Singh Thakur Veerandar, Patil Jaya Prakash, Raju Rvs Chakradhar, Venigalla Bhuvan Shome, Jyotsna S V, Bhutani Neha
Senior Lecturer, Department of Conservative Dentistry and Endodontics, Sri Sai College of Dental Surgery , Vikarabad, India .
Professor and Head, Department of Conservative Dentistry and Endodontics, PMNM Dental College , Bagalkot, India .
J Clin Diagn Res. 2015 Aug;9(8):ZC88-91. doi: 10.7860/JCDR/2015/14026.6384. Epub 2015 Aug 1.
The study was planned to assess the use of low shrinkage composites for restoring cavities with high configuration factor (C-factor) which are subjected to high stresses.
The aim of the study was to evaluate the effect of C- factor on tensile bond strength to human dentin using methacrylate based nanohybrid and low shrinkage silorane composite.
In this study 40 non carious human molar teeth were selected and assigned into two main groups - cavity (Class I cavity with high C-factor) and flat group (flat surface with low C-factor). Two different composite materials- methacrylate based and silorane low shrinkage composite were used to restore the teeth. Dentin surface was treated, adhesive application was done and composite was applied as per manufacturer's instructions. Samples were stored in distilled water then subjected to tensile bond strength measurement using universal testing machine.
Statistical analysis was done using Independent sample t-test. The mean bond strength in methacrylate based and silorane composite was significantly higher in flat preparation (Low C-factor) than cavity preparation. The mean bond strength in both cavity (High C-factor) and flat preparation(Low C-factor) was significantly higher in silorane than in conventional methacrylate based composite.
The bond strength of composites to dentin is strongly influenced by C-factor and type of composite resin material used.
本研究旨在评估低收缩复合材料在修复承受高应力的高构型因子(C因子)窝洞中的应用。
本研究的目的是使用甲基丙烯酸酯基纳米杂化复合材料和低收缩硅氧烷复合材料,评估C因子对与人类牙本质的拉伸粘结强度的影响。
在本研究中,选取40颗非龋人类磨牙,分为两个主要组——窝洞组(具有高C因子的I类窝洞)和平坦组(具有低C因子的平坦表面)。使用两种不同的复合材料——甲基丙烯酸酯基复合材料和硅氧烷低收缩复合材料修复牙齿。对牙本质表面进行处理,按照制造商的说明涂抹粘结剂并应用复合材料。将样本储存在蒸馏水中,然后使用万能试验机进行拉伸粘结强度测量。
使用独立样本t检验进行统计分析。在平坦制备(低C因子)中,甲基丙烯酸酯基复合材料和硅氧烷复合材料的平均粘结强度显著高于窝洞制备。在窝洞(高C因子)和平坦制备(低C因子)中,硅氧烷复合材料的平均粘结强度均显著高于传统甲基丙烯酸酯基复合材料。
复合材料与牙本质的粘结强度受C因子和所用复合树脂材料类型的强烈影响。