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A Systematic Approach for Making 3D-Printed Patient-Specific Implants for Craniomaxillofacial Reconstruction

机译:制作3D印刷患者特异性植入物的系统方法,用于Craniomaxillofacial重建

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摘要

Craniomaxillofacial reconstruction implants,which are extensively used in head and neck surgery,are conventionally made in standardized forms.During surgery,the implant must be bended manually to match the anatomy of the individual bones.The bending process is time-consuming,especially for inexperienced surgeons.Moreover,repetitive bending may induce undesirable internal stress concentration,resulting in fatigue under masticatory loading in v iv o and causing various complications such as implant fracture,screw loosening,and bone resorption.There have been reports on the use of patient-specific 3D-printed implants for craniomaxillofacial reconstruction,although few reports have considered implant quality.In this paper,we present a systematic approach for making 3D-printed patientspecific surgical implants for craniomaxillofacial reconstruction.The approach consists of three parts:First,an easy-to-use design module is developed using Solidworks®software,which helps surgeons to design the implants and the axillary fixtures for surgery.Design engineers can then carry out the detailed design and use finite-element modeling(FEM)to optimize the design.Second,the fabrication process is carried out in three steps:0 testing the quality of the powder;(2)setting up the appropriate process parameters and running the 3D printing process;and (3)conducting post-processing treatments(i.e.,heat and surface treatments)to ensure the quality and performance of the implant.Third,the operation begins after the final checking of the implant and sterilization.After the surgery,postoperative rehabilitation follow-up can be carried out using our patient tracking software.Following this systematic approach,we have successfully conducted a total of 41 surgical cases.3D-printed patient-specific implants have a number of advantages;in particular,their use reduces surgery time and shortens patient recovery time.Moreover,the presented approach helps to ensure implant quality.
机译:广泛用于头部和颈部手术的颅骨重建植入物通常以标准化的形式制成。植入手术,必须手动弯曲以匹配个体骨骼的解剖。弯曲过程是耗时的,特别是对于缺乏经验外科医生,重复弯曲可能诱导不希望的内应力浓度,导致v IV O中的咀嚼载荷疲劳,并导致各种并发症如植入物骨折,螺杆松动和骨吸收。有关患者特异性的使用报告3D印刷植入物用于颅骨重建,尽管少数报道已经考虑了植入物质。本文提出了一种制作3D印刷患者特异性外科植入物的系统方法,用于颅骨重建。该方法由三部分组成:首先,易于 - 使用设计模块是使用SolidWorks®软件开发的,帮助外科医生设计E植入物和用于手术的腋夹。然后,设计工程师可以进行详细的设计和使用有限元模拟(FEM)来优化设计。第二步,制造过程三个步骤:0测试质量粉末;(2)建立适当的工艺参数并运行3D打印过程;(3)进行后处理处理(即热和表面处理),以确保植入物的质量和性能。第三,操作开始最后检查植入物和灭菌后。手术后,可以使用我们的患者跟踪软件进行术后康复随访。我们已经成功地进行了41例手术案件3D印刷病例。特定植入物具有许多优点;特别是,它们的使用减少了手术时间并缩短了患者恢复时间。罗伊弗,提出的方法有助于确保植入物质。

著录项

  • 来源
    《工程(英文)》 |2020年第011期|P.1291-1301|共11页
  • 作者单位

    Shien-Ming Wu School of Intelligent Engineering South China University of Technology Guangzhou 511442 China;

    Oral and Maxillofacial Surgery Faculty of Dentistry The University of Hong Kong Hong Kong 999077 China;

    Foshan Angels Biotechnology Co. Ltd. Foshan 528200 China;

    Oral and Maxillofacial Surgery Faculty of Dentistry The University of Hong Kong Hong Kong 999077 China;

    Oral and Maxillofacial Surgery Faculty of Dentistry The University of Hong Kong Hong Kong 999077 China;

    Foshan Angels Biotechnology Co. Ltd. Foshan 528200 China;

    Foshan Angels Biotechnology Co. Ltd. Foshan 528200 China;

    Oral and Maxillofacial Surgery Faculty of Dentistry The University of Hong Kong Hong Kong 999077 China;

    Foshan Angels Biotechnology Co. Ltd. Foshan 528200 China;

    Foshan Angels Biotechnology Co. Ltd. Foshan 528200 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 中等教育;
  • 关键词

    Patient-specific implant; Craniomaxillofacial reconstruction; 3D printing; Surgery;

    机译:患者特异性植入物;Craniomazillofacial重建;3D打印;手术;
  • 入库时间 2022-08-19 04:55:59
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