Department of Oral-Maxillofacial Surgery and Orthodontics, The University of Tokyo Hospital, 7-3-1 Hongo, Bunkyo-ku, Tokyo, Japan.
Department of Oral-Maxillofacial Surgery and Orthodontics, The University of Tokyo Hospital, 7-3-1 Hongo, Bunkyo-ku, Tokyo, Japan.
J Stomatol Oral Maxillofac Surg. 2024 Oct;125(5):101767. doi: 10.1016/j.jormas.2024.101767. Epub 2024 Jan 19.
Dentigerous cysts (DC) in the maxillary sinus are rare and pose challenges for effective treatment. Despite various available surgical techniques, a definitive approach remains debated. This study introduces a markerless Augmented Reality Assisted Surgery (ARAS) system that utilizes tooth image recognition and surgical simulation to enhance the precision of maxillary sinus DC extractions. Using advanced technology, such as 3-dimensional (3D) intraoral scanning and CT imaging for accurate data capture, the system aligns virtual models with patient anatomy without external markers, demonstrating a minimally invasive surgical solution. The ARAS system enabled precise surgical planning and realization of a DC extraction in the maxillary sinus by creating a bone window in direct contact with the cyst, assisting in complete removal with minimal risk to adjacent structures. The ARAS system may aid surgeons in visualizing patient anatomy during surgery, with overlays of relevant medical images, aiding in precise localization and minimizing tissue damage.
上颌窦含牙囊肿(DC)较为罕见,其有效治疗颇具挑战。尽管存在多种可用的手术技术,但仍存在争议。本研究引入一种无标记增强现实辅助手术(ARAS)系统,利用牙图像识别和手术模拟技术来提高上颌窦 DC 切除术的精准度。该系统采用先进技术,如 3 维(3D)口腔内扫描和 CT 成像进行精确的数据采集,在不使用外部标记的情况下,将虚拟模型与患者解剖结构对齐,展示了一种微创的手术解决方案。ARAS 系统可通过在与囊肿直接接触的部位创建骨窗,实现精确的手术规划和 DC 在上颌窦中的提取,在最小化对邻近结构风险的情况下,协助完成完全切除。ARAS 系统可帮助外科医生在手术期间可视化患者的解剖结构,通过覆盖相关医学图像,辅助精准定位和最小化组织损伤。