首页> 外文期刊>Craniomaxillofacial Trauma & Reconstruction >Correction of a Posttraumatic Orbital Deformity Using Three-Dimensional Modeling, Virtual Surgical Planning with Computer-Assisted Design, and Three-Dimensional Printing of Custom Implants
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Correction of a Posttraumatic Orbital Deformity Using Three-Dimensional Modeling, Virtual Surgical Planning with Computer-Assisted Design, and Three-Dimensional Printing of Custom Implants

机译:使用三维建模,虚拟手术规划与计算机辅助设计的虚拟手术规划校正,以及定制植入物的三维印刷

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摘要

We describe a case of complex, posttraumatic skull and orbital deformities that were evaluated and treated with advanced computer technology, including virtual surgical planning, three-dimensional (3D) modeling, and printed patient custom implants (PCI) fabricated by 3D printing. A 50-year-old man presented to our craniofacial referral center 1 year after failed reduction of complex left orbital, zygomatic, and frontal bone fractures due to a motorcycle collision. The patient's chief complaint was debilitating diplopia in all fields of gaze. On examination, he had left enophthalmos, left canthal displacement, lower eyelid ectropion, vertical orbital dystopia, and a laterally and inferiorly displaced, comminuted zygoma with orbital rim and frontal bone defects. The normal orbit was mirrored to precisely guide repositioning of the globe, orbital reconstruction, and cranioplasty. Preinjury appearance with normal globe position was restored with complete resolution of diplopia. Modern 3D technology allows the surgeon to better analyze complex orbital deformities and precisely plan surgical correction with the option of printing a PCI. These techniques were successfully applied to resolve a case of debilitating diplopia and aesthetic deficits after facial trauma. Further application of advanced 3D computer technology can potentially improve the results of severe orbital and craniofacial trauma reconstruction.
机译:我们描述了一种复杂,后颅骨和轨道畸形的案例,其通过先进的计算机技术评估和处理,包括虚拟手术规划,三维(3D)建模和由3D打印制造的印刷患者定制植入物(PCI)。一个50岁的男子,由于摩托车碰撞,减少复杂左侧轨道,颧骨和额骨骨折的复杂左侧轨道和前骨骨折失败1年。患者的首席投诉在所有凝视的所有领域都在衰弱。在考试中,他留下了嗜鼻肌,左侧窦偏离,下眼睑凹凸,垂直眶腹部,横向和较低的流离失所的,粉碎的粉碎的,粉碎的,粉碎的术语,眶缘和额骨缺陷。正常轨道被反映为恰好指导全球,轨道重建和颅骨成形术的重新定位。具有正常地球位置的前jury外观并进行了完整的分册。现代3D技术允许外科医生更好地分析复杂的轨道畸形,并以打印PCI的选择精确计划手术校正。这些技术已成功应用于解决面部创伤后衰弱的复源性和美学缺陷的情况。进一步应用先进的3D计算机技术可以潜在地改善严重轨道和颅面外伤的结果。

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