Division of Conservative Dentistry and Endodontics, Centre for Dental Education and Research, All India Institute of Medical Sciences, New Delhi, India.
Department of Orthodontics and Dentofacial Orthopedics, University College of Medical Sciences, New Delhi, India.
J Endod. 2022 Jul;48(7):936-942. doi: 10.1016/j.joen.2022.03.014. Epub 2022 Apr 8.
The management of traumatic dental injury aims at functional and esthetic rehabilitation. After luxation injury, a displaced tooth must be replaced into its normal position as soon as possible. Incorrect tooth repositioning can cause discomfort to the patient and compromise the outcome. This report documents a novel digital technology-based approach for the management of teeth following luxation injury with displacement. A 25-year-old female reported 2 days after traumatic dental injury to her maxillary right central incisor tooth #8. After clinical and radiographic examination, a diagnosis of lateral luxation of tooth #8 was made. The preoperative high-resolution cone-beam computed tomography (CBCT) image data set confirmed palatal luxation of tooth #8 with fractured and displaced labial cortical plate. The CBCT data were imported into a medical image processing software program, and a segmentation tool was used to segment the fractured cortical plate, luxated tooth, and alveolar process. The socket is reconstructed by realigning fractured cortical bone over the alveolar process and repositioning the tooth in the virtual planning software. A three-dimensional (3D) guiding template was designed over the repositioned tooth and adjacent teeth and printed. This 3D printed guide was used for the repositioning of luxated tooth #8 and stabilizing it during the splinting procedure. This technique of using CBCT and 3D guide for repositioning is an objective, precise, and predictable approach. The 3D printed model of the dental arch after virtual tooth alignment can be used by the dentist to determine the exact splint length and contour before splinting.
外伤性牙损伤的管理旨在实现功能和美观修复。牙脱位后,应尽快将移位的牙齿复位到正常位置。不正确的牙齿复位会给患者带来不适,并影响治疗效果。本报告记录了一种新颖的基于数字技术的方法,用于处理牙脱位后伴移位的牙齿。一位 25 岁的女性在右上中切牙 #8 外伤性牙损伤后 2 天就诊。经过临床和影像学检查,诊断为 #8 牙侧向脱位。术前高分辨率锥形束 CT(CBCT)图像数据集证实 #8 牙腭侧脱位,伴有唇侧皮质板骨折和移位。将 CBCT 数据导入医学图像处理软件程序,并使用分割工具分割骨折皮质板、脱位牙和牙槽突。通过将断裂的皮质骨重新对准牙槽突并在虚拟规划软件中重新定位牙齿来重建牙槽窝。在重新定位的牙齿和相邻牙齿上设计并打印三维(3D)引导模板。使用 3D 打印的导板来重新定位脱位的 #8 牙,并在固定过程中稳定它。使用 CBCT 和 3D 导板进行复位的技术是一种客观、精确和可预测的方法。虚拟牙齿对齐后的牙弓 3D 打印模型可让牙医在固定前确定确切的夹板长度和轮廓。