Orthodontic Specialist, Limassol, Cyprus.
Department of Orthodontics, School of Dentistry, National and Kapodistrian University of Athens, Athens, Greece.
Int Orthod. 2020 Dec;18(4):714-721. doi: 10.1016/j.ortho.2020.09.007. Epub 2020 Oct 29.
The objective of this report is to use in orthodontic patients the methods of virtual indirect bonding and direct bonding using eye vision or loupes in order to compare their accuracy in the three dimensions of space.
Brackets were directly placed by one clinician to 18 patients with a total number of 298 permanent teeth. Then loupes were used to improve bracket positioning. Intraoral scanning of the dental arches was performed before bonding, after direct bonding and after the use of loupes. Subsequently, an orthodontic software was used to virtually indirectly bond the brackets on the first intraoral scanning taken before bonding. A three-dimensional mesh processing software was used to superimpose the three scans and to perform measurements in the mesio-distal and occlusal-gingival dimensions as well as in the mesio-distal angulation.
Virtual indirect bonding was more accurate in bracket positioning compared to direct bonding by eye vision or using loupes in all teeth and most of the teeth groups measured. Specific teeth and locations in the dental arch areas exhibited more bonding inaccuracies in the two direct bonding groups as compared to virtual indirect bonding. The use of loupes did not significantly increase the bonding accuracy compared to direct vision.
Indirect virtual bonding facilitated accurate bracket positioning compared to direct vision or with loupes direct bonding in the dimensions and angulation measured.
本报告的目的是在正畸患者中使用虚拟间接粘接和直接用眼或放大镜粘接的方法,以比较它们在三维空间中的准确性。
一位临床医生直接将托槽放置在 18 名患者的 298 颗恒牙上。然后使用放大镜来改善托槽定位。在粘接前、直接粘接后和使用放大镜后,对牙弓进行口内扫描。随后,使用正畸软件对第一次粘接前的口内扫描进行虚拟间接粘接托槽。使用三维网格处理软件对三个扫描进行叠加,并在近远中向和牙合龈向尺寸以及近远中向角度进行测量。
与直接用眼或使用放大镜进行的直接粘接相比,虚拟间接粘接在所有牙齿和大部分测量的牙齿组中,托槽定位更准确。与虚拟间接粘接相比,在两个直接粘接组中,特定的牙齿和牙弓区域的特定位置显示出更多的粘接不准确性。与直接视觉相比,使用放大镜并没有显著提高粘接精度。
与直接视觉或使用放大镜直接粘接相比,间接虚拟粘接在测量的尺寸和角度上更有利于托槽的准确定位。