Orthopedic Department. Parc Taulí Hospital Universitari. Institut d'Investigació i Innovació Parc Taulí I3PT. Universitat Autònoma de Barcelona. Sabadell, Spain; 3D Surgical Planning Lab. Parc Taulí Hospital Universitari. Institut d'Investigació i Innovació Parc Taulí I3PT. Universitat Autònoma de Barcelona. Sabadell, Spain.
Orthopedic Department. Parc Taulí Hospital Universitari. Institut d'Investigació i Innovació Parc Taulí I3PT. Universitat Autònoma de Barcelona. Sabadell, Spain.
Injury. 2021 Jul;52 Suppl 4:S117-S124. doi: 10.1016/j.injury.2021.01.048. Epub 2021 Feb 13.
Surgical planning relies on the use of images to develop an action plan prior to the actual surgical intervention. Imaging technology improvement together with the development of specific software to treat three dimensional images has increased the accuracy and capabilities of pre-surgical planning. In addition to this, 3D printing allows us to manufacture customized surgical tools to implement and aid in the success of surgeries.
3D virtual planning together with 3D printing has been implemented through different approaches in 8 different upper extremity trauma cases. We describe these 8 cases (2 women and 6 men with ages ranging from 16 to 67 years), their specific challenges and management.
We show how 3D technology changes the conception, planning and execution of surgery in 8 different cases. In addition, we describe what challenges were faced as well as the various utilities of 3D technology beyond that of anatomical model printing.
The use of 3D technology has improved and enhanced surgical planning. It allows us to view and virtually manipulate fracture fragments prior to surgery. It also enables us to develop customized surgical tools and guides that can increase the accuracy of certain procedures, and help in the management of orthopaedic and trauma lesions. We believe that the use of this technology is beneficial to both the patient and surgeon, since it reduces surgical time and complications giving a better understanding of the injury and its treatment.
手术规划依赖于使用图像在实际手术干预之前制定行动计划。成像技术的改进以及专门用于处理三维图像的软件的开发提高了术前规划的准确性和能力。此外,3D 打印允许我们制造定制的手术工具,以实施和辅助手术的成功。
通过 8 种不同的上肢创伤病例中的不同方法,我们实施了 3D 虚拟规划和 3D 打印。我们描述了这 8 例(2 名女性和 6 名男性,年龄 16 至 67 岁)患者的具体挑战和处理方法。
我们展示了 3D 技术如何在 8 种不同情况下改变手术的构思、规划和执行。此外,我们还描述了所面临的挑战以及 3D 技术的各种实用价值,不仅仅局限于打印解剖模型。
3D 技术的使用改善并增强了手术规划。它使我们能够在手术前查看和虚拟操作骨折碎片。它还使我们能够开发定制的手术工具和引导器,从而提高某些手术的准确性,并有助于处理骨科和创伤病变。我们相信,该技术的使用对患者和外科医生都有益,因为它可以减少手术时间和并发症,使他们更好地了解损伤及其治疗。