Campobasso Alessandra, Battista Giovanni, Fiorillo Gianluigi, Caldara Giulia, Lo Muzio Eleonora, Ciavarella Domenico, Gastaldi Giorgio, Muzio Lorenzo Lo
Department of Clinical and Experimental Medicine, University of Foggia, Via Rovelli 50, Foggia 71122, Italy.
Dental School, San Raffaele Vita-Salute University of Milan, Milan 20132, Italy.
Int J Dent. 2023 Sep 16;2023:5103991. doi: 10.1155/2023/5103991. eCollection 2023.
To evaluate in vitro and in vivo the accuracy of 3D-printed customized transfer devices during indirect bonding technique (IBT).
A search for articles published in the English language until April 2022 was carried out using PubMed, Web of Science, Scopus, and Google Scholar databases and by applying a specific search strategy for each database to identify all potentially relevant in vivo or in vitro studies. After the removal of duplicate articles and data extraction according to the participants-intervention-comparison-outcome-study design schema scheme, the methodological quality of the included studies was assessed using the Swedish Council on Technology Assessment in Health Care Criteria for Grading Assessed Studies.
The initial search identified 126 articles, 43 of which were selected by title and abstract. After full-text reading, 15 papers were selected for the qualitative analysis and seven studies for the quantitative analysis. The evidence quality for the selected studies was moderate.
Except for the bucco-lingual direction, the 3D-printed customized devices have a transfer accuracy within the clinically acceptable limits established by the American Board of Orthodontics. Therefore, 3D-printed transfer devices may be considered an accurate method for bonding position during IBT, both in vitro and in vivo. Additional randomized clinical studies in vivo should be suggested.
在体外和体内评估间接粘结技术(IBT)期间3D打印定制转移装置的准确性。
利用PubMed、科学网、Scopus和谷歌学术数据库检索截至2022年4月发表的英文文章,并针对每个数据库应用特定的检索策略,以识别所有潜在相关的体内或体外研究。根据参与者-干预-对照-结果-研究设计方案去除重复文章并进行数据提取后,使用瑞典卫生保健技术评估委员会评估研究分级标准对纳入研究的方法学质量进行评估。
初步检索确定了126篇文章,其中43篇通过标题和摘要被选中。全文阅读后,选择15篇论文进行定性分析,7项研究进行定量分析。所选研究的证据质量为中等。
除颊舌向外,3D打印定制装置的转移准确性在美国正畸委员会规定的临床可接受范围内。因此,3D打印转移装置在体外和体内均可被视为IBT期间粘结位置的准确方法。建议进行更多的体内随机临床研究。