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Shrinkage stress compensation in composite-restored teeth: Relaxation or hygroscopic expansion?

机译:复合材料修复牙齿的收缩应力补偿:松弛还是吸湿膨胀?

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摘要

Objectives. Polymerization of composite restorations causes shrinkage, which deforms and thus stresses restored teeth. This shrinkage deformation, however, has been shown to decrease over time. The objective was to investigate whether this reduction was caused by hygroscopic expansion or stress relaxation of the composite/tooth complex. Methods. Extracted molars were mounted in rigid stainless steel rings with four spherical reference areas. Twelve molars were prepared with large mesio-occluso-distal slots, etched, bonded, and restored with a composite material (Filtek Supreme, 3M ESPE) in two horizontal layers. Ten intact molars were the controls. The teeth were stored either in deionized water or silicone oil. They were scanned after preparation (baseline), restoration (0-week), and after 1, 2, and 4 weeks storage. Scanned tooth surfaces were aligned with the baseline using the unchanged reference areas. Cuspal flexure was calculated from lingual and buccal surface deformation. To verify that the restorations had remained bonded, dye penetration at the interfaces was assessed using basic fuchsin dye. Statistical assessment was done by ANOVA followed by Student-Newman-Keuls post hoc test (p = 0.05). Results. Substantial cuspal contraction was found for restored teeth after the composite was cured (13-14 μm cuspal flexure). After 4 weeks cuspal contraction decreased significantly for restored teeth stored in water (7.3 ± 3.2) but not for those stored in silicone oil (11.4 ± 5.0). Dye penetration of the occlusal interface was minimal in both groups (106 ± 87 and 21 ± 28 μm in water and silicone oil, respectively). Significance. The results suggest that hygroscopic expansion was the main mechanism for shrinkage stress compensation.
机译:目标。复合修复体的聚合会引起收缩,收缩并变形,从而向修复后的牙齿施加应力。然而,已经表明这种收缩变形随时间减少。目的是研究这种减少是由于吸湿膨胀或复合材料/牙齿复合物的应力松弛引起的。方法。将提取的磨牙安装在带有四个球形参考区域的刚性不锈钢环中。制备十二个臼齿,具有大的近中颌远端狭槽,进行蚀刻,粘合并用复合材料(Filtek Supreme,3M ESPE)在两个水平层中进行修复。十个完整的磨牙为对照。将牙齿存储在去离子水或硅油中。在准备(基准),恢复(0周)以及存储1、2和4周后对其进行扫描。使用未更改的参考区域将扫描的牙齿表面与基线对齐。根据舌和颊面的变形来计算Cu屈。为了验证修复体是否保持粘合状态,使用碱性品红染料评估了界面处的染料渗透。统计评估由ANOVA进行,然后是Student-Newman-Keuls事后检验(p = 0.05)。结果。复合材料固化后(13-14μm牙pal弯曲),发现修复后的牙齿发生了明显的牙pal收缩。 4周后,存储在水中的修复牙齿的7.3骨收缩明显减少(7.3±3.2),而存储在硅油中的牙齿则没有(11.4±5.0)。两组的咬合界面染料渗透极小(在水和硅油中分别为106±87和21±28μm)。意义。结果表明,吸湿膨胀是收缩应力补偿的主要机理。

著录项

  • 来源
    《Dental materials》 |2013年第5期|573-579|共7页
  • 作者单位

    College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

    Department of Restorative Dentistry, College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

    College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

    Department of Restorative Dentistry, College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

    Department of Restorative Dentistry, College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

    Department of Bioscience Research, College of Dentistry, University of Tennessee Health Science Center, Memphis, TN, USA;

  • 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

    cusp flexure; hygroscopic expansion; polymerization shrinkage; resin composite; restoration; stress relaxation;

    机译:尖头弯曲吸湿膨胀聚合收缩;树脂复合材料恢复;压力松弛;
  • 入库时间 2022-08-18 03:47:03

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