Int J Prosthodont. 2020 May/Jun;33(3):333-340. doi: 10.11607/ijp.6575.
This report presents a digital technique for the fabrication of a two-piece hollow bulb maxillary obturator prosthesis. The procedure described resulted in an accurate prosthesis while avoiding the discomfort associated with analog impressions. The manipulation of a routine postoperative CT scan in conjunction with a 3D printer allowed for the fabrication of a 3D-printed anatomical cast, from which the two-piece hollow bulb obturator was fabricated. The obturator prosthesis framework was digitally designed and milled from a modified PEEK material, resulting in a lightweight prosthesis with excellent biocompatibility. The clinical and laboratory steps involved are described.
本报告介绍了一种用于制作两件式空心球上颌阻塞器修复体的数字化技术。所描述的方法不仅可以制作出精确的修复体,还可以避免使用模拟印模带来的不适感。通过结合常规术后 CT 扫描和 3D 打印机对其进行操作,可以制作出 3D 打印解剖模型,然后从该模型中制作出两件式空心球阻塞器。阻塞器修复体的框架采用数字设计,并由改性 PEEK 材料铣削而成,制成的修复体重量轻,生物相容性好。本文还介绍了相关的临床和实验室步骤。