Raluca Fratila Cosmina, Alonso-Ezpeleta Luis Óscar, Poveda-Saenz Manuel, Giovannini Giovanni, Lobo-Galindo Ana Belén, Flores-Fraile Javier, Zubizarreta-Macho Álvaro
Faculty of Dentistry, Alfonso X el Sabio University, 28691 Madrid, Spain.
Endodontics Section, Department of Stomatology, School of Dentistry, University of Zaragoza, 50009 Zaragoza, Spain.
Materials (Basel). 2025 Feb 11;18(4):780. doi: 10.3390/ma18040780.
An inaccurate bonding procedure of the attachments related to clear aligner systems could influence the predictability of tooth movement The aim of this study was to compare the positioning reliability of horizontal and vertical orthodontic clear aligner attachments.
A total of 70 horizontal and 70 vertical orthodontic clear aligner attachments were bonded to five upper and five lower experimental anatomically based acrylic resin models with 14 clinical crowns each. The experimental anatomically based acrylic resin models were randomly distributed to the following study groups: Group A-horizontal orthodontic clear aligner attachments ( = 70) (HORIZONTAL) and Group B-vertical orthodontic clear aligner attachments ( = 70) (VERTICAL). Afterward, the orthodontic clear aligner attachments were digitally planned using orthodontic planning software, and orthodontic templates were manufactured by thermoforming on 3D-printed models in trilayer glycol-modified polyethylene terephthalate. Both horizontal and vertical orthodontic clear aligner attachments were put through an intra-oral scan to obtain a postoperative digital image, and PAPver, PCPver, PMVver, AUver, Alver, PPMhor, PPDhor, PMVhor, AMhor and ADhor cephalometric parameters were analyzed using a -test or a non-parametric Mann-Whitney-Wilcoxon test.
The results showed that all cephalometric parameters showed statistically significant differences ( < 0.05) between the accuracy of the indirect bonding technique for horizontal and vertical orthodontic clear aligner attachments, except for the PAPver ( = 0.6079) and PMVhor ( = 0.5001) cephalometric parameters.
The vertical orthodontic clear aligner attachments are more accurate than the horizontal orthodontic clear aligner attachments through the indirect bonding technique.
与隐形矫治系统相关的附件粘结程序不准确可能会影响牙齿移动的可预测性。本研究的目的是比较水平和垂直正畸隐形矫治附件的定位可靠性。
将70个水平和70个垂直正畸隐形矫治附件粘结到五个上颌和五个下颌基于实验解剖学的丙烯酸树脂模型上,每个模型有14个临床牙冠。将基于实验解剖学的丙烯酸树脂模型随机分为以下研究组:A组——水平正畸隐形矫治附件(n = 70)(HORIZONTAL)和B组——垂直正畸隐形矫治附件(n = 70)(VERTICAL)。之后,使用正畸规划软件对正畸隐形矫治附件进行数字化规划,并通过在三层乙二醇改性聚对苯二甲酸乙二酯的3D打印模型上热成型来制作正畸模板。对水平和垂直正畸隐形矫治附件均进行口内扫描以获得术后数字图像,并使用t检验或非参数曼-惠特尼-威尔科克森检验分析PAPver、PCPver、PMVver、AUver、Alver、PPMhor、PPDhor、PMVhor、AMhor和ADhor头影测量参数。
结果显示,除PAPver(P = 0.6079)和PMVhor(P = 0.5001)头影测量参数外,水平和垂直正畸隐形矫治附件间接粘结技术准确性之间的所有头影测量参数均显示出统计学显著差异(P < 0.05)。
通过间接粘结技术,垂直正畸隐形矫治附件比水平正畸隐形矫治附件更精确。