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Estimating pedicle screw fastening strength via a virtual templating platform for spine surgery planning: a retrospective preliminary clinical demonstration

机译:通过虚拟模板平台估算脊柱手术计划的椎弓根螺钉紧固强度:回顾性初步临床演示

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Traditional 2D images provide limited use for accurate planning of spine interventions, due to their inability to display the complex 3D spine anatomy and proximity of nerve bundles and vascular structures that must be avoided during the procedure. We have developed a platform for spine surgery planning that employs standard of care 3D preoperative images and enables oblique reformatting and 3D rendering of individual or multiple vertebrae, interactive templating and placement of virtual pedicle implants into the patient-specific computed tomography data. Here we propose a combined surrogate metric - the fastening strength - to provide estimates of the optimal implant selection and trajectory based on implant dimension and bone mineral density (BMD) of the displaced bone substrate. We conducted a retrospective clinical study based on pre- and post-operative data from four patients who underwent procedures involving pedicle screw implantation. We assessed the retrospective plans against the post-operative imaging data according to implant dimension, mean voxel intensity of implant trajectory, and fastening strength and showed consistency between the proposed plans and the postoperative procedure outcome. Our preliminary studies have demonstrated the feasibility of the platform in assisting the surgeon with the selection of appropriate size implant and trajectory that optimises fastening strength, given the intrinsic vertebral geometry and BMD.
机译:传统的2D图像由于无法显示复杂的3D脊柱解剖结构以及在手术过程中必须避免的神经束和血管结构的接近性,因此无法准确地计划脊柱干预措施。我们已经开发了脊柱外科手术计划平台,该平台采用护理标准的3D术前图像,并可以对单个或多个椎骨进行倾斜重格式化和3D渲染,交互式模板化以及将虚拟椎弓根植入物放置到患者特定的计算机断层扫描数据中。在这里,我们提出一个组合的替代指标-紧固强度-以根据植入物尺寸和移位的骨基质的骨矿物质密度(BMD)提供最佳植入物选择和轨迹的估计。我们根据四名接受了椎弓根螺钉植入手术的患者的术前和术后数据进行了一项回顾性临床研究。我们根据植入物尺寸,植入物轨迹的平均体素强度和紧固强度,根据术后影像数据评估了回顾性计划,并显示了拟议计划与术后结果之间的一致性。我们的初步研究表明,鉴于固有的椎骨几何形状和BMD,该平台在协助外科医生选择合适尺寸的植入物和轨迹以优化紧固强度方面的可行性。

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