Head Academic, Master Degree in Endodontics, Faculty of Health Sciences, Alfonso X el Sabio University, Madrid, Spain.
Associate professor, Master Degree in Implants, Faculty of Health Sciences, Alfonso X el Sabio University, Madrid, Spain.
BMC Oral Health. 2020 Apr 7;20(1):99. doi: 10.1186/s12903-020-01095-6.
The aim of this case report was to use a surgical technique for autotransplantation of tooth using virtually planned 3D printed surgical templates for guided osteotomy preparation of the recipient of donor tooth.
An 18-year-old male patient received autotransplantation of the right mandibular third molar to replace an included right second molar. This procedure was based on guided implant surgery methods by superimposition of DICOM files and 3D data sets of the jaws. In order to design a 3D-printed template with the aid of a fully digital workflow; the third molar was conserved in PRGF during the surgical procedure and the tooth socket was prepared with a template and the help of a 3D-printed donor tooth copy in order to prevent iatrogenic damage to the donor tooth. This template and replica were manufactured using 3D-printing techniques. The transplanted tooth was placed in infra-occlusion and fixed with a suture splint and root canal therapy was performed 15 days later. The intervention was be accomplished by performing preplanned virtual transplantations with guided osteotomies to ensure accurate donor tooth placement in the new recipient site. The 24 months follow-up showed physiological clinical and radiologic results compatible with healing periradicular tissues.
This approach enables the planning and production of a 3D printed surgical template using the latest diagnostic methods and techniques of guided implant surgery. These accurate virtually predesigned surgical templates and printed analogues of the donor tooth could facilitate autotransplantation, ensuring an atraumatic surgical protocol.
本病例报告的目的是使用一种手术技术,通过虚拟规划的 3D 打印手术模板,对供体牙的受植区进行引导性截骨准备,从而实现牙的自体移植。
一名 18 岁男性患者接受了自体移植右侧下颌第三磨牙以替代埋伏的右侧第二磨牙。该手术基于通过 DICOM 文件和颌骨的 3D 数据集的叠加来进行引导性种植体手术的方法。为了借助完全数字化的工作流程设计 3D 打印模板,在手术过程中,PRGF 中保存了第三磨牙,并用模板和 3D 打印的供体牙副本制备了牙窝,以防止供体牙发生医源性损伤。该模板和复制品是使用 3D 打印技术制造的。将移植牙置于亚咬合位并用缝线夹板固定,15 天后进行根管治疗。通过进行预先规划的虚拟移植和引导性截骨术,可确保供体牙准确地放置在新的受植区,从而完成干预。24 个月的随访显示,与愈合根尖周组织相符的生理临床和放射学结果。
该方法可使用最新的诊断方法和引导性种植手术技术来规划和制作 3D 打印手术模板。这些精确的虚拟预先设计的手术模板和供体牙的打印模拟物可以促进自体移植,确保手术的微创性。