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3D技术在正颌外科术后残余不对称管理中的应用:一例报告

The Use of 3D Technology in the Management of Residual Asymmetry following Orthognathic Surgery: A Case Report.

作者信息

Onică Neculai, Onică Cezara Andreea, Budală Dana Gabriela, Gelețu Gabriela Luminița, Balan Mihail, Baciu Elena-Raluca, Murariu Alice, Pertea Mihaela

机构信息

Independent Researcher, 700612 Iasi, Romania.

Department of Implantology, Removable Dentures, Dental Technology, Faculty of Dental Medicine, University of Medicine and Pharmacy "Grigore T. Popa", 700115 Iasi, Romania.

出版信息

Healthcare (Basel). 2023 Jul 31;11(15):2172. doi: 10.3390/healthcare11152172.

Abstract

The purpose of this case report was to present the aesthetic result of the reconstruction of facial residual asymmetry after orthognathic surgery using a patient-specific three-dimensional (3D) mold and a custom-made polymethyl methacrylate implant. Through computer-aided design (CAD), the healthy contralateral side of the mandible was superimposed onto the side with the defect. Exocad Gallway (exocad GmbH, Darmstadt, Germany) was used to design the patient-specific implants (PSIs) of the right mandibular angle. Next, the implant mold was created using the Meshmixer software (Version 3.5, Autodesk Inc., San Rafael, CA, USA) and fabricated using additive manufacturing. During the surgical procedure, the patient-specific implant (PSI) was cast inside the resin mold using Simplex P bone cement (Stryker, Mahwah, NJ, USA). The implant was fixed using three screws. Combining both indirect (involving the dental laboratory) and direct (with surgical intervention) approaches, this innovative hybrid method, which incorporates both computer-aided design and additive manufacturing (AM), not only enhanced facial aesthetics, functional rehabilitation, and patient quality of life but also mitigated the potential risks linked to conventional grafting methods.

摘要

本病例报告的目的是展示使用定制的三维(3D)模具和定制的聚甲基丙烯酸甲酯植入物进行正颌手术后面部残余不对称重建的美学效果。通过计算机辅助设计(CAD),将下颌骨健康的对侧叠加到有缺陷的一侧。使用Exocad Gallway(德国达姆施塔特的exocad GmbH公司)设计右下颌角的定制植入物(PSI)。接下来,使用Meshmixer软件(美国加利福尼亚州圣拉斐尔市Autodesk公司的3.5版本)创建植入物模具,并使用增材制造进行制造。在手术过程中,使用Simplex P骨水泥(美国新泽西州马哈瓦市Stryker公司)将定制植入物(PSI)浇铸在树脂模具内。植入物用三颗螺钉固定。这种创新的混合方法结合了间接(涉及牙科实验室)和直接(通过手术干预)方法,融合了计算机辅助设计和增材制造(AM),不仅提高了面部美学、功能康复和患者生活质量,还降低了与传统移植方法相关的潜在风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b71/10418807/82d86a6ffe9a/healthcare-11-02172-g001.jpg

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