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Efficacy and accuracy of a novel rapid prototyping drill template for cervical pedicle screw placement

机译:一种新型快速成型钻头模板用于颈椎椎弓根螺钉置入的功效和准确性

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Objective: To develop and validate the efficacy and accuracy of a novel drill template for cervical pedicle instrumentation.Materials and Methods: A CT scan of the cervical vertebrae was performed, and a 3D model of the vertebrae was reconstructed using MIMICS 10.01 software. The 3D vertebral model was then exported in STL format, and opened in a workstation running UGS Imageware 12.0 software to determine the optimal pedicle screw size and orientation. A virtual navigational template was established according to the laminar anatomic trait, and physical navigational templates were manufactured using rapid prototyping. The navigational templates were used intraoperatively to assist in the placement of cervical pedicle screws.Results: In all, 84 pedicle screws were placed, and the accuracy of screw placement was confirmed with postoperative X-rays and CT scans. Eighty-two screws were rated as Grade 0, 2 as Grade 1, and no screws as Grade 2 or 3. Hence, safer screw positioning was accomplished with the drill template technique.Conclusions: This study demonstrates a patient-specific template technique that is easy to use, can simplify the surgical act, and generates highly accurate cervical pedicle screw placement. The advantages of this technology over traditional techniques are that it enables planning of the screw trajectory to be completed prior to surgery, and that the screw can be sized to fit the patient's anatomy.
机译:目的:开发和验证新型颈椎椎弓根器械模板的有效性和准确性。材料与方法:对颈椎进行CT扫描,并使用MIMICS 10.01软件重建椎骨的3D模型。然后将3D椎骨模型以STL格式导出,并在运行UGS Imageware 12.0软件的工作站中打开,以确定最佳的椎弓根螺钉尺寸和方向。根据层状解剖特征建立了虚拟导航模板,并使用快速原型制作了物理导航模板。结果:总共放置了84个椎弓根螺钉,并通过术后X射线和CT扫描证实了螺钉放置的准确性。八十二颗螺钉被定为0级,二颗螺钉被定为1级,而没有螺钉被定为2或3级。因此,使用钻头模板技术可以实现更安全的螺钉定位。结论:本研究证明了一种针对患者的模板技术易于使用,可以简化手术操作,并生成高度精确的颈椎椎弓根螺钉放置。与传统技术相比,该技术的优势在于,它可以在手术前完成螺钉轨迹的规划,并且可以调整螺钉的尺寸以适合患者的解剖结构。

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