Nathália Moraes Carvalho Barreto Brandão, Raiane Machado Maia, Victor de Morais Gomes, Carolina Resende, Alberto Nogueira da Gama Antunes, Bernardo Quiroga Souki
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The positional differences between the virtual and bonded attachments were assessed in the X, Y and Z coordinates. The marginal adaptation between the aligners and the attachments was measured.</p><p><strong>Results: </strong>Minor inaccuracies in the positioning of the attachments were observed in all combinations of thermoforming machines and plastic laminates used to fabricate the templates, mainly in the superior-inferior (Z) dimension. PETG performed better than EVA in the anterior region (p < .05). No association was found between thermoplastification machines and the accuracy of the positioning of the attachments (p > .05). While small misadaptations between the aligners and the attachments were observed, the EVA templates performed better than the PETG templates.</p><p><strong>Conclusions: </strong>The inaccuracy of the attachment positioning and the misadaptation of the aligners to the attachments were slight. The vacuum and pressure thermoplastification machines showed no difference in attachment positioning accuracy. The PETG template was better than the EVA template in the anterior region, but the EVA attachments presented a better adaptation to the aligners than the PETG attachments.</p>","PeriodicalId":2,"journal":{"name":"ACS Applied Bio Materials","volume":null,"pages":null},"PeriodicalIF":4.6000,"publicationDate":"2024-08-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Bonding positional accuracy of attachments and marginal adaptation of in-house aligners - A quality improvement laboratory study.\",\"authors\":\"Nathália Moraes Carvalho Barreto Brandão, Raiane Machado Maia, Victor de Morais Gomes, Carolina Resende, Alberto Nogueira da Gama Antunes, Bernardo Quiroga Souki\",\"doi\":\"10.1111/ocr.12843\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Objectives: </strong>To evaluate the 3D accuracy of attachment positioning and the adaptation of aligners to attachments using in-house templates made with either polyethylene terephthalate glycol (PETG) or ethylene-vinyl acetate (EVA) and either pressure or vacuum thermoforming machines.</p><p><strong>Materials and methods: </strong>Overall, 140 test specimens were resin-printed. Templates for the attachment bonding were made with 1-mm EVA or 0.5-mm PETG laminates. Orthodontic aligners were manufactured with 0.75-mm PETG. The thermoplastification process was carried out using either vacuum or pressure machines. The positional differences between the virtual and bonded attachments were assessed in the X, Y and Z coordinates. The marginal adaptation between the aligners and the attachments was measured.</p><p><strong>Results: </strong>Minor inaccuracies in the positioning of the attachments were observed in all combinations of thermoforming machines and plastic laminates used to fabricate the templates, mainly in the superior-inferior (Z) dimension. PETG performed better than EVA in the anterior region (p < .05). No association was found between thermoplastification machines and the accuracy of the positioning of the attachments (p > .05). 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引用次数: 0
摘要
目标:评估使用聚对苯二甲酸乙二醇酯(PETG)或乙烯-醋酸乙烯酯(EVA)制作的内部模板和压力或真空热成型机进行的附着体定位的三维准确性以及对准器对附着体的适应性:共用树脂印制了 140 个测试样本。附着粘接的模板是用 1 毫米的 EVA 或 0.5 毫米的 PETG 层压板制作的。正畸矫治器用 0.75 毫米 PETG 制作。热塑过程使用真空或压力机进行。在 X、Y 和 Z 坐标上评估了虚拟附着体和粘结附着体之间的位置差异。测量了矫治器和附着体之间的边缘适应性:结果:在所有用于制作模板的热成型机和塑料层压板组合中,都观察到了附着体定位的轻微误差,主要是在上下(Z)维度上。在前部区域,PETG 的表现优于 EVA(p .05)。虽然可以观察到矫治器和附着体之间存在微小的不适应,但 EVA 模板的表现优于 PETG 模板:结论:附着体定位的不准确性和对准器与附着体的不适应性都很轻微。真空热塑机和压力热塑机在附件定位精度方面没有差异。在前牙区,PETG模板比EVA模板更好,但EVA附着体对矫治器的适应性比PETG附着体更好。
Bonding positional accuracy of attachments and marginal adaptation of in-house aligners - A quality improvement laboratory study.
Objectives: To evaluate the 3D accuracy of attachment positioning and the adaptation of aligners to attachments using in-house templates made with either polyethylene terephthalate glycol (PETG) or ethylene-vinyl acetate (EVA) and either pressure or vacuum thermoforming machines.
Materials and methods: Overall, 140 test specimens were resin-printed. Templates for the attachment bonding were made with 1-mm EVA or 0.5-mm PETG laminates. Orthodontic aligners were manufactured with 0.75-mm PETG. The thermoplastification process was carried out using either vacuum or pressure machines. The positional differences between the virtual and bonded attachments were assessed in the X, Y and Z coordinates. The marginal adaptation between the aligners and the attachments was measured.
Results: Minor inaccuracies in the positioning of the attachments were observed in all combinations of thermoforming machines and plastic laminates used to fabricate the templates, mainly in the superior-inferior (Z) dimension. PETG performed better than EVA in the anterior region (p < .05). No association was found between thermoplastification machines and the accuracy of the positioning of the attachments (p > .05). While small misadaptations between the aligners and the attachments were observed, the EVA templates performed better than the PETG templates.
Conclusions: The inaccuracy of the attachment positioning and the misadaptation of the aligners to the attachments were slight. The vacuum and pressure thermoplastification machines showed no difference in attachment positioning accuracy. The PETG template was better than the EVA template in the anterior region, but the EVA attachments presented a better adaptation to the aligners than the PETG attachments.