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Debonding force and shear bond strength of an array of CAD/CAM-based customized orthodontic brackets, placed by indirect bonding- An In Vitro study

机译:通过间接粘结放置的一系列基于CAD / CAM的定制正畸托槽的脱粘力和剪切粘结强度-一项体外研究

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摘要

Based on three-dimensional scanning and computer-aided design and computer-aided manufacturing (CAD/CAM) techniques, customized bracket systems are increasingly used. However, data remain limited regarding customized bracket design, characteristics, and stability. This study was undertaken to evaluate the design, bond strength, and residual adhesives of four different CAD/CAM customized brackets that were attached to human tooth specimens by indirect bonding. Thirty extracted human upper premolars were divided into five groups: Group 1, preadjusted self-ligating labial metal bracket; Group 2, lingual self-ligating metal injection molding customized bracket; Group 3, gold-casted lingual customized bracket; Group 4, labial self-ligating milled customized bracket; Group 5, labial customized resin base bracket. Except in Group 1, premolar specimens were scanned via model scanner, and the images were sent to each manufacturing company to fabricate customized brackets and transfer trays/jigs. Debonding force (DF; N) was measured by Instron universal testing machine and shear bond strength (SBS; MPa) was calculated via dividing DF by bonding area. Adhesive remnants were analyzed via stereo microscopic images. Group 2 (196.90±82.75 N) exhibited significantly higher DF than Group 1 (62.77±12.65 N); other groups exhibited similar DFs, compared with Group 1. No customized bracket groups exhibited significant differences in SBS, relative to Group 1 (6.73±1.36 MPa). However, SBS in Group 5 (11.46±7.22 MPa) was significantly higher than in Group 3 (3.58±2.14 MPa). Group 3 had significantly lower ARI scores than other groups (P<0.05). Customized brackets exhibited large deviations in DF and SBS; all customized bracket systems exhibited DF that was equivalent or superior to that of preadjusted brackets, even when placed by indirect bonding.
机译:基于三维扫描和计算机辅助设计以及计算机辅助制造(CAD / CAM)技术,越来越多地使用定制支架系统。但是,有关定制支架设计,特性和稳定性的数据仍然有限。进行了这项研究,以评估通过间接粘合连接到人体牙齿样本的四种不同的CAD / CAM定制支架的设计,粘合强度和残余粘合剂。将三十只提取的人上前磨牙分为五组:第一组,预调整的自结扎唇金属支架;第二组。第2组,舌状自结扎金属注模定制支架;第3组,铸金舌定制支架;第4组,唇自结扎磨的定制支架;第5组,唇部定制树脂基座支架。除第1组外,通过模型扫描仪扫描前磨牙标本,并将图像发送到每个制造公司,以制造定制的支架和转移托盘/夹具。用Instron万能试验机测定剥离力(DF; N),用DF除以粘接面积,算出剪切粘接强度(SBS; MPa)。通过立体显微镜图像分析残留的胶粘剂。第2组(196.90±82.75 N)的DF明显高于第1组(62.77±12.65 N);与第1组相比,其他组也表现出相似的DFs。相对于第1组(6.73±1.36 MPa),没有定制的支架组在SBS中显示出显着差异。但是,第5组的SBS(11.46±7.22 MPa)显着高于第3组的(3.58±2.14 MPa)。第三组的ARI得分明显低于其他组(P <0.05)。定制的支架在DF和SBS上显示出较大的偏差;所有定制的支架系统都具有等于或优于预调节支架的DF,即使通过间接粘合放置也是如此。

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