Nawrocka Agnieszka, Lukomska-Szymanska Monika
Department of General Dentistry, Medical University of Lodz, Pomorska 251, 92-213 Lodz, Poland.
Materials (Basel). 2020 Feb 22;13(4):986. doi: 10.3390/ma13040986.
The technique described as indirect bonding is an alternative to the conventional intraoral method of bracket placement. The appliance position is planned and fixed on a plaster model and then transferred into the oral cavity. Indirect bonding is a precise and time-saving technique of bracket placement, growing in popularity in recent years. It provides a combination of great precision with time efficiency. The fundaments of the indirect bonding technique are presented here. From the first clinical trial conducted almost fifty years ago, the method has evolved; the progress that has been made is described. Modern technologies involving computer scanning and manufacturing have led to great precision in bracket placement. Digital innovations such as rapid prototyping and stereolithography open up a new avenue of research and represent the next steps in indirect technique development. Individual 3D transfers are convenient in difficult clinical cases and can improve the effectiveness of the procedure, reduce the number of technical stages and reduce total chairside time. This paper also summarizes the advancement in adhesive materials, including an overview of advantages and disadvantages of different types of bonding resins and of the mean shear bond strength (SBS) achieved in the indirect procedure.
间接粘结技术是传统口内托槽安置方法的一种替代方法。矫治器位置在石膏模型上规划并固定,然后转移至口腔。间接粘结是一种精确且节省时间的托槽安置技术,近年来越来越受欢迎。它兼具高精度和高效性。本文介绍了间接粘结技术的基础。自近五十年前进行首次临床试验以来,该方法不断发展;文中描述了已取得的进展。涉及计算机扫描和制造的现代技术使托槽安置具有极高的精度。快速成型和立体光刻等数字创新开辟了新的研究途径,代表了间接技术发展的下一步方向。个性化三维转移在复杂临床病例中很方便,可提高手术效果,减少技术步骤数量并缩短总椅旁时间。本文还总结了粘结材料的进展,包括不同类型粘结树脂的优缺点概述以及间接操作中获得的平均剪切粘结强度(SBS)。