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Corrective limb osteotomy using patient specific 3D-printed guides: A technical note

机译:使用患者特定的3D打印指南进行肢体截骨术的技术说明

摘要

We describe the step-by-step process of a corrective osteotomy using 3D printed patient specific guides. Before surgery, bilateral computed tomography (CT) scans are made to plan correction in the affected limb. The digital pre-planning defines the location of the K-wires, drill holes, and the osteotomy site(s). Subsequently, a 3D printed patient specific guide is applied, which indicates the exact position of these drill holes and the osteotomies. This increases the accuracy of the surgery by means of patient specific fit of the guide. During surgery an incision is made and the guide is applied on the bone, which allows the surgeon to perform a very precise osteotomy. Next, the bone is reduced either directly using the plate and marked drill holes, or indirectly using a second reduction guide. In the latter case, the previously drilled K-wires are used to adequately position the reduction guide. Fixation of the bone fragments using plating osteosynthesis finalizes the process. Although this technique has its specific limitations, it might serve as a powerful tool in the treatment of malunion of both articular and nonarticular fractures of the limb.
机译:我们描述了使用3D打印的患者特定指南进行矫正截骨的分步过程。手术前,进行双侧计算机断层扫描(CT)扫描以计划患肢的矫正。数字预规划定义了K线,钻孔和截骨部位的位置。随后,应用3D打印的患者特定指南,该指南指示这些钻孔和截骨术的确切位置。这通过导向器的患者特定配合提高了手术的准确性。在手术过程中,会切开一个切口,然后将导向器应用到骨骼上,这使外科医生可以进行非常精确的截骨术。接下来,直接使用板和标记的钻孔来还原骨骼,或者使用第二个还原导向器间接还原骨骼。在后一种情况下,使用先前钻出的K线来适当定位减速导板。使用电镀骨合成固定骨碎片可以完成该过程。尽管此技术有其特定的局限性,但它可能是治疗肢体关节和非关节骨折的畸形畸形的有力工具。

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