wear cycles and antagonist wear provided valuable information to support the experimental findings. Wear simulating machines can provide an indication of the clinical performance but clinical performance is multi-factorial and wear is only a single facet. Employing experimental RBCs provided by a dental manufacturer rather than using self-manufactured RBCs or dental products provides increased experimental control by limiting the variables involved.
机译:目的。研究源自商业配方的实验性树脂基复合材料(RBC)的短期和长期体外耐磨性。方法。通过操纵单体树脂成分和Grandio的填料特性(德国库克斯港的Voco GmbH)制造了六个实验性RBC。俄勒冈州健康科学大学(OHSU)口腔磨损模拟器在类食物浆液的存在下用于模拟50,000,150,000和300,000个循环的三体磨损和磨损。创建每个磨损面的三维图像,并对RBC和拮抗剂的总体积磨损(mm〜3)和最大磨损深度(μm)进行量化。对总体积磨损和最大磨损深度数据进行统计分析(方差的双向和单向分析(ANOVA),并在需要时进行Tukey事后检验),并进行回归分析,p = 0.05。结果。双向方差分析确定了RBC材料x磨损周期,RBC材料和磨损周期的显着影响(所有p <0.0001)。回归分析显示,随着磨损周期的增加,所有RBC的总体积磨损(p≤0.001)和最大磨损深度数据(p≤0.004)显着增加。意义。 ≥150,000次磨损循环后,所有RBC材料之间的差异都很明显,并且拮抗剂的磨损提供了宝贵的信息以支持实验结果。磨损模拟机可以提供临床表现的指标,但是临床表现是多因素的,磨损只是一个方面。使用牙科制造商提供的实验性RBC而不是使用自制的RBC或牙科产品,可以通过限制相关变量来提高实验控制能力。

著录项

  • 来源
    《Dental materials》 |2013年第4期|365-374|共10页
  • 作者单位

    Materials Science Unit, Division of Oral Biosriences, Dublin Dental University Hospital, Lincoln Place, Trinity College Dublin, Ireland;

    Regensburg University Medical Center, Department of Prosthetic Dentistry, Regensburg, Germany;

    Materials Science Unit, Division of Oral Biosriences, Dublin Dental University Hospital, Lincoln Place, Trinity College Dublin, Ireland;

    Materials Science Unit, Division of Oral Biosriences, Dublin Dental University Hospital, Lincoln Place, Trinity College Dublin, Ireland,Materials Science Unit, Dublin Dental University Hospital, Trinity College Dublin, Dublin 2, Ireland;

  • 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

    Resin-based composite; Experimental materials; In vitro wear resistance; Profilometry;

    机译:树脂基复合材料;实验材料;体外耐磨性;轮廓仪;
  • 入库时间 2022-08-18 03:47:02

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