Department of Oral and Maxillofacial Surgery, Dental Research Institute, School of Dentistry, Seoul National University, Seoul, South Korea.
J Craniofac Surg. 2022 Sep 1;33(6):e701-e706. doi: 10.1097/SCS.0000000000008603. Epub 2022 Mar 7.
Mandibular reconstruction is one of the most complex procedures concerning the patient's postoperative facial shape and occlusion condition. In this study, the authors integrated mixed reality, three-dimensional (3D) printing, and robotic-assisted navigation technology to complete the mandibular reconstruction in a novel and more accurate way. Mixed reality can visualize the significant anatomical structures of the operative area, but only be used in simulated operation by now. Three-dimensional printing surgical guide plate makes it easy to separate tissue, while imprecision often occurs due to the potential of displacement and deformation. In recent years, most robotic-assisted navigation surgery technology can only achieve precise position by 2D view on the screen but not realistic 3D navigation. in this study, the integrated 3 technologies were used in mandibular reconstruction. Preoperative imaging examination was performed, and the data were imported into the digital workstation before operation. First, the original data was edited and optimized to reconstruct the digital model and formulate the surgical plan. Then MR was used to output the visualized project and matched the 3D reconstruction model in reality. The 3D plate was printed for surgical guidance. Last, robotic-assisted navigation was used to guide and position the vascularized fibula autograft and the immediate dental implantation. In conclusion, the authors integrated the 3 technologies and constructed a new digital surgical procedure to improve surgical accuracy and simplify the procedure comparing with traditional surgery.
下颌骨重建是关乎患者术后面部形态和咬合状况的最复杂的手术之一。本研究作者整合了混合现实、三维(3D)打印和机器人辅助导航技术,以新颖和更精确的方式完成下颌骨重建。混合现实可以使手术区域的重要解剖结构可视化,但目前仅用于模拟操作。3D 打印手术导板可轻松分离组织,但由于存在移位和变形的可能性,因此常常会出现不精确的情况。近年来,大多数机器人辅助导航手术技术仅能通过屏幕上的 2D 视图实现精确的位置定位,而无法实现真实的 3D 导航。在本研究中,整合了 3 种技术用于下颌骨重建。进行术前影像学检查,并在手术前将数据导入数字工作站。首先,编辑和优化原始数据以重建数字模型并制定手术计划。然后使用 MR 输出可视化项目并在现实中匹配 3D 重建模型。打印 3D 板以用于手术引导。最后,使用机器人辅助导航引导和定位带血管腓骨移植和即刻牙种植。总之,作者整合了 3 种技术,构建了一种新的数字化手术程序,与传统手术相比,提高了手术准确性并简化了手术流程。