Singare Sekou, Liu Yaxiong, Li Dichen, Lu Bingheng, Wang Jue, He Sanhu
Key Laboratory of Biomedical Information Engineering of the Minestry of Education, and Institute of Biomedical Engineering, Xi'an Jiaotong University, Xi'an, China.
J Prosthodont. 2008 Feb;17(2):135-40. doi: 10.1111/j.1532-849X.2007.00266.x.
The reconstruction of maxillofacial bone defects by the intraoperative modeling of implants may reduce the predictability of the esthetic result, leading to more invasive surgery and increased surgical time. To improve the maxillofacial surgery outcome, modern manufacturing methods such as rapid prototyping (RP) technology and methods based on reverse engineeing (RE) and medical imaging data are applicable to the manufacture of custom-made maxillary prostheses. After acquisition of data, an individual computer-based 3D model of the bony defect is gernerated. These data are tranferrred into RE software to create the prosthesis using a computer-aided design (CAD) model, which is directed into the RP machine for the production of the physical model. The precise fit of the prosthesis is evaulated using the prosthesis and skull model. The prosthesis is then directly used in investment casting such as "Quick Cast" pattern to produce the titanium model. In the clincical reports presented here, reconstructions of two patients with large maxillary bone defects during the operations, and surgery time was reduced. These cases show that the prefabrication of a prosthesis using modern manufacturing technology is an effective method for maxillofacial defect reconstruction.
通过术中植入物建模来重建颌面骨缺损可能会降低美学效果的可预测性,导致手术创伤更大且手术时间增加。为了改善颌面外科手术效果,现代制造方法如快速成型(RP)技术以及基于逆向工程(RE)和医学影像数据的方法适用于定制上颌假体的制造。获取数据后,生成基于计算机的骨缺损个体三维模型。这些数据被传输到RE软件中,使用计算机辅助设计(CAD)模型创建假体,该模型被导入RP机器以生产物理模型。使用假体和颅骨模型评估假体的精确贴合度。然后将假体直接用于熔模铸造,如“快速铸造”模式,以生产钛模型。在此呈现的临床报告中,两名上颌骨大缺损患者在手术中进行了重建,手术时间缩短。这些病例表明,使用现代制造技术预制假体是颌面缺损重建的有效方法。