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首页> 外文期刊>The international journal of artificial organs >Three-dimensional printing technologies in the fabrication of maxillofacial prosthesis: A case report
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Three-dimensional printing technologies in the fabrication of maxillofacial prosthesis: A case report

机译:颌面虚饰制造中的三维印刷技术:案例报告

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Purpose: Patients with maxillofacial deformities always seek for aesthetic prosthesis. Recently, three-dimensional printing technologies have been used for dental treatments on such patients. Case report: A 24-year-old man reported to the Department of Prosthodontics for replacement of his missing right ear induced by a trauma. A magnet-retained auricular prosthesis was planned for the patient. Three-dimensional scanning was performed on the healthy side by using a three-dimensional optical scanner and the data were mirrored. The mirrored image was then imported to a software and a virtual model of the future prosthesis was obtained for the defect side. A three-dimensional printer was used to fabricate a negative mold for the mirrored image by using additive manufacturing. Initially, an impression of the defect side was made; then, the cast model was obtained in a dental flask. Magnets of the prosthesis were inserted to the acrylic resin framework on the cast model. Room temperature vulcanized silicone elastomer was mixed and poured into the three-dimensionally fabricated mold. Then, the flask was placed over the negative mold firmly. After polymerization of the silicone, the auricular prosthesis was delivered to the patient and the patient was instructed to clean the prosthesis daily. Conclusions: Three-dimensional printing technology was used for the fabrication of the patient's missing ear. This method eliminated the conventional laboratory steps and reduced the number of stages of the fabrication of a silicone prosthesis. The negative mold of the defect side allowed us a direct fabrication of the silicone prosthesis without a need for waxing or flasking procedures.
机译:目的:颌面畸形的患者总是寻求审美假体。最近,三维印刷技术已用于此类患者的牙科治疗方法。案例报告:一名24岁的男子向口腔剧本部门报告,以更换由创伤引起的右耳。计划为患者施加磁体保留的耳廓假体。通过使用三维光学扫描仪对健康侧进行三维扫描,并镜像数据。然后将镜像图像导入软件,并且为缺陷侧获得了未来假体的虚拟模型。使用三维打印机通过使用添加剂制造来制造镜像图像的负模具。最初,制造了缺陷侧的印象;然后,在牙科烧瓶中获得浇铸模型。将假体的磁铁插入铸模上的丙烯酸树脂框架上。将室温硫化硅氧烷弹性体混合并倒入三维制造的模具中。然后,将烧瓶牢固地放置在负模具上。在聚合硅氧烷之后,将耳静脉假体递送给患者,并指示患者每天清洁假体。结论:三维印刷技术用于患者缺失的耳朵的制造。该方法消除了传统的实验室步骤,并降低了硅树脂假体的制造的阶段数。缺陷侧的负片允许我们直接制造硅氧烷假体,而不需要蜡化或烧瓶程序。

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