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首页> 外文期刊>Operative dentistry >Influence of the Compliance and Layering Method on the Wall Deflection of Simulated Cavities in Bulk-fill Composite Restoration
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Influence of the Compliance and Layering Method on the Wall Deflection of Simulated Cavities in Bulk-fill Composite Restoration

机译:顺应性和分层方法对填充复合体中模拟空腔壁挠度的影响

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摘要

The aim of this study was to investigate the effects of the layering method and compliance on the wall deflection of simulated cavities in bulk-fill and conventional composite restorations and to examine the relationships between the wall deflection and the polymerization shrinkage, flexural modulus, and polymerization shrinkage stress of composites. Six light-cured composites were used in this study. Two of these were conventional methacrylate-based composites (Filtek Z250 and Filtek Z350 XT Flowable [Z350F]), whereas four were bulk-fill composites (SonicFill, Tetric N-Ceram BulkFill, SureFil SDR Flow [SDR], and Filtek BulkFill). One hundred eighty aluminum molds simulating a mesio-occluso-distal cavity (6 Wx8 Lx4 D mm) were prepared and classified into three groups with mold wall thicknesses of 1, 2, and 3 mm. Each group was further subdivided according to the composite layering method (bulk or incremental layering). Linear variable differential transformer probes were used to measure the mold wall deflection of each composite (n=5) over a period of 2000 seconds (33.3 minutes). The polymerization shrinkage, flexural modulus, and polymerization shrinkage stress of the six composites were also measured. All groups with bulk filling exhibited significantly higher deflection compared with groups with incremental layering. The deflection decreased as mold wall thickness increased. The highest and lowest polymerization shrinkage stresses were recorded for Z350F (5.07 MPa) and SDR (1.70 MPa), respectively. The correlation between polymerization shrinkage and the mold wall deflection decreased with increasing wall thickness. On the other hand, the correlation between flexural modulus and the mold wall deflection increased with increasing wall thickness. For all groups, wall deflection correlated strongly with polymerization shrinkage stress.
机译:这项研究的目的是研究分层方法和柔度对大体积填充物和常规复合修复体中模拟腔壁挠度的影响,并研究壁挠度与聚合收缩率,弯曲模量和聚合之间的关系。复合材料的收缩应力。在这项研究中使用了六种光固化复合材料。其中两个是常规的基于甲基丙烯酸酯的复合材料(Filtek Z250和Filtek Z350 XT Flowable [Z350F]),而四个是填充填充的复合材料(SonicFill,Tetric N-Ceram BulkFill,SureFil SDR Flow [SDR]和Filtek BulkFill)。制备了模拟中咬合-远端腔(6 Wx8 Lx4 D mm)的180个铝模具,并将其分为模具壁厚分别为1、2和3 mm的三组。根据复合分层方法(批量或增量分层)将每个组进一步细分。线性可变差动变压器探头用于在2000秒(33.3分钟)的时间内测量每种复合材料(n = 5)的模具壁挠度。还测量了这六种复合材料的聚合收缩率,挠曲模量和聚合收缩应力。与具有增量分层的组相比,所有填充的组均显示出明显更高的挠度。挠度随模具壁厚的增加而减小。分别记录了Z350F(5.07 MPa)和SDR(1.70 MPa)的最高和最低聚合收缩应力。聚合收缩率与模具壁挠度之间的相关性随壁厚的增加而降低。另一方面,弯曲模量与模具壁挠度之间的相关性随壁厚的增加而增加。对于所有组,壁挠度与聚合收缩应力密切相关。

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