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Fracture strength of machined ceramic crowns as a function of tooth preparation design and the elastic modulus of the cement

机译:机加工陶瓷牙冠的断裂强度与牙准备设计和水泥弹性模量的关系

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摘要

Objectives. To determine, by means of static fracture testing the effect of the tooth preparation design and the elastic modulus of the cement on the structural integrity of the cemented machined ceramic crown-tooth complex. Methods. Human maxillary extracted premolar teeth were prepared for all-ceramic crowns using two preparation designs; a standard preparation in accordance with established protocols and a novel design with a flat occlusal design. All-ceramic feldspathic (Vita MK Ⅱ) crowns were milled for all the preparations using a CAD/CAM system (CEREC-3). The machined all-ceramic crowns were resin bonded to the tooth structure using one of three cements with different elastic moduli: Super-Bond C&B, Rely X Unicem and Panavia F 2.0. The specimens were subjected to compressive force through a 4 mm diameter steel ball at a crosshead speed of 1 mm/min using a universal test machine (Loyds Instrument Model LRX.). The load at the fracture point was recorded for each specimen in Newtons (N). These values were compared to a control group of unprepared/unrestored teeth. Results. There was a significant difference between the control group, with higher fracture strength, and the cemented samples regardless of the occlusal design and the type of resin cement. There was no significant difference in mean fracture load between the two designs of occlusal preparation using Super-Bond C&B. For the Rely X Unicem and Panavia F 2.0 cements, the proposed preparation design with a flat occlusal morphology provides a system with increased fracture strength. Significance. The proposed novel flat design showed less dependency on the resin cement selection in relation to the fracture strength of the restored tooth. The choice of the cement resin, with respect to its modulus of elasticity, is more important in the anatomic design than in the flat design.
机译:目标。为了确定,通过静态断裂测试来确定牙齿制备设计的影响和水泥的弹性模量对水泥加工的陶瓷冠齿复合体的结构完整性的影响。方法。使用两种准备设计为全瓷冠准备了人类上颌拔牙前磨牙。根据既定规程进行标准准备,并采用平面咬合设计进行新颖设计。使用CAD / CAM系统(CEREC-3)将所有陶瓷的长石(Vita MKⅡ)牙冠磨碎。使用三种具有不同弹性模量的胶粘剂中的一种将机加工的全瓷冠树脂粘合到牙齿结构上:Super-Bond C&B,Rely X Unicem和Panavia F 2.0。使用万能试验机(Loyds Instrument Model LRX。),通过直径为4 mm的钢球,以十字头速度1 mm / min对样品施加压缩力。以牛顿(N)记录每个试样的断裂点载荷。将这些值与未准备/未修复的牙齿的对照组进行比较。结果。断裂强度较高的对照组与骨水泥样品之间存在显着差异,而与咬合设计和树脂骨水泥类型无关。使用Super-Bond C&B进行的两种咬合准备设计之间的平均骨折负荷无显着差异。对于Rely X Unicem和Panavia F 2.0水泥,建议的制备设计具有平坦的咬合形态,从而使系统具有更高的断裂强度。意义。所提出的新颖的平面设计相对于修复牙齿的断裂强度而言,显示出对树脂胶粘剂选择的依赖性较小。就其弹性模量而言,水泥树脂的选择在解剖设计中比在平面设计中更为重要。

著录项

  • 来源
    《Dental materials》 |2014年第2期|234-241|共8页
  • 作者单位

    The University of Sheffield, Academic Unit of Restorative Dentistry, The School of Clinical Dentistry, Claremont Crescent, Sheffield, UK,Academic Unit of Restorative Dentistry, The School of Clinical Dentistry, Claremont Crescent, Sheffield, S10 2TA, UK;

    The University of Sheffield, Academic Unit of Restorative Dentistry, The School of Clinical Dentistry, Claremont Crescent, Sheffield, UK;

    Tabriz University of Medical Sciences, Tabriz Dental School, Orthodontic Department, Tabriz, Iran;

    School of Mechanical and Aerospace Engineering, Queen's University of Belfast, Ashby Building, Room 3020, Stranmillis Road, Belfast, BT9 5AH, UK;

    The University of Sheffield, Academic Unit of Restorative Dentistry, The School of Clinical Dentistry, Claremont Crescent, Sheffield, UK;

  • 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

    Maxillary premolar; CAD/CAM; Vita MK Ⅱ; Anatomic design; Flat design; Elastic modulus; Resin luting agent; Mechanical test;

    机译:上颌前磨牙;CAD / CAM;维塔MKⅡ;解剖设计;平面设计;弹性模量树脂助剂;机械测试;

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