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Comparison of Polymerization Shrinkage, Physical Properties, and Marginal Adaptation of Flowable and Restorative Bulk Fill Resin-Based Composites

机译:可流动和恢复散装树脂基复合材料的聚合收缩,物理性能和边际适应的比较

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摘要

Purpose: The purpose of this study was to compare the marginal adaptation of two flowable bulk fill resin-based composites (FBRBCs), two restorative bulk fill resin-based composites (RB-RBCs), and one regular incremental- fill RBC in MOD cavities in vitro. Additionally, the influence of linear polymerization shrinkage, shrinkage force, flexural modulus, and bottom/top surface hardness ratio on the marginal adaptation was evaluated. Methods: A Class II MOD cavity was prepared in 40 extracted sound lower molars. In group 1 ( control group), the preparation was filled with Filtek Z350 (Z3, 3M ESPE, St Paul, MN, USA) using the incremental filling technique. The FB-RBCs, SDR (SD, group 2) (Dentsply Caulk, Milford, DE, USA) and Venus Bulk Fill (VB, group 3) (Heraeus Kulzer, Dormagen, Germany), were placed in the core portion of the cavity first, and Z350 was filled in the remaining cavity. The RB-RBCs, Tetric N-Ceram Bulkfill (TB, group 4) (Ivoclar Vivadent, Schaan, Liechtenstein) and SonicFill (SF, Group 5) (Kerr, West Collins, Orange, CA, USA), were bulk filled into the preparation. Images of the magnified marginal area were captured under 1003 magnification before and after thermomechanical loading, and the percentage ratio of the imperfect margin (% IMwhole) was calculated. Gaps, cracks in the enamel layer, and chipping of composite, enamel, or dentin were all considered to be imperfect margins. Linear polymerization shrinkage, polymerization shrinkage force, flexural strength, flexural modulus, and bottom/top surface hardness ratio of were measured. Eight specimens were allocated for each material for each test. Oneway analysis of variance with the Scheffe test was used to compare the groups at a 95% confidence level. Results: Before thermomechanical loading, % IMwhole was in the order of group 3 <= groups 2 and 5 <= groups 1 and 4 (p=0.011), whereas after loading, it was in the order of group 4 <= group 5 <= group 1 <= groups 2 and 3 (p<0.001). The order of materials were Z3 <= TB and SF < SD and VB (p < 0.001) in polymerization shrinkage; SF < TB <= Z3, SD, VB (p < 0.001) in polymerization shrinkage force; VB < SD < TB < Z3 <= SF (p < 0.001) in flexural modulus; SD < VB, and TB < Z3 and SF (p < 0.001) in flexural strtength; and SF< Z3, TB < VB and SD (p < 0.001) in bottom/top surface hardness ratio. The Pearson correlation constant between % IMwhole and polymerization shrinkage, shrinkage force, elastic modulus, and bottom/top surface hardness ratio was 0.697, 0.708, -0.373, and 0.353, respectively, after thermomechanical loading.
机译:目的:本研究的目的是比较两个可流动块状填充树脂基复合材料(FBRBC)的边缘适应,两种恢复块填充树脂基复合材料(RB-RBCS),以及Mod腔中的一个常规增量填充RBC体外。另外,评估了线性聚合收缩,收缩力,挠曲模量和底部/顶表面硬度比对边缘适应的影响。方法:在40级提取的声音较低磨牙中制备II类Mod腔。在第1组(对照组)中,使用增量填充技术将制剂填充有FILTEK Z350(Z3,3MESPE,ST PAUL,MN,USA)。 FB-RBCS,SDR(SD,Group 2)(Lenteply Caulk,Milford,De,USA)和金星批量填充(VB,第3组)(Heraeus Kulzer,Dormagen,德国)被置于腔的核心部分中首先,Z350填充在剩余的腔中。 RB-RBCS,Tetric N-Ceram Bulkfill(TB,Group 4)(Ivoclar Vievadent,Schaan,Liechtenstein)和SonicFill(SF,Group 5)(Kerr,West Collins,Orange,Ca,USA)被填充到了准备。在热机械负荷前后1003倍率下捕获放大的边缘区域的图像,并计算不完美余量(IMHOLE)的百分比比率。牙釉质层中的裂缝,复合材料,搪瓷或牙本质的碎裂都被认为是不完美的边缘。测量线性聚合收缩,聚合收缩力,弯曲强度,弯曲模量和底部/顶表面硬度比。为每种测试分配八个标本。使用Scheffe试验的Oneway分析差异用于将群体与95%的置信水平进行比较。结果:在热机械负载之前,%IMWhole按基组3 <=组2和5 <= 4和4(p = 0.011),而在加载之后,则按第4组<=组5 < =第1组<=组2和3(p <0.001)。材料的阶数为Z3 <= Tb和Sf

著录项

  • 来源
    《Operative dentistry》 |2017年第4期|共12页
  • 作者

    Jung J. H.; Park S. H.;

  • 作者单位

    Yonsei Univ Conservat Dent Seoul South Korea;

    Yonsei Univ Oral Sci Res Ctr Conservat Dent Seoul South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

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