Flügge Tabea Viktoria, Nelson Katja, Schmelzeisen Rainer, Metzger Marc Christian
Department of Craniomaxillofacial Surgery, Albert-Ludwig University Freiburg, Freiburg, Germany.
J Oral Maxillofac Surg. 2013 Aug;71(8):1340-6. doi: 10.1016/j.joms.2013.04.010.
To present an efficient workflow for the production of implant drilling guides using virtual planning tools. For this purpose, laser surface scanning, cone beam computed tomography, computer-aided design and manufacturing, and 3-dimensional (3D) printing were combined.
Intraoral optical impressions (iTero, Align Technologies, Santa Clara, CA) and digital 3D radiographs (cone beam computed tomography) were performed at the first consultation of 1 exemplary patient. With image processing techniques, the intraoral surface data, acquired using an intraoral scanner, and radiologic 3D data were fused. The virtual implant planning process (using virtual library teeth) and the in-office production of the implant drilling guide was performed after only 1 clinical consultation of the patient. Implant surgery with a computer-aided design and manufacturing produced implant drilling guide was performed during the second consultation. The production of a scan prosthesis and multiple preoperative consultations of the patient were unnecessary.
The presented procedure offers another step in facilitating the production of drilling guides in dental implantology. Four main advantages are realized with this procedure. First, no additional scan prosthesis is needed. Second, data acquisition can be performed during the first consultation. Third, the virtual planning is directly transferred to the drilling guide without a loss of accuracy. Finally, the treatment cost and time required are reduced with this facilitated production process.
介绍一种使用虚拟规划工具制作种植体钻孔导板的高效工作流程。为此,将激光表面扫描、锥形束计算机断层扫描、计算机辅助设计与制造以及三维(3D)打印相结合。
在1例典型患者的首次会诊时进行口内光学印模(iTero,Align Technologies,加利福尼亚州圣克拉拉)和数字化3D射线照片(锥形束计算机断层扫描)。运用图像处理技术,将使用口内扫描仪获取的口内表面数据与放射学3D数据融合。仅在对患者进行1次临床会诊后,便进行了虚拟种植体规划过程(使用虚拟库牙齿)以及种植体钻孔导板的诊室制作。在第二次会诊期间,使用计算机辅助设计与制造制作的种植体钻孔导板进行了种植手术。无需制作扫描假体以及对患者进行多次术前会诊。
所介绍的程序为简化牙种植学中钻孔导板的制作又迈出了一步。该程序实现了四个主要优点。第一,无需额外的扫描假体。第二,数据采集可在首次会诊期间进行。第三,虚拟规划可直接转移至钻孔导板,且精度无损失。最后,这种简化的制作过程降低了治疗成本和所需时间。