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床旁计算机辅助设计与制造技术及其在创伤后下颌骨重建中的应用:澳大利亚一家公立医院的经验。

Point-of-care computer-assisted design and manufacturing technology and its utility in post-traumatic mandibular reconstruction: An Australian public hospital experience.

作者信息

Kovacs Aaron C, Kaing Tran-Lee

机构信息

Department of Oral and Maxillofacial Surgery, Royal Perth Hospital, Perth, WA, Australia.

出版信息

SAGE Open Med Case Rep. 2022 Jun 14;10:2050313X221103733. doi: 10.1177/2050313X221103733. eCollection 2022.

Abstract

Application of load-bearing osteosynthesis plates is the current gold-standard management for complex mandibular fractures. Traditionally, this has required a transcutaneous submandibular approach, carrying with it the risk of damage to the facial nerve and obvious extraoral scarring. The existing literature describes the use of computer-assisted design and manufacturing technology through external vendors to aid transoral mandibular reconstruction. However, the reliance on third-party manufacturers comes with significant drawbacks, notably increased financial costs and manufacturing delays. We describe our experience in using point-of-care three-dimensional-printed surgical models to aid with the application of mandibular reconstruction plates. Utilising a virtual three-dimensional reconstruction of the patient's preoperative computed tomography facial bones, we fabricate a custom model of the patient's mandible with the department's in-house three-dimensional printer. Stock plates are subsequently pre-bent and adapted to the three-dimensional model, with plate and screw position marked and screw lengths measured with callipers. By using a custom three-dimensional-printed surgical model to pre-contour the plates, we are able to position stock reconstruction plates via a transoral approach. Moreover, our unit's utilisation of in-house computer-assisted design and manufacturing software and hardware allows us deliver a same-day turnaround for both surgical planning and performing the operation. Patient-specific surgical planning guides can facilitate the safe and efficient transoral application of mandibular reconstruction plates. Moreover, the use of point-of-care computer-assisted design and manufacturing technology ensures timely and cost-effective manufacturing of the necessary biomodel.

摘要

承重接骨板的应用是目前复杂下颌骨骨折治疗的金标准。传统上,这需要经皮下颌下入路,伴随着面神经损伤和明显的口外瘢痕形成的风险。现有文献描述了通过外部供应商使用计算机辅助设计和制造技术来辅助经口下颌骨重建。然而,依赖第三方制造商存在重大缺点,特别是增加了财务成本和制造延迟。我们描述了我们使用即时三维打印手术模型来辅助下颌骨重建板应用的经验。利用患者术前计算机断层扫描面部骨骼的虚拟三维重建,我们使用科室的内部三维打印机制作患者下颌骨的定制模型。随后将库存钢板预先弯曲并与三维模型适配,标记钢板和螺钉位置,并用卡尺测量螺钉长度。通过使用定制的三维打印手术模型对钢板进行预塑形,我们能够通过经口入路放置库存重建钢板。此外,我们科室利用内部计算机辅助设计和制造软件及硬件,能够在同一天完成手术规划和手术。患者特异性手术规划指南可以促进下颌骨重建钢板的安全、高效经口应用。此外,使用即时计算机辅助设计和制造技术可确保及时且经济高效地制造必要的生物模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d679/9201298/c66f142cc9f8/10.1177_2050313X221103733-fig1.jpg

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