Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin and Berlin Institute of Health, Department of Oral and Maxillofacial Surgery, Berlin, Germany.
Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Translational Implantology, Medical Center - University of Freiburg, University of Freiburg, Freiburg, Germany.
Clin Oral Implants Res. 2020 Jun;31(6):575-583. doi: 10.1111/clr.13592. Epub 2020 Mar 12.
To present a workflow of virtual implant planning and guided implant surgery with magnetic resonance imaging (MRI) and virtual dental models without the use of ionizing radiation.
Five patients scheduled for implant placement underwent an MR examination at three Tesla using individualized 2D and 3D turbo spin-echo (TSE) sequences and dedicated head coils. The MRI data and virtual dental models derived from either optical model scans or intraoral scans were imported to a virtual implant planning software (coDiagnostiX, Dental Wings, Montreal, Canada). Virtual prosthetic planning and implant planning were performed regarding the hard and soft tissue anatomy. A drill guide was designed on the virtual dental model using computer-aided design (CAD) and manufactured in-house, using a 3D printer (Eden 260V, Stratasys, Eden Prairie, MN, USA).
The MRI displayed all relevant anatomical structures for dental implant planning such as cortical and cancellous bone, floor of the nasal and maxillary sinus, inferior alveolar nerve and neighboring teeth. The manual alignment of virtual dental models with the MRI was possible using anatomical landmarks. Dental implant planning, CAD/CAM of a drill guide and fully guided implant placement were successfully performed.
Guided implant surgery is feasible with MRI without ionizing radiation. Further studies will have to be conducted to study the accuracy of the presented protocol and compare it to the current workflow of guided surgery using CBCT.
介绍一种不使用电离辐射,利用磁共振成像(MRI)和虚拟牙模进行虚拟种植体规划和引导种植手术的工作流程。
5 名计划接受种植体植入的患者在 3T 磁共振扫描仪上进行检查,使用个体化的 2D 和 3D 涡轮自旋回波(TSE)序列和专用头部线圈。MRI 数据和源自光学模型扫描或口内扫描的虚拟牙模数据被导入虚拟种植体规划软件(coDiagnostiX,Dental Wings,蒙特利尔,加拿大)。根据软硬组织解剖结构进行虚拟修复体规划和种植体规划。使用计算机辅助设计(CAD)在虚拟牙模上设计钻头导向器,并使用 3D 打印机(Eden 260V,Stratasys,明尼苏达州伊登草原)在内部制造。
MRI 显示了所有与牙种植体规划相关的解剖结构,如皮质骨和松质骨、鼻腔和上颌窦底、下牙槽神经和相邻牙齿。通过解剖学标志,可以将虚拟牙模与 MRI 手动对齐。成功进行了种植体规划、钻头导向器的 CAD/CAM 设计和全引导种植体植入。
无需电离辐射即可通过 MRI 进行引导种植手术。需要进一步研究以研究所提出方案的准确性,并将其与当前使用 CBCT 的引导手术工作流程进行比较。